JP2009234939A - Cosmetic composition containing vegetable origin polyamine-containing extract - Google Patents
Cosmetic composition containing vegetable origin polyamine-containing extract Download PDFInfo
- Publication number
- JP2009234939A JP2009234939A JP2008079759A JP2008079759A JP2009234939A JP 2009234939 A JP2009234939 A JP 2009234939A JP 2008079759 A JP2008079759 A JP 2008079759A JP 2008079759 A JP2008079759 A JP 2008079759A JP 2009234939 A JP2009234939 A JP 2009234939A
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- JP
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- Prior art keywords
- extract
- polyamine
- acid
- cosmetic composition
- plant
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Pending
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Images
Landscapes
- Medicines Containing Plant Substances (AREA)
- Acyclic And Carbocyclic Compounds In Medicinal Compositions (AREA)
- Cosmetics (AREA)
- Medicines That Contain Protein Lipid Enzymes And Other Medicines (AREA)
Abstract
Description
本発明は、植物由来ポリアミン含有抽出物を有効成分とする化粧品組成物に関するものであり、特に、化粧品、医薬部外品、医療用品、衛生用品、医薬品に利用されるものである。 The present invention relates to a cosmetic composition comprising a plant-derived polyamine-containing extract as an active ingredient, and is particularly used for cosmetics, quasi-drugs, medical products, hygiene products, and pharmaceuticals.
個体老化やこれに伴って発生する各種の疾患などは、分裂するすべての細胞の老化(分裂速度の低下、細胞機能の低下)と深く関わっている。例えば皮膚は、表皮細胞、繊維芽細胞、およびこれら細胞外の皮膚構造を支持するエラスチン、コラーゲン等の細胞外マトリックスによって構成されている。若い皮膚においては、これらの皮膚組織の相互作用が恒常性を保つことによって水分保持、柔軟性、弾力性が確保され、肌は外観的にも張りと艶があり、みずみずしい状態に維持される。ところが、加齢や紫外線、乾燥、ストレスなどによって特に細胞外マトリックスや繊維芽細胞の機能低下が引き起こされ、その結果、皮膚の柔軟性、保湿機能は低下し、肌は張りや艶を失い、荒れ、しわ、くすみなどの老化症状が発生する。 Individual aging and the various diseases that accompany this are closely related to the aging of all dividing cells (decrease in division rate and cell function). For example, the skin is composed of epidermal cells, fibroblasts, and extracellular matrices such as elastin and collagen that support these extracellular skin structures. In young skin, moisture retention, flexibility, and elasticity are ensured by maintaining the constancy of the interaction between these skin tissues, and the skin has a firm and glossy appearance and is kept fresh. However, aging, ultraviolet rays, drying, stress, etc. cause deterioration of the function of the extracellular matrix and fibroblasts in particular. As a result, the skin's flexibility and moisturizing function are reduced, and the skin loses its tension and gloss and becomes rough. Aging symptoms such as wrinkles and dullness occur.
細胞レベルでの老化防止や抑制を目的に細胞賦活化剤、抗老化剤の探索が行われている。例えば動物由来の細胞賦活化剤としては、結合組織加水分解物(特許文献1)、胸腺・脾臓由来水溶性蛋白(特許文献2)、牛胎盤エキス(特許文献3)などが知られている。植物由来の細胞賦活化剤としては、ゴマ、サンヤク、トウガラシ、トウキ、ドクダミ、バクモンドウ(特許文献4)、アーモンド、セイヨウタンポポ、セイヨウニワトコ、センキュウ、センブリ、ソウハクヒ、トウニン、ニンジン、ホップ、ムクゲ、ヨクイニン(特許文献5、特許文献6)、ショウガ科ウコン属(特許文献7)、ハナヤスリ科ハナヤスリ属(特許文献8)の抽出物などが知られている。コラーゲン産生を促進する作用を有する物質としては、甘草葉抽出物(特許文献8)、ハス胚芽抽出物(特許文献9)、加水分解バレイショタンパク(特許文献10)、柿の葉抽出物又はサンザシの果実抽出物(特許文献11)、米糠溶媒抽出物(特許文献12)、アヤメ科クロッカス属サフラン抽出物(特許文献13)、ウリ科植物の種子抽出物(特許文献14)などが知られている。これらの一部は細胞賦活化剤、抗老化剤、コラーゲン産生促進剤又はヒアルロン酸産生促進剤として医薬部外品や化粧品に利用されているが、非常に個人差が大きく、作用効果が十分とは言えず、満足すべき作用効果を発揮する細胞賦活化剤、抗老化剤、さらにはコラーゲン産生促進剤やヒアルロン酸産生促進剤を含む細胞外マトリックス産生促進剤は得られていなかった。 Searches for cell activators and anti-aging agents have been made for the purpose of preventing and suppressing aging at the cellular level. For example, connective tissue hydrolysates (Patent Document 1), thymus / spleen-derived water-soluble protein (Patent Document 2), bovine placenta extract (Patent Document 3) and the like are known as animal-derived cell activators. Examples of plant-derived cell activators include sesame seeds, sayaks, peppers, tokis, dokudami, bakumondo (patent document 4), almonds, dandelions, elderberry, senkyu, assembly, sakuhakuhi, tonin, carrots, hops, mukuge, yokuinin ( Patent Documents 5 and 6), extracts of the genus Turmeric (Patent Document 7), and the genus Hanayasuri (Patent Document 8) are known. Examples of substances having an action of promoting collagen production include licorice leaf extract (Patent Document 8), lotus germ extract (Patent Document 9), hydrolyzed potato protein (Patent Document 10), bamboo leaf extract or hawthorn. Fruit extract (Patent Document 11), rice bran solvent extract (Patent Document 12), Iridaceae Crocus saffron extract (Patent Document 13), Cucurbitaceae plant seed extract (Patent Document 14) and the like are known. . Some of these are used in quasi-drugs and cosmetics as cell activators, anti-aging agents, collagen production promoters or hyaluronic acid production promoters. However, an extracellular matrix production promoter including a cell activator, an anti-aging agent, a collagen production promoter, and a hyaluronic acid production promoter that exhibits a satisfactory effect has not been obtained.
また、肌荒れを予防または治癒する検討もなされている。肌荒れとは、一般に角質細胞の剥離現象が認められる乾燥状態の皮膚をいう。このような肌荒れはコレステロール、セラミド、脂肪酸等の角質細胞間脂質の溶出、および紫外線、洗剤等に起因する角質細胞の変性や表皮細胞の増殖・角化バランスの崩壊による角層透過バリアの形成不全等によって発生する。この肌荒れを予防または治癒する目的で、角質細胞間脂質成分又はそれに類似する合成の角質細胞間脂質を供給するなどの検討が行われている。 In addition, studies have been made to prevent or cure rough skin. Rough skin refers to dry skin in which exfoliation of keratinocytes is generally observed. Such rough skin is caused by elution of interstitial lipids such as cholesterol, ceramide, fatty acids, etc., and formation of a stratum corneum permeation barrier due to degeneration of stratum corneum caused by UV rays, detergents, etc., and disruption of proliferation / keratinization balance of epidermal cells. Etc. For the purpose of preventing or healing this rough skin, studies have been made on supplying a keratinocyte lipid component or a synthetic keratinocyte lipid similar thereto.
ポリアミンは、2つ以上の第1級アミノ基を有する脂肪族炭化水素の総称で生体内に普遍的に存在する天然物であり、その生理作用に注目されている。ポリアミンの主な生理作用としては、(1)核酸との相互作用による核酸の安定化と構造変化、(2)種々の核酸合成系への促進作用、(3)タンパク質合成系の活性化、(4)細胞膜の安定化や物質の膜透過性の強化、(5)活性酸素の消去、(6)細胞増殖の促進が知られているが、特に皮膚の細胞(繊維芽細胞)における賦活化作用、抗老化作用、細胞外マトリックスの産生促進作用やコラーゲン又はヒアルロン酸の産生促進作用については全く知られていなかった。また、植物由来ポリアミンを美白剤と併用することにより、その美白効果が向上することは報告されていなかった。
哺乳類、特にヒトに対して細胞賦活化作用や抗老化作用を付与することは極めて重要な課題であり、動物由来、植物由来の細胞賦活化物質や抗老化剤は各種見つかっているが、実際には産業上利用可能な程度に十分かつ安定した効果は得られておらず、新規な細胞賦活化剤や抗老化剤が探索されているのが現状である。 Giving cell activation and anti-aging effects to mammals, especially humans, is an extremely important issue, and various cell-activating substances and anti-aging agents derived from animals and plants have been found. Has not yet obtained a sufficient and stable effect to be industrially available, and a new cell activator and anti-aging agent are currently being searched.
本発明の目的は、上記問題点を改善した、保湿作用、コラーゲン生成促進作用、ヒアルロン酸生成促進作用、細胞賦活化作用、抗酸化作用、抗老化作用、育毛作用及び肌荒れ改善作用などを有する植物由来ポリアミン含有抽出物を含有する化粧品組成物を提供することにある。さらに、本発明の目的は、当該化粧品組成物を含む化粧品、医薬部外品、医療用品、衛生用品、医薬品を提供することにある。 The object of the present invention is a plant having improved moisturizing action, collagen production promoting action, hyaluronic acid production promoting action, cell activating action, antioxidant action, anti-aging action, hair growth action, rough skin improving action, etc. The object is to provide a cosmetic composition containing the derived polyamine-containing extract. Furthermore, the objective of this invention is providing the cosmetics, quasi-drug, medical supplies, hygiene articles, and a pharmaceutical containing the said cosmetic composition.
本発明者らは、上記の目的を達成すべく鋭意努力した結果、植物由来ポリアミン含有抽出物、特にポリアミンを含む大豆由来抽出物あるいは小麦由来抽出物を含む化粧品組成物が有効であることを見出した。 As a result of diligent efforts to achieve the above object, the present inventors have found that a plant-derived polyamine-containing extract, in particular, a cosmetic composition containing a polyamine-containing soybean-derived extract or wheat-derived extract is effective. It was.
さらに、本発明者らは、美白剤を含有する皮膚外用剤において、刺激の少ない皮膚外用剤を求めて鋭意研究努力を重ねた結果、美白剤と共に植物由来ポリアミン含有抽出物を用いることにより、美白剤の皮膚浸透性が向上しその効果が高まると共に刺激を少なくできることを見出し、本発明を完成させるに至った。 Furthermore, as a result of intensive research efforts for skin external preparations with less irritation in skin external preparations containing whitening agents, the present inventors have used whitening agents and plant-derived polyamine-containing extracts to obtain whitening. The inventors have found that the skin permeability of the preparation is improved and the effect thereof is enhanced, and that stimulation can be reduced, and the present invention has been completed.
即ち、本発明は、以下の(1)〜(15)の発明を包含する。
(1)植物由来ポリアミン含有抽出物と美白剤を含有することを特徴とする化粧品組成物。
(2)植物由来ポリアミン含有抽出物が、大豆種子、大豆胚芽、大豆胚、大豆芽、小麦種子、小麦胚芽、小麦胚、小麦芽、豆乳及びオカラからなる群から選ばれた少なくとも1種の材料由来の抽出物であることを特徴とする(1)に記載の化粧品組成物。
(3)植物抽出物に含有されるポリアミンが、2つ以上の第一級アミノ基を有する脂肪族炭化水素からなる群より選ばれた少なくとも1種の化合物であることを特徴とする(1)または(2)に記載の化粧品組成物。
(4)植物抽出物に含有されるポリアミンが、1,3−ジアミノプロパン、プトレシン、カダベリン、カルジン、スペルミジン、ホモスペルミジン、アミノプロピルカダベリン、テルミン、スペルミン、テルモスペルミン、カナバルミン、アミノペンチルノルスペルミジン、N,N−ビス(アミノプロピル)カダベリン、ホモスペルミン、カルドペンタミン、ホモカルドペンタミン、カルドヘキサミン及びホモカルドヘキサミンからなる群から選ばれた少なくとも1種の化合物であることを特徴とする(3)に記載の化粧品組成物。
(5)ポリアミンが、プトレシン、スペルミジン及びスペルミンからなる群から選ばれた少なくとも1種の化合物であることを特徴とする(4)に記載の化粧品組成物。
(6)美白剤が、メラニン生成抑制剤、メラニン分解促進剤および/またはメラニン輸送阻害剤であることを特徴とする(1)〜(5)のいずれかに記載の化粧品組成物。
(7)さらに、抗老化剤を含有することを特徴とする(1)〜(6)のいずれかに記載の化粧品組成物。
(8)さらに、保湿剤を含有することを特徴とする(1)〜(7)のいずれかに記載の化粧品組成物。
(9)さらに、紫外線吸収剤を含有することを特徴とする(1)〜(8)のいずれかに記載の化粧品組成物。
(10)さらに、抗菌剤を含有することを特徴とする(1)〜(9)のいずれかに記載の化粧品組成物。
(11)抗老化剤が、抗炎症剤および/または抗酸化剤であることを特徴とする(7)に記載の化粧品組成物。
(12)保湿剤が、親水性保湿剤および/または親油性保湿剤であることを特徴とする(8)に記載の化粧品組成物。
(13)紫外線吸収剤が、安息香酸系紫外線吸収剤、アントラニル酸系紫外線吸収剤、サリチル酸系紫外線吸収剤、ケイ皮酸系紫外線吸収剤、トリアジン系紫外線吸収剤及びベンゾフェノン系紫外線吸収剤からなる群から選ばれた少なくとも1種の化合物であることを特徴とする(9)に記載の化粧品組成物。
(14)抗菌剤が、有機系抗菌剤および/または無機系抗菌剤であることを特徴とする(10)に記載の化粧品組成物。
(15)化粧品、医薬部外品、医療用品、衛生用品または医薬品として利用されるものであることを特徴とする(1)〜(14)のいずれかに記載の化粧品組成物。
That is, the present invention includes the following inventions (1) to (15).
(1) A cosmetic composition comprising a plant-derived polyamine-containing extract and a whitening agent.
(2) The plant-derived polyamine-containing extract is at least one material selected from the group consisting of soybean seed, soybean germ, soybean embryo, soybean bud, wheat seed, wheat germ, wheat germ, wheat germ, soy milk, and okara. The cosmetic composition according to (1), which is an extract derived from
(3) The polyamine contained in the plant extract is at least one compound selected from the group consisting of aliphatic hydrocarbons having two or more primary amino groups (1) Or the cosmetic composition as described in (2).
(4) The polyamine contained in the plant extract is 1,3-diaminopropane, putrescine, cadaverine, cardine, spermidine, homospermidine, aminopropyl cadaverine, theremin, spermine, thermospermine, canabalmin, aminopentylnorspermidine, N , N-bis (aminopropyl) cadaverine, homospermine, cardopentamine, homocardopentamine, cardohexamine and homocardohexamine (3) A cosmetic composition according to 1.
(5) The cosmetic composition according to (4), wherein the polyamine is at least one compound selected from the group consisting of putrescine, spermidine and spermine.
(6) The cosmetic composition according to any one of (1) to (5), wherein the whitening agent is a melanin production inhibitor, a melanin degradation accelerator, and / or a melanin transport inhibitor.
(7) The cosmetic composition according to any one of (1) to (6), further comprising an anti-aging agent.
(8) The cosmetic composition according to any one of (1) to (7), further comprising a moisturizing agent.
(9) The cosmetic composition according to any one of (1) to (8), further comprising an ultraviolet absorber.
(10) The cosmetic composition according to any one of (1) to (9), further comprising an antibacterial agent.
(11) The cosmetic composition according to (7), wherein the anti-aging agent is an anti-inflammatory agent and / or an antioxidant.
(12) The cosmetic composition according to (8), wherein the humectant is a hydrophilic humectant and / or a lipophilic humectant.
(13) The group in which the UV absorber is composed of a benzoic acid UV absorber, an anthranilic acid UV absorber, a salicylic acid UV absorber, a cinnamic acid UV absorber, a triazine UV absorber, and a benzophenone UV absorber. The cosmetic composition according to (9), wherein the cosmetic composition is at least one compound selected from the group consisting of:
(14) The cosmetic composition according to (10), wherein the antibacterial agent is an organic antibacterial agent and / or an inorganic antibacterial agent.
(15) The cosmetic composition according to any one of (1) to (14), which is used as a cosmetic, a quasi-drug, a medical product, a hygiene product, or a pharmaceutical product.
本発明の植物由来ポリアミン含有抽出物を含有する化粧品組成物により、保湿作用、コラーゲン生成促進作用、ヒアルロン酸生成促進作用、細胞賦活化作用、抗酸化作用、抗老化作用、育毛作用及び肌荒れ改善作用などの効果を有する、化粧品、医薬部外品、医療用品、衛生用品、医薬品を提供することできる。特に、本発明によれば、美白剤を含有する皮膚外用剤において、刺激性の少ない皮膚外用剤を提供することができる。また、植物由来ポリアミン含有抽出物は生物由来の天然界面活性剤であるため安全性に優れており、本発明の化粧品組成物は長期にわたる使用に十分に耐えることができる。さらに、植物由来ポリアミン含有抽出物は、植物から製造できるため原料コストが安価であり、大量生産が可能である。 The cosmetic composition containing the plant-derived polyamine-containing extract of the present invention provides moisturizing action, collagen production promoting action, hyaluronic acid production promoting action, cell activation action, antioxidant action, anti-aging action, hair growth action and rough skin improving action. It is possible to provide cosmetics, quasi-drugs, medical supplies, hygiene products, and pharmaceuticals that have effects such as these. In particular, according to the present invention, a skin external preparation with less irritation can be provided in a skin external preparation containing a whitening agent. In addition, the plant-derived polyamine-containing extract is a biologically-derived natural surfactant and thus has excellent safety, and the cosmetic composition of the present invention can sufficiently withstand long-term use. Furthermore, since a plant-derived polyamine-containing extract can be produced from a plant, the raw material cost is low, and mass production is possible.
本発明の化粧品組成物は、植物由来ポリアミン含有抽出物と美白剤を必須成分として含有する。 The cosmetic composition of the present invention contains a plant-derived polyamine-containing extract and a whitening agent as essential components.
本発明において「植物由来ポリアミン含有抽出物」とは、植物及び/又は植物加工物から得られる(天然)ポリアミンを含む植物抽出物である。本発明においては、「植物由来ポリアミン含有抽出物」を「ポリアミンを含む植物抽出物及び/又はポリアミンを有効成分として含む植物抽出物」と称することもある。本発明において「植物抽出物」とは、植物及び/又は植物加工物を抽出して得られる物である。植物由来ポリアミン含有抽出物に含有されるポリアミン濃度は、M(モル/リットル)では、通常は0.00001〜5M、好ましくは0.00005〜3M、より好ましくは0.0001〜2Mである。又は、重量%では、通常は0.0001〜95%、好ましくは0.001〜75%、より好ましくは0.01〜50%である。 In the present invention, the “plant-derived polyamine-containing extract” is a plant extract containing a (natural) polyamine obtained from a plant and / or a processed plant product. In the present invention, the “plant-derived polyamine-containing extract” is sometimes referred to as “a plant extract containing a polyamine and / or a plant extract containing a polyamine as an active ingredient”. In the present invention, the “plant extract” is a product obtained by extracting a plant and / or a processed plant product. The polyamine concentration contained in the plant-derived polyamine-containing extract is usually from 0.00001 to 5M, preferably from 0.00005 to 3M, more preferably from 0.0001 to 2M in M (mol / liter). Or in the weight%, it is 0.0001 to 95% normally, Preferably it is 0.001 to 75%, More preferably, it is 0.01 to 50%.
「植物由来ポリアミン含有抽出物」は、ポリアミン濃度を高めるための精製を行なっていない低純度品と、イオン交換樹脂で精製してポリアミン濃度を大幅に高めた高純度品のいずれを使用してもよい。低純度品のダイズ・コムギ胚芽抽出物粉末のポリアミン濃度は0.1〜0.2%程度であるが、イオン交換樹脂で精製した高純度品の精製ダイズ・コムギ胚芽抽出物の粉末のポリアミン濃度は30〜50%まで高めることができる。抽出物が水溶液の場合には上記濃度の1/10〜1/100になる。 “Plant-derived polyamine-containing extract” can be used either as a low-purity product that has not been purified to increase the polyamine concentration, or as a high-purity product that has been purified with an ion exchange resin to significantly increase the polyamine concentration. Good. Polyamine concentration in low-purity soybean / wheat germ extract powder is about 0.1-0.2%, but polyamine concentration in high-purity purified soybean / wheat germ extract powder purified with ion exchange resin Can be increased to 30-50%. When the extract is an aqueous solution, it becomes 1/10 to 1/100 of the above concentration.
本発明において「ポリアミン」とは、2つ以上の第1級アミノ基を有する脂肪族炭化水素の総称で生体内に普遍的に存在する天然物であり、20種類以上のポリアミンが見出されている。例えば、1,3−ジアミノプロパン、プトレシン、カダベリン、カルジン、スペルミジン、ホモスペルミジン、アミノプロピルカダベリン、テルミン、スペルミン、テルモスペルミン、カナバルミン、アミノペンチルノルスペルミジン、N,N−ビス(アミノプロピル)カダベリン、ホモスペルミン、カルドペンタミン、ホモカルドペンタミン、カルドヘキサミン、ホモカルドヘキサミンなどが挙げられる。代表的なポリアミンとしてはプトレシン、スペルミジン、スペルミンがある。 In the present invention, “polyamine” is a general term for aliphatic hydrocarbons having two or more primary amino groups, and is a natural product that exists universally in the living body, and more than 20 types of polyamines have been found. Yes. For example, 1,3-diaminopropane, putrescine, cadaverine, cardine, spermidine, homospermidine, aminopropyl cadaverine, theremin, spermine, thermospermine, canabalmin, aminopentylnorspermidine, N, N-bis (aminopropyl) cadaverine, homo Examples include spermine, cardopentamine, homocardopentamine, cardohexamine, and homocardohexamine. Typical polyamines include putrescine, spermidine and spermine.
「プトレシン」は代表的なポリアミンの一つで生物体内に普遍的に存在する一般的な天然物であり、2つの第一級アミノ基を有する脂肪族炭化水素化合物である。「スペルミジン」は代表的なポリアミンの一つで生物体内に普遍的に存在する一般的な天然物であり、3つの第一級アミノ基を有する脂肪族炭化水素化合物である。「スペルミン」は代表的なポリアミンの一つで生物体内に普遍的に存在する一般的な天然物であり、4つの第一級アミノ基を有する脂肪族炭化水素化合物である。 “Putrescine” is one of the typical polyamines and is a general natural product that is universally present in living organisms, and is an aliphatic hydrocarbon compound having two primary amino groups. “Spermidine” is one of typical polyamines and is a general natural product that is ubiquitously present in living organisms, and is an aliphatic hydrocarbon compound having three primary amino groups. “Spermine” is one of typical polyamines and is a general natural product that is ubiquitous in living organisms, and is an aliphatic hydrocarbon compound having four primary amino groups.
ポリアミンを含む植物抽出物及び/又はポリアミンを有効成分として含む植物抽出物を得る植物としては、特に限定されるものではないが、例えば双子葉植物、単子葉植物、草本性植物、木本性植物、ウリ科植物、ナス科植物、イネ科植物、アブラナ科植物、マメ科植物、アオイ科植物、キク科植物、アカザ科植物、該植物抽出物、該植物エキスなどが挙げられる。具体的には、サツマイモ、トマト、キュウリ、カボチャ、メロン、スイカ、タバコ、シロイヌナズナ、ピーマン、ナス、マメ、サトイモ、ホウレンソウ、ニンジン、イチゴ、ジャガイモ、イネ、トウモロコシ、アルファルファ、コムギ、オオムギ、ダイズ、ナタネ、ソルガム、ユーカリ、ポプラ、ケナフ、杜仲、サトウキビ、シュガービート、キャッサバ、サゴヤシ、アカザ、ユリ、ラン、カーネーション、バラ、キク、ペチュニア、トレニア、キンギョソウ、シクラメン、カスミソウ、ゼラニウム、ヒマワリ、シバ、ワタ、エノキダケ、ホンシメジ、マツタケ、シイタケ、キノコ類、チョウセンニンジン、アガリクス、ウコン、オタネニンジン、柑橘類、緑茶、紅茶、ウーロン茶、バナナ、キウイ、納豆、豆乳、ダイズエキス、コムギエキス、胚芽エキス、胚エキス、果汁、オカラ、コメ胚芽、コムギ胚芽、オオムギ胚芽、ダイズ胚芽、トウモロコシ胚芽、マイロ胚芽、ヒマワリ胚芽などが挙げられる。 A plant extract containing a polyamine-containing plant extract and / or a plant extract containing a polyamine as an active ingredient is not particularly limited, and examples thereof include dicotyledonous plants, monocotyledonous plants, herbaceous plants, woody plants, Examples include cucurbitaceae plants, solanaceous plants, gramineous plants, cruciferous plants, legumes, mallows, chrysanthemums, rhododendrons, plant extracts, plant extracts, and the like. Specifically, sweet potato, tomato, cucumber, pumpkin, melon, watermelon, tobacco, Arabidopsis, pepper, eggplant, bean, taro, spinach, carrot, strawberry, potato, rice, corn, alfalfa, wheat, barley, soybean, rape , Sorghum, eucalyptus, poplar, kenaf, sugarcane, sugar cane, sugar beet, cassava, sago palm, red almond, lily, orchid, carnation, rose, chrysanthemum, petunia, torenia, snapdragon, cyclamen, gypsophila, geranium, sunflower, shiba, cotton, Enokitake, Honshimeji, Matsutake, Shiitake, Mushrooms, Ginseng, Agaricus, Turmeric, Ginseng, Citrus, Green Tea, Black Tea, Oolong Tea, Banana, Kiwi, Natto, Soy Milk, Soybean Extract, Wheat Echi , Germ extract, embryo extract, fruit juice, Ocala, rice germ, wheat germ, barley germ, soybean germ, corn germ, milo germ, such as sunflower germ, and the like.
好ましい植物としては、単子葉植物や双子葉植物がよく、さらに好ましくはイネ科植物やマメ科植物がよい。特に好ましい植物又はその加工品として、トウモロコシ、キノコ類、ダイズ、コムギ、納豆、豆乳、オカラ、コムギ胚芽、ダイズ胚芽、トウモロコシ胚芽、ダイズエキス、コムギエキス、胚芽エキス、胚エキスが挙げられる。さらに好ましくは、大豆種子、大豆胚芽、大豆胚、大豆芽、小麦種子、小麦胚芽、小麦胚、小麦芽、豆乳、オカラが挙げられる。 Preferable plants are monocotyledonous plants and dicotyledonous plants, more preferably grasses and legumes. Particularly preferred plants or processed products thereof include corn, mushrooms, soybean, wheat, natto, soy milk, okara, wheat germ, soybean germ, corn germ, soybean extract, wheat extract, germ extract and embryo extract. More preferably, soybean seed, soybean germ, soybean embryo, soybean bud, wheat seed, wheat germ, wheat embryo, wheat germ, soy milk, and okara are mentioned.
ポリアミンを含む植物抽出物及び/又はポリアミンを有効成分として含む植物抽出物を得る植物組織としては、特に限定されない。好ましくは、種子形態、生育過程にあるものである。生育過程にある植物の場合、本発明の植物抽出物は植物全体、あるいは部分的な組織から得ることができる。得ることができる部位としては、特に限定されないが、全樹、花、蕾、子房、果実、葉、子葉、茎、芽、根、種子、乾燥種子、胚、胚芽などである。好ましくは、果実、葉、茎、芽、種子、乾燥種子、胚芽、胚であり、特に好ましくは、種子、乾燥種子、胚芽、胚などである。 The plant tissue for obtaining a plant extract containing polyamine and / or a plant extract containing polyamine as an active ingredient is not particularly limited. Preferably, the seed is in the form of seed or growth process. In the case of a plant in the growth process, the plant extract of the present invention can be obtained from the whole plant or a partial tissue. The site that can be obtained is not particularly limited, and examples thereof include whole trees, flowers, buds, ovary, fruits, leaves, cotyledons, stems, buds, roots, seeds, dried seeds, embryos, germs, and the like. Preferred are fruits, leaves, stems, buds, seeds, dried seeds, embryos, embryos, and particularly preferred are seeds, dried seeds, germs, embryos, and the like.
ポリアミンを含む植物抽出物及び/又はポリアミンを有効成分として含む植物抽出物を得る植物としては植物加工物であってもよい。その加工方法は、植物を水、有機溶媒、水と有機溶媒の混合物などを用いて、低温、室温、加温条件下での含浸法、蒸留法、圧搾法、超音波法、超臨界流体法、亜臨界流体法などで抽出物を回収する。さらに植物や植物から回収した抽出物を発酵させるなどの加工処理した加工物なども含まれる。例えば植物エキス、豆乳、オカラ、小麦粉、発酵エキス、納豆などが挙げられる。 The plant obtained from the plant extract containing polyamine and / or the plant extract containing polyamine as an active ingredient may be a processed plant product. The processing methods are: plant impregnation using water, organic solvent, mixture of water and organic solvent, etc. at low temperature, room temperature, warming condition, distillation method, pressing method, ultrasonic method, supercritical fluid method Extract the extract by subcritical fluid method. Furthermore, the processed material etc. which fermented the extract collect | recovered from the plant and the plant are included. For example, plant extracts, soy milk, okara, wheat flour, fermented extract, natto and the like can be mentioned.
ポリアミンを含む植物抽出物及び/又はポリアミンを有効成分として含む植物抽出物を得る方法としては、植物及び/又は植物加工物に、酸性条件になるように酸溶液を添加して抽出する方法を挙げることができる。酸性条件は、pHが6以下の条件をいう。抽出時に、pHを酸性条件にすることにより、植物組織から効率的かつ安定的にポリアミン組成物を回収することができる。この効果は、pHが6以下であれば一様に得られるが、好ましくはpHが4以下であり、特に好ましくはpHが2以下である。pHの下限については、使用する酸溶液の原液のpHに相当し、特に制限されないが、好ましくは、pH0〜2である。
酸性条件下(酸水溶液)で植物抽出物を得ることで、エタノールやメタノールのような有機溶媒で回収した植物抽出物に比べてポリアミン量の回収率が高くなり、特に水に溶けにくい化合型ポリアミンを酸性条件によって水に可溶化でき、有機溶媒では抽出効率が低い遊離型ポリアミンの含量も向上する。ポリアミンは酸性条件下では優れた安定性を示し、植物抽出物中に含まれるポリアミンやその他の有効成分の安定性が向上する。さらに酸性条件下(酸水溶液)で植物抽出物を得ることで、ポリアミン以外の天然有効成分が同時に回収される。例えば、天然有効成分としては単糖、オリゴ糖等の糖類、ペプチド、蛋白質等が挙げられる。ポリアミンとポリアミン以外の天然有効成分を同時に含むことで、細胞賦活化、細胞外マトリックス(コラーゲン・ヒアルロン酸)産生促進効果がより増強される。加えて、回収した植物抽出物は水溶液であるため有機溶媒に比べて安全性の面でも高いメリットが期待される。
Examples of a method for obtaining a plant extract containing a polyamine and / or a plant extract containing a polyamine as an active ingredient include an extraction method by adding an acid solution to a plant and / or a processed plant product so as to be in an acidic condition. be able to. Acidic conditions refer to conditions where the pH is 6 or less. By setting the pH to acidic conditions during extraction, the polyamine composition can be efficiently and stably recovered from the plant tissue. This effect can be obtained uniformly when the pH is 6 or less, but preferably the pH is 4 or less, and particularly preferably the pH is 2 or less. The lower limit of pH corresponds to the pH of the stock solution of the acid solution to be used and is not particularly limited, but is preferably pH 0-2.
By obtaining a plant extract under acidic conditions (acid aqueous solution), the recovery rate of polyamine amount is higher than that of plant extracts collected with organic solvents such as ethanol and methanol, and it is a compound polyamine that is particularly difficult to dissolve in water. Can be solubilized in water under acidic conditions, and the content of free polyamines with low extraction efficiency is improved with organic solvents. Polyamines exhibit excellent stability under acidic conditions, and improve the stability of polyamines and other active ingredients contained in plant extracts. Furthermore, by obtaining a plant extract under acidic conditions (acid aqueous solution), natural active ingredients other than polyamines are simultaneously recovered. For example, natural active ingredients include saccharides such as monosaccharides and oligosaccharides, peptides and proteins. By containing polyamine and a natural active ingredient other than polyamine at the same time, cell activation and extracellular matrix (collagen / hyaluronic acid) production promoting effect are further enhanced. In addition, since the recovered plant extract is an aqueous solution, a high merit is expected in terms of safety as compared with an organic solvent.
酸性条件下になるように添加する酸溶液としては、塩酸、硫酸、リン酸などの鉱酸、酢酸、プロピオン酸、酪酸、蓚酸、マロン酸、コハク酸、フマル酸、マレイン酸、リンゴ酸、乳酸、酒石酸、クエン酸、安息香酸などの有機酸および酸性水が挙げられるが、好ましくは0.01N〜6Nの塩酸、硫酸、硝酸、酢酸、リン酸、トリクロロ酢酸、スルホサリチル酸、ギ酸、クエン酸、乳酸や0.1〜10%の過塩素酸などの無機酸や有機酸などであり、特に好ましくは、0.0625〜1Nの塩酸、0.25〜5%の過塩素酸、0.1〜1Nの硫酸などである。 Acid solutions to be added under acidic conditions include mineral acids such as hydrochloric acid, sulfuric acid, phosphoric acid, acetic acid, propionic acid, butyric acid, succinic acid, malonic acid, succinic acid, fumaric acid, maleic acid, malic acid, lactic acid Organic acids such as tartaric acid, citric acid, benzoic acid and acidic water, preferably 0.01N-6N hydrochloric acid, sulfuric acid, nitric acid, acetic acid, phosphoric acid, trichloroacetic acid, sulfosalicylic acid, formic acid, citric acid, Inorganic acids and organic acids such as lactic acid and 0.1 to 10% perchloric acid, particularly preferably 0.0625 to 1N hydrochloric acid, 0.25 to 5% perchloric acid, 0.1 to 10% 1N sulfuric acid or the like.
抽出工程において、ポリフェノール吸着剤を添加してもよい。ポリフェノール吸着剤の添加により、ポリアミンを含む植物抽出物及び/又はポリアミンを有効成分とする植物抽出物の回収を容易ならしめることができる。ポリフェノール吸着剤は、ポリフェノール類を吸着できる物質であれば、特に限定されないが、PVPP(ポリビニルポリピロリドン)、PVP(ポリビニルピロリドン)、PEG(ポリエチレングリコール)等が好ましく使用される。特に好ましくは、PVPP(ポリビニルポリピロリドン)である。これらのポリフェノール吸着剤は市販の物質を使用してもよい。たとえば、ポリクラール(登録商標)、POLYCLAR(登録商標)(アイエスピー社製)、Divergan(登録商標)(BASF社製)、Dowex(登録商標)−1、PVP−40等を使用しても良い。植物及び/又は植物加工物に酸溶液を添加した後にポリフェノール吸着剤を添加することで、ポリアミンを含む植物抽出物及び/又はポリアミンを有効成分として含む植物抽出物の回収量、収率、純度が高まることが期待できる。また、ポリフェノール吸着剤を添加することで、細胞、皮膚細胞に対する賦活化、抗酸化、抗老化、コラーゲン産生、ヒアルロン酸産生効果に対してネガティブに作用するポリフェノール類等の植物抽出物中への混入を抑えることができる。ポリフェノール吸着剤の添加量は、好ましくは0.1〜30%(w/v)、より好ましくは0.5〜20%(w/v)、さらに好ましくは、1〜10%(w/v)である。 In the extraction step, a polyphenol adsorbent may be added. By adding a polyphenol adsorbent, it is possible to facilitate recovery of a plant extract containing polyamine and / or a plant extract containing polyamine as an active ingredient. The polyphenol adsorbent is not particularly limited as long as it is a substance that can adsorb polyphenols, but PVPP (polyvinyl polypyrrolidone), PVP (polyvinyl pyrrolidone), PEG (polyethylene glycol) and the like are preferably used. Particularly preferred is PVPP (polyvinyl polypyrrolidone). These polyphenol adsorbents may use commercially available materials. For example, Polyclar (registered trademark), POLYCLAR (registered trademark) (manufactured by ISP), Divergan (registered trademark) (manufactured by BASF), Dowex (registered trademark) -1, PVP-40, or the like may be used. By adding a polyphenol adsorbent after adding an acid solution to a plant and / or processed plant product, the recovered amount, yield, and purity of the plant extract containing polyamine and / or the plant extract containing polyamine as an active ingredient are improved. It can be expected to increase. In addition, by adding polyphenol adsorbent, mixing into plant extracts such as polyphenols that act negatively on activation of cells, skin cells, antioxidant, anti-aging, collagen production, hyaluronic acid production effect Can be suppressed. The amount of polyphenol adsorbent added is preferably 0.1 to 30% (w / v), more preferably 0.5 to 20% (w / v), still more preferably 1 to 10% (w / v). It is.
植物及び/又は植物加工物に、酸性条件になるように酸溶液を添加し、所望によりポリフェノール吸着剤を添加した後に破砕、粉砕、混合を行なうことで、ポリアミンを含む植物抽出物及び/又はポリアミンを有効成分として含む植物抽出物の回収量を高めることができる。特に植物組織の場合は細胞壁を有することから細胞壁に損傷を与えることが望ましい。植物加工物や植物エキスの場合には、細胞壁を含まないことから特に細胞壁に損傷を与えるような破砕や粉砕を行う必要はない。破砕や粉砕を行う方法としては、例えば、ミキサー、ブレンダー、ホモジナイザー、乳鉢、超音波破砕機などを利用することができる。 Plant extracts and / or polyamines containing polyamines are added to plants and / or processed plant products by adding an acid solution so as to be in an acidic condition, and optionally adding a polyphenol adsorbent, followed by crushing, grinding and mixing. It is possible to increase the amount of recovered plant extract containing as an active ingredient. Particularly in the case of plant tissue, it is desirable to damage the cell wall because it has a cell wall. In the case of a processed plant product or plant extract, it does not need to be crushed or crushed so as to damage the cell wall since it does not contain the cell wall. As a method for performing crushing or crushing, for example, a mixer, a blender, a homogenizer, a mortar, an ultrasonic crusher, or the like can be used.
植物及び/又は植物加工物に含まれていたポリアミンを酸溶液中(液体画分)に十分に抽出した後に遠心分離や濾過分離によって液体画分を残査や沈殿と分離する。回収された液体画分にはポリアミンが多く含まれており「ポリアミンを含む植物抽出物及び/又はポリアミンを有効成分として含む植物抽出物」が得られる。必要に応じてポリアミン含有植物抽出物は、イオン交換法、膜分画法、ゲル濾過法、電気透析法で脱塩処理や精製処理を行っても良く、これらの方法を少なくとも1つ実施することで、ポリアミンに関してより高純度な植物抽出物を得ることができる。イオン交換法の場合、植物抽出液をイオン交換樹脂にて充填したカラムに通し、有効成分であるポリアミンとアミノ酸、ペプチド、蛋白質、糖類等の夾雑物とを分離する。使用するイオン交換樹脂としては、イオン交換基がスルホン酸基、スルホプロピル基、リン酸基、カルボキシルメチル基、アミノエチル基、ジエチルアミノ基、4級アミノエチル基、4級アンモニウム基等であればよく、陽イオン交換樹脂でも陰イオン交換樹脂でもいずれも使用することができる。陽イオン交換樹脂を使用した場合には、有効成分であるポリアミンは陽イオン交換樹脂に吸着されるので、非吸着物質を十分に分離した後、硫酸、塩酸等の酸性溶液や塩化ナトリウム等の塩溶液で有効成分を溶出する。陰イオン交換樹脂を使用した場合には、有効成分であるポリアミンは陰イオン交換樹脂に吸着されないので、有効成分を含む非吸着画分を回収する。膜分画法の場合、セルロース系、酢酸セルロース系、ポリスルホン系、ポリアミド系、ポリアクリルニトリル系、ポリ四フッ化エチレン系、ポリエステル系、ポリプロピレン系等で分画分子量が1000〜100000の範囲の限外濾過(UF)膜を使用して植物抽出物のUFを行い、有効成分であるポリアミンを含む透過液を回収する。また、食塩阻止率30〜80%のナノフィルトレーション(NF)膜を使用して有効成分溶液のNFを行い、脱塩する。ゲル濾過法の場合、植物抽出物を中和し、ゲル濾過担体を充填したカラムに通して分子量分画により有効成分であるポリアミンを回収する。使用するゲル濾過担体は、デキストラン系、アクリルアミド系、アガロース系、セルロース系、ポリビニル系、ガラス系、ポリスチレン系などで分画分子量が100〜100000の範囲のものである。電気透析法の場合、陽イオン交換膜と陰イオン交換膜とによって仕切られた各膜間に植物抽出物と食塩水とを交互に供給して電気透析を行う。電気透析の条件は、初期電流密度が0.5〜15A/dm2、電圧が0.1〜1.5V/槽などが挙げられる。 After sufficiently extracting the polyamine contained in the plant and / or processed plant product into the acid solution (liquid fraction), the liquid fraction is separated from the residue and precipitate by centrifugation or filtration. The recovered liquid fraction contains a large amount of polyamine, and a “plant extract containing polyamine and / or a plant extract containing polyamine as an active ingredient” is obtained. If necessary, the polyamine-containing plant extract may be desalted or purified by ion exchange, membrane fractionation, gel filtration, or electrodialysis, and at least one of these methods should be performed. Thus, a higher-purity plant extract can be obtained with respect to polyamines. In the case of the ion exchange method, the plant extract is passed through a column filled with an ion exchange resin, and the polyamine as an active ingredient is separated from impurities such as amino acids, peptides, proteins, and sugars. As the ion exchange resin to be used, the ion exchange group may be a sulfonic acid group, sulfopropyl group, phosphoric acid group, carboxylmethyl group, aminoethyl group, diethylamino group, quaternary aminoethyl group, quaternary ammonium group, etc. Either a cation exchange resin or an anion exchange resin can be used. When a cation exchange resin is used, the active component polyamine is adsorbed on the cation exchange resin. Therefore, after sufficiently separating the non-adsorbed substance, an acidic solution such as sulfuric acid or hydrochloric acid or a salt such as sodium chloride is used. The active ingredient is eluted with the solution. When an anion exchange resin is used, the polyamine which is an active ingredient is not adsorbed on the anion exchange resin, so that a non-adsorbed fraction containing the active ingredient is recovered. In the case of the membrane fractionation method, cellulose, cellulose acetate, polysulfone, polyamide, polyacrylonitrile, polytetrafluoroethylene, polyester, polypropylene, etc. A plant extract is subjected to UF using an outer filtration (UF) membrane, and a permeate containing polyamine as an active ingredient is recovered. Moreover, NF of an active ingredient solution is performed and desalted using a nanofiltration (NF) membrane having a salt rejection of 30 to 80%. In the case of the gel filtration method, the plant extract is neutralized and passed through a column packed with a gel filtration carrier to recover the polyamine as an active ingredient by molecular weight fractionation. The gel filtration carrier used is a dextran-based, acrylamide-based, agarose-based, cellulose-based, polyvinyl-based, glass-based, polystyrene-based, or the like having a fractional molecular weight in the range of 100 to 100,000. In the case of electrodialysis, electrodialysis is performed by alternately supplying a plant extract and saline between the membranes partitioned by a cation exchange membrane and an anion exchange membrane. The electrodialysis conditions include an initial current density of 0.5 to 15 A / dm 2 , a voltage of 0.1 to 1.5 V / tank, and the like.
ポリアミンを含む植物抽出物及び/又はポリアミンを有効成分として含む植物抽出物はそのまま細胞賦活化剤、抗老化剤、コラーゲン産生促進剤、ヒアルロン酸産生促進剤、抗酸化剤として利用しても良いが、化粧品・医薬部外品(皮膚外用剤、浴用剤、育毛剤等)、医療用品、衛生用品または医薬品に配合して利用することが好ましい。ポリアミンを配合する濃度(M:モル/リットル)は、吸収程度、作用程度、製品形態、使用頻度などによって決められ、特に限定されるものではないが、培養細胞における細胞培養液中のポリアミン濃度は、通常は0.00001〜100mM、好ましくは0.00005〜75mM、より好ましくは0.0001〜50mMである。一方、直接ヒトの皮膚に塗布する皮膚外用剤、例えば液剤又はクリーム、乳液、ローション、化粧水、軟膏などの化粧品又は医薬品形態の場合、通常は0.01〜10000μM、好ましくは0.05〜1000μM、より好ましくは0.1〜100μM、特に1〜10μMである。経口剤などの固形剤の場合には、1回当たりの投与量は、通常は0.01〜10000μM、好ましくは0.05〜1000μM、より好ましくは0.1〜100μM、特に1〜10μMである。 A plant extract containing a polyamine and / or a plant extract containing a polyamine as an active ingredient may be used as it is as a cell activator, an anti-aging agent, a collagen production promoter, a hyaluronic acid production promoter, or an antioxidant. It is preferably used in cosmetics and quasi-drugs (external skin preparations, bath preparations, hair restorers, etc.), medical supplies, hygiene products or pharmaceuticals. The concentration at which polyamine is blended (M: mol / liter) is determined by the degree of absorption, the degree of action, the product form, the frequency of use, etc., and is not particularly limited, but the concentration of polyamine in the cell culture fluid in cultured cells is Usually, it is 0.00001-100 mM, Preferably it is 0.00005-75 mM, More preferably, it is 0.0001-50 mM. On the other hand, in the case of cosmetic or pharmaceutical forms such as external preparations for skin applied directly to human skin, such as liquids or creams, emulsions, lotions, lotions, ointments, etc., usually 0.01-10000 μM, preferably 0.05-1000 μM More preferably, it is 0.1-100 micromol, especially 1-10 micromol. In the case of a solid preparation such as an oral preparation, the dose per dose is usually 0.01 to 10,000 μM, preferably 0.05 to 1000 μM, more preferably 0.1 to 100 μM, and particularly 1 to 10 μM. .
本発明の「植物由来ポリアミン含有抽出物」は、天然植物由来であるために化学合成品に比べて安全性が高い。また、植物由来の場合には、植物からポリアミン含有抽出物を調製すれば良くて簡便性に優れている。さらに植物由来の場合には、ポリアミン含有抽出物中には少なくともプトレシン、スペルミジン、スペルミンの3種類のポリアミンが含まれており、それぞれについて個々に調製する必要はない。植物由来の場合には、栽培または市販されている植物原料を用いれば良く、特に小麦や大豆の種子は植物原料の中でも安価に販売されており、大量に原料確保することもでき、ポリアミン含有抽出物の生産コストは化学合成品に比べて安価である。化粧品においても天然物、特に植物由来が望まれている。また、植物由来の抽出物中にはポリアミン以外の天然成分が含まれており、その成分がポリアミンによる効果をより高める可能性がある。加えて、ポリアミン以外の天然成分(例えば単糖、オリゴ糖等の糖類、ペプチド、タンパク質等)が有効成分として作用(細胞賦活化・抗老化・コラーゲン産生促進、ヒアルロン酸産生促進)することとが期待される。したがって、本発明の植物由来ポリアミン含有抽出物を有効成分とする細胞賦活化剤又は抗老化剤の有用性は非常に高い。
なお、本明細書において「細胞賦活化」とは、細胞機能や細胞活性を維持または亢進させることを指している。細胞賦活化の結果、細胞機能や細胞活性の低下を抑制、すなわち細胞の老化を抑制することができる。したがって、「賦活化剤」は「抗老化剤」としての有用性を持つ。例えば、皮膚細胞における「細胞賦活化、抗老化」とは、加齢や光老化による基底膜の構造変化の蓄積に伴う皮膚細胞の機能低下を小さくすることで、皮膚のしわ、たるみ、硬化等を防止、改善して弾力のある若々しい健康な肌の状態を維持することなどを指している。また、例えば、毛乳頭細胞または毛母細胞においては、加齢、ストレス、ホルモンバランスによる毛乳頭細胞または毛母細胞の機能低下を小さくすることで、ヘアサイクルを維持して脱毛を抑えることなどを指している。
Since the “plant-derived polyamine-containing extract” of the present invention is derived from a natural plant, it is safer than a chemically synthesized product. Moreover, in the case of plant origin, it suffices to prepare a polyamine-containing extract from a plant, which is excellent in convenience. Furthermore, in the case of plant origin, the polyamine-containing extract contains at least three types of polyamines, putrescine, spermidine, and spermine, and it is not necessary to individually prepare each. In the case of plant origin, cultivated or commercially available plant raw materials may be used. In particular, wheat and soybean seeds are sold at low prices among plant raw materials, and a large amount of raw materials can be secured. The production cost of goods is lower than that of chemically synthesized products. In cosmetics, natural products, especially plants, are desired. Moreover, natural components other than polyamine are contained in the plant-derived extract, and the component may further enhance the effect of the polyamine. In addition, natural components other than polyamines (for example, sugars such as monosaccharides and oligosaccharides, peptides, proteins, etc.) may act as active ingredients (cell activation / anti-aging / collagen production promotion, hyaluronic acid production promotion). Be expected. Therefore, the usefulness of the cell activator or anti-aging agent which uses the plant-derived polyamine-containing extract of the present invention as an active ingredient is very high.
In the present specification, “cell activation” refers to maintaining or enhancing cell function or activity. As a result of cell activation, it is possible to suppress a decrease in cell function or cell activity, that is, to suppress cell aging. Therefore, the “activator” has utility as an “anti-aging agent”. For example, “cell activation and anti-aging” in skin cells means that skin cell wrinkles, sagging, hardening, etc. are reduced by reducing the decrease in skin cell function associated with the accumulation of structural changes in the basement membrane due to aging and photoaging. This refers to maintaining a youthful, healthy skin condition with prevention and improvement. In addition, for example, in dermal papilla cells or hair matrix cells, it is possible to suppress hair loss by maintaining the hair cycle by reducing the functional degradation of dermal papilla cells or hair matrix cells due to aging, stress, hormone balance, etc. pointing.
本発明の植物由来のポリアミン含有抽出物は、抽出物中にポリアミン以外の天然成分が含まれることで、ポリアミンに比べてポリアミン特有の臭気が軽減し、安定性も高まることで、化粧品、医薬部外品、医療用品、衛生用品または医薬品の用途に利用しても品質を損なうことがない。 The plant-derived polyamine-containing extract of the present invention contains a natural component other than polyamine in the extract, so that the odor peculiar to polyamine is reduced compared to polyamine, and the stability is increased. There is no loss of quality even when used for external goods, medical supplies, hygiene products or pharmaceutical applications.
化粧品組成物中の植物由来ポリアミン含有抽出物の添加量は、植物由来ポリアミン含有抽出物の有する作用を損なわない範囲で添加すれば良く、通常0.001〜50質量%が好ましく、0.01〜30質量%がより好ましく、0.1〜10質量%がさらに好ましく0.5〜5質量%が特に好ましい。 What is necessary is just to add the addition amount of the plant-derived polyamine containing extract in a cosmetic composition in the range which does not impair the effect | action which a plant-derived polyamine containing extract has, Usually 0.001-50 mass% is preferable, 0.01- 30 mass% is more preferable, 0.1-10 mass% is further more preferable, and 0.5-5 mass% is especially preferable.
本発明の化粧品組成物は、上記の植物由来ポリアミン含有抽出物以外に、美白剤を含有する。美白剤は、メラニン生成抑制剤、メラニン分解促進剤および/またはメラニン輸送阻害剤であってもよい。 The cosmetic composition of the present invention contains a whitening agent in addition to the plant-derived polyamine-containing extract. The whitening agent may be a melanin production inhibitor, a melanin degradation accelerator and / or a melanin transport inhibitor.
美白剤としては、L−アスコルビン酸及びその誘導体、ハイドロキノン及びその誘導体、ルシノール、エデト酸及びその誘導体、並びに胎盤抽出物、t−AMCHA、アセロラエキス、エイジツエキス、エラグ酸またはその誘導体、火辣エキス、カミツレエキス,カミツレ花エキス・(尿素)、キウイエキス、グルタチオン、トコトリエノール、フェルラ酸、ラズベリーケトン、ルシノール、ウワウルシエキス、ジパルミチン酸ピリドキシン、イオウ、コウジ酸またはその誘導体、グルコサミンまたはその誘導体、ヒドロキシケイヒ酸またはその誘導体、グルタチオン、アルニカエキス、オウゴンエキス、ソウハクヒエキス、サイコエキス、ボウフウエキス、マンネンタケ菌糸体培養物またはその抽出物、シナノキエキス、モモ葉エキス、エイジツエキス、クジンエキス、ジユエキス、トウキエキス、ヨクイニンエキス、カキ葉エキス、ダイオウエキス、ボタンピエキス、ハマメリスエキス、マロニエエキス、オトギリソウエキス、油溶性カンゾウエキス等が例示される。 Examples of whitening agents include L-ascorbic acid and derivatives thereof, hydroquinone and derivatives thereof, lucinol, edetic acid and derivatives thereof, and placenta extract, t-AMCHA, acerola extract, age extract, ellagic acid or derivatives thereof, and fire bud extract , Chamomile extract, chamomile flower extract (urea), kiwi extract, glutathione, tocotrienol, ferulic acid, raspberry ketone, lucinol, walnut extract, pyridoxine dipalmitate, sulfur, kojic acid or its derivatives, glucosamine or its derivatives, hydroxycinnamic acid Or derivatives thereof, glutathione, arnica extract, urgonum extract, Sorohakuhi extract, psycho extract, bowfish extract, mycelia mycelium culture or extract thereof, linden extract, peach leaf extract, Jitsuekisu, Kujin'ekisu, Jiyuekisu, Japanese angelica root extract, Coix extract, persimmon leaf extract, rhubarb extract, moutan bark extract, witch hazel extract, horse chestnut extract, Hypericum extract, oil-soluble licorice extract and the like.
これらの美白剤は、1種を単独で、若しくは2種以上を組み合わせて用いることができる。 These whitening agents can be used alone or in combination of two or more.
本発明の化粧品組成物はさらに、抗老化剤を含有してもよい。抗老化剤は、抗炎症剤および/または抗酸化剤であってもよい。 The cosmetic composition of the present invention may further contain an anti-aging agent. The anti-aging agent may be an anti-inflammatory agent and / or an antioxidant.
抗炎症剤としては、グリチルリチン酸及びその塩、グリチルレチン酸及びその塩、イソプロピルアミノカプロン酸及びその塩、アラントイン、塩化リゾチーム、グアイアズレン、サリチル酸メチル、γ−オリザノールが例示され、抗酸化剤としては、αカロチン、βカロチン、γカロチン、リコピン、クリプトキサンチン、ルテイン、ゼアキサンチン、イソゼアキサンチン、ロドキサンチン、カプサンチン、クロセチン等のカロチノイド;1,4−ジアザシクロオクタン、2,5−ジメチルフラン、2−メチルフラン、2,5−ジフェニルフラン、1,3−ジフェニルイソベンゾフラン、αトコフェロール、βトコフェロール、γトコフェロール、dトコフェロール、ヒスチジン、トリプトファン、メチオニン、アラニン又はそのアルキルエステル;ジブチルヒドロキシトルエン、ブチルヒドロキシアニソール、アスコルビン酸、タンニン酸、エピカテキン、エピカロカテキン、エピカテキンガレート、エピカロカテキンガレート等のタンニン類、ルチン等のフラボノイド、その他没食子酸プロピル、アスタキサンチン、カロチン、トコフエロール、アスコルビン酸、エデト酸四ナトリウム、エリソルビン酸、酢酸トコフェロール、酢酸レチノール、ジビチルヒドロキシトルエン、ステアリン酸アスコルビル、パルミチン酸アスコルビル、メチルシラノールジオレイルトコフェロール・無水ケイ酸混合物、ニコチン酸ベンジル、感光素401号、アスパラギン酸、アデノシン三リン酸2Na、アミノ酪酸、ウイキョウエキス、オランダカラシエキス、カフェイン、クロレラエキス、サフランエキス、ショウキョウエキス、ダイズエキス、タイソウエキス、葉酸、レチノール、パルミチン酸レチノール、イノシトール、ウコンエキス、オリザノール、カロチン、カロットエキス、コムギ胚牙エキス、センキュウエキス、チンピエキス、トウキエキス、トウキ根エキス、ドダミエキス、トコフエロール、ニコチン酸トコフエロール、ボタンエキス、エルゴカルシフェロール、ジカプリル酸ピリドキシン、バチルアルコール、ステアリン酸グリチルレチニル、グリチルリチン酸、グリチルレチン酸、塩酸ジフェンヒドラミン、塩化リゾチーム、アミノカプロン酸、レイシエキス、ヨクイニン、メリロートエキス、ボタンエキス、トウキエキス、トウキ根エキス、センキュウエキス、ゲンノショコエキス、アラントイン、アルニカエキス、アルニカ花エキス、オウゴンエキス、オウレンエキス、オドリコソウエキス、ガマ穂エキス、カミツレエキス、カラミン、カワラヨモギエキス、甘草エキス、グアイアズレン、クチナシエキス、クマザサエキス、グリチルリチン酸2K、グリチルレチン酸ステアリル、ゲンチアナエキス、紅茶エキス、コンフリーエキス、コンフリー葉エキス、酢酸トコフエロール、サリチル酸メチル、酸化亜鉛、シコンエキス,ムラサキ根エキス、シソエキス、シソ葉エキス、シモツケソウエキス、シャクヤクエキス、スイカズラエキス、セージエキス、セイヨウキズタエキス、セイヨウニワトコエキス、セイヨウノコギリソウエキス、センブリエキス、ソウハクヒエキス、トウキンセンカエキス、ピリドキシンHCl、ビワ葉エキス、フユボダイジュエキス、モモ葉・果実エキス、ヤグルマギクエキス、ユキノシタエキス、ヨモギエキス、レタスエキス、ローマカミツレエキス、ワレモコウエキス及びカカロール、ポリアミン等が例示される。 Examples of anti-inflammatory agents include glycyrrhizic acid and salts thereof, glycyrrhetinic acid and salts thereof, isopropylaminocaproic acid and salts thereof, allantoin, lysozyme chloride, guaiazulene, methyl salicylate, and γ-oryzanol. Antioxidants include α-carotene. , Β-carotene, γ-carotene, lycopene, cryptoxanthine, lutein, zeaxanthin, isozeaxanthin, rhodoxanthine, capsanthin, crocetin, etc .; 1,4-diazacyclooctane, 2,5-dimethylfuran, 2-methylfuran, 2,5-diphenylfuran, 1,3-diphenylisobenzofuran, α-tocopherol, β-tocopherol, γ-tocopherol, d-tocopherol, histidine, tryptophan, methionine, alanine or its alkyl ester Tannins such as dibutylhydroxytoluene, butylhydroxyanisole, ascorbic acid, tannic acid, epicatechin, epicacatechin, epicatechin gallate, epicacatechin gallate, flavonoids such as rutin, other propyl gallates, astaxanthin, carotene, tocopherol , Ascorbic acid, tetrasodium edetate, erythorbic acid, tocopherol acetate, retinol acetate, dibitylhydroxytoluene, ascorbyl stearate, ascorbyl palmitate, methylsilanol dioletocopherol / silicic acid mixture, benzyl nicotinate, photosensitizer 401 , Aspartic acid, adenosine triphosphate 2Na, aminobutyric acid, fennel extract, Dutch mustard extract, caffeine, chlorella extract, safra Extract, ginger extract, soybean extract, tiso extract, folic acid, retinol, retinol palmitate, inositol, turmeric extract, oryzanol, carotene, carrot extract, wheat ointment extract, nematode extract, chimpi extract, touki extract, toki root extract, dodami extract, Tocopherol, tocopherol nicotinate, button extract, ergocalciferol, pyridoxine dicaprylate, batyl alcohol, glycyrrhetinyl stearate, glycyrrhizic acid, glycyrrhetinic acid, diphenhydramine hydrochloride, lysozyme, aminocaproic acid, litchi extract, yocuinine, merirot extract, button extract, Toki Extract, Toki Root Extract, Senkyu Extract, Genno Chocolate Extract, Allantoin, Arnica Extract Arnica flower extract, Ogon extract, Oren extract, Odorikosou extract, Catfish ear extract, Chamomile extract, Calamine, Kawaramugi extract, Licorice extract, Guaiazulene, Gardenia extract, Kumazasa extract, Glycyrrhizic acid 2K, Stearyl glycyrrhetic acid, Gentianana extract, Black tea extract, Comfrey Extract, Comfrey Leaf Extract, Tocopherol Acetate, Methyl Salicylate, Zinc Oxide, Shikon Extract, Murasaki Root Extract, Perilla Extract, Perilla Leaf Extract, Citrus Extract, Peonies Extract, Honeysuckle Extract, Sage Extract, Kizuta Extract, Elderflower Extract, Achillea millefolium extract, assembly extract, Sakuhakuhi extract, eucalyptus extract, pyridoxine HCl, loquat leaf extract, flyfish Scan, peach leaves, fruit extract, cornflower extract, saxifrage extract, mugwort extract, lettuce extract, Roman chamomile extract, burnet extract and Kakaroru, polyamines and the like.
これらの抗老化剤は、1種を単独で、若しくは2種以上を組み合わせて用いることができる。 These anti-aging agents can be used individually by 1 type or in combination of 2 or more types.
本発明の化粧品組成物はさらに、保湿剤を含有してもよい。保湿剤は、親水性保湿剤および/または親油性保湿剤であればよく、親水性保湿剤として、アミノ酸、ペプチド、蛋白質、高級アルコール及びこれらの誘導体、親油性保湿剤として、リン脂質、糖脂質、ステロイド類を用いてもよい。 The cosmetic composition of the present invention may further contain a humectant. The moisturizing agent may be a hydrophilic moisturizing agent and / or a lipophilic moisturizing agent. Examples of hydrophilic moisturizing agents include amino acids, peptides, proteins, higher alcohols and their derivatives, lipophilic moisturizing agents, phospholipids, glycolipids. Steroids may also be used.
保湿剤としては、ピリドンカルボン酸ナトリウム、グリコール、グリセリン、グルコース、マルトース、マルチトール、ショ糖、フラクトース、キシリトール、ソルビトール、マルトトリオース、スレイトール、エリスリトール、デンプン分解糖還元アルコール、ソルビトール、エチレングリコール、1,4−ブチレングリコール、ジグリセリン、トリグリセリン、テトラグリセリン、1,3−ブチレングリコール、プロピレングリコール、ジプロピレングリコール、ポリエチレングリコール、1,3−プロパンジオール、その他セリン、グリシン、スレオニン、アラニン、コラーゲン、加水分解コラーゲン、ヒドロネクチン、フィブロネクチン、ケラチン、エラスチン、ローヤルゼリー、コンドロイチン硫酸ヘパリン、グリセロリン脂質、グリセロ糖脂質、スフィンゴリン脂質、スフィンゴ糖脂質、リノール酸またはそのエステル類、エイコサペンタエン酸またはそのエステル類、ペクチン、ビフィズス菌発酵物、乳酸発酵物、酵母抽出物、レイシ菌糸体培養物またはその抽出物、小麦胚芽油、アボガド油、米胚芽油、ホホバ油、ダイズリン脂質、γ−オリザノール、ビロウドアオイエキス、ヨクイニンエキス、ジオウエキス、タイソウエキス、カイソウエキス、キダチアロエエキス、ゴボウエキス、マンネンロウエキス、アルニカエキス、小麦フスマ、ピロリドンカルボン酸、トマトエキス、ツバキ油、大豆リン脂質、ヒアルロン酸、トレオニン、グリコール酸アンモニウム、アルギン酸メチルシラノール、ヨクイニン、トウキエキス、トウキ根エキス、ダイズエキス、アスパラガスエキス、DNA−Na、PCA−Na、RNA−Na、アシタバエキス、アスパラギン酸、アマチヤエキス、アラニン、アルギニン、アルギン酸Na、アルテアエキス、アロエベラエキスー、オイスタエキス、オオムギバクガエキス、カキ葉、加水分解ケラチン、加水分解コラーゲン、加水分解コンキオリン、加水分解卵殻膜、加水分解卵白、加水分解シルク、加水分解ダイズタンパク、褐藻エキス、カリンエキス、キイチゴエキス、キシリトール、キトサン、キュウリエキス、キュウリ果実エキス、グアバ菓エキス、クインスシードエキス、グリシン、グリセリン、グルコース、グレープフルーツエキス、グレープフルーツ果実エキス、クレマティスエキス、ゴボウエキス、コメ発酵液、コンドロイチン硫酸Na、魚コラ一ゲノ、サンザシエキス、シイタケエキス、ジオウエキス、グリセリン、シスチン、システイン、スギナエキス、ゼニアオイエキス、セリン、ソルビトール、ダイズタンパク、トマトエキス、乳酸Na、乳酸桿菌、ダイズ醗酵エキス、尿素仰/ノバラエキス・アーモンド浬、コーン油、ハチミツ、ヒアルロン酸Na、フクノエキス、ベタイン、ヘチマエキス、マルチトール、マルトース、マンニトール、ユリエキス、ラクトフェリン、リシン、リンゴエキス、レンゲソウエキス、ローヤルゼリー、ラノリン脂肪酸ポリエチレングリコール1000、ラノリン脂肪酸イソプロピル、ミリスチン酸イソプロピル、ミリスチン酸イソブチル、ヘキシルデカノール、乳酸ミリスチル、ラノリン脂肪酸、トリカプリルグリセリル、オレイルアルコール、オレイン酸オクチルドデシル、オレイン酸デシル、還元ラノリン、オクチルドデカノール、アーモンド油、アボカド油、オリーブ油、オレイン酸、オレンジラフイー油、カカオ脂、カロットエキス、ゴマ油、サザンカ油、サフラワー油、ジヒドロコレステロール、スクワラン、ステアリン酸コレステリル、セラミド2、月見草油、ヒマシ油、ヒマワリ油、セフニド3、ヒマワリ種子油、ハイブリッドヒマワリ油、フィトスフィンゴシン、ブドウ種子油、ホホバ油、ホホバ種子油、ミネラルオイル、ミンク油、マカデミアナッツ油、メドウフォーム油、ユーカリ油、ユーカリ葉油、ラノリン、リノール酸、ローズヒップ油、ワセリン及びポリグルタミン酸等が例示される。 Examples of humectants include sodium pyridonecarboxylate, glycol, glycerin, glucose, maltose, maltitol, sucrose, fructose, xylitol, sorbitol, maltotriose, threitol, erythritol, amylolytic sugar-reducing alcohol, sorbitol, ethylene glycol, 1 , 4-butylene glycol, diglycerin, triglycerin, tetraglycerin, 1,3-butylene glycol, propylene glycol, dipropylene glycol, polyethylene glycol, 1,3-propanediol, other serine, glycine, threonine, alanine, collagen, Hydrolyzed collagen, hydronectin, fibronectin, keratin, elastin, royal jelly, chondroitin sulfate heparin, glycerophospholipid, Lyceroglycolipid, sphingophospholipid, glycosphingolipid, linoleic acid or esters thereof, eicosapentaenoic acid or esters thereof, pectin, bifidobacteria fermentation product, lactic acid fermentation product, yeast extract, lychee mycelium culture or extraction thereof , Wheat germ oil, avocado oil, rice germ oil, jojoba oil, soybean phospholipid, γ-oryzanol, bellows oyster extract, yakuinin extract, gallow extract, typhoid extract, diatomaceous earth extract, burdock extract, mannen wax extract, arnica extract, Wheat bran, pyrrolidone carboxylic acid, tomato extract, camellia oil, soybean phospholipid, hyaluronic acid, threonine, ammonium glycolate, methylsilanol alginate, yokuinin, toki extract, toki root extract, soybean extract, asparagus Gas extract, DNA-Na, PCA-Na, RNA-Na, ashitaba extract, aspartic acid, amachiya extract, alanine, arginine, sodium alginate, altea extract, aloe vera extract, oyster extract, barley leaf extract, oyster leaf, hydrolyzed keratin, Hydrolyzed collagen, hydrolyzed conchiolin, hydrolyzed eggshell membrane, hydrolyzed egg white, hydrolyzed silk, hydrolyzed soy protein, brown algae extract, karin extract, raspberry extract, xylitol, chitosan, cucumber extract, cucumber fruit extract, guava confection extract, Quince seed extract, glycine, glycerin, glucose, grapefruit extract, grapefruit fruit extract, clematis extract, burdock extract, rice fermentation broth, chondroitin sulfate Na, fish collagena, sun Shii extract, Shiitake extract, Giant extract, Glycerin, Cystine, Cysteine, Horsetail extract, Mallow extract, Serine, Sorbitol, Soy protein, Tomato extract, Lactic acid Na, Lactobacillus, Soybean fermented extract, Urea supine / Novara extract / Almond koji, Corn oil, Honey, hyaluronic acid Na, fukuno extract, betaine, loofah extract, maltitol, maltose, mannitol, lily extract, lactoferrin, ricin, apple extract, lotus extract, royal jelly, lanolin fatty acid polyethylene glycol 1000, lanolin fatty acid isopropyl, isopropyl myristate, myristic acid Isobutyl, hexyldecanol, myristyl lactate, lanolin fatty acid, tricaprylglyceryl, oleyl alcohol, oleic acid Chilled decyl, decyl oleate, reduced lanolin, octyl decanol, almond oil, avocado oil, olive oil, oleic acid, orange rough oil, cocoa butter, carrot extract, sesame oil, sasanqua oil, safflower oil, dihydrocholesterol, squalane, stearin Cholesteryl acid, ceramide 2, evening primrose oil, sunflower oil, sunflower oil, cefnide 3, sunflower seed oil, hybrid sunflower oil, phytosphingosine, grape seed oil, jojoba oil, jojoba seed oil, mineral oil, mink oil, macadamia nut oil, meadow Examples include foam oil, eucalyptus oil, eucalyptus leaf oil, lanolin, linoleic acid, rosehip oil, petrolatum, and polyglutamic acid.
これらの保湿剤は、1種を単独で、若しくは2種以上を組み合わせて用いることができる。 These humectants can be used alone or in combination of two or more.
本発明の化粧品組成物はさらに、紫外線吸収剤を含有してもよい。紫外線吸収剤としては、安息香酸系紫外線吸収剤、アントラニル酸系紫外線吸収剤、サリチル酸系紫外線吸収剤、ケイ皮酸系紫外線吸収剤、トリアジン系紫外線吸収剤、ベンゾフェノン系紫外線吸収剤などを使用しても良い。 The cosmetic composition of the present invention may further contain an ultraviolet absorber. As UV absorbers, use benzoic acid UV absorbers, anthranilic acid UV absorbers, salicylic acid UV absorbers, cinnamic acid UV absorbers, triazine UV absorbers, benzophenone UV absorbers, etc. Also good.
紫外線吸収剤としては、安息香酸アミル、パラアミノ安息香酸オクチル、サリチル酸エチレングリコール、サリチル酸フェニル、サリチル酸オクチル、サリチル酸ベンジル、サリチル酸ブチルフェニル、サリチル酸ホモメンチル、ケイ皮酸ベンジル、パラメトキシケイ皮酸2−エトキシエチル、パラメトキシケイ皮酸オクチル、ジパラメトキシケイ皮酸モノ2−エチルヘキサン酸グリセリル、パラメトキシケイ皮酸イソプロピル、ジイソプロピル・ジイソプロピルケイ皮酸エステル混合物、ウロカニン酸、ウロカニン酸エチル、ヒドロキシメトキシベンゾフェノン、ヒドロキシメトキシベンゾフェノンスルホン酸およびその塩、ジヒドロキシメトキシベンゾフェノン、ジヒドロキシメトキシベンゾフェノンジスルフォン酸ナトリウム、ジヒドロキシベンゾフェノン、テトラヒドロキシベンゾフェノン、4−tert−ブチル−4’−メトキシ−ジベンゾイルメタン、2、4、6−トリアニリノ−p−(カルボ−2’−エチルヘキシル−1’−オキシ)−1、3、5−トリアジン、2−(2−ヒドロキシ−5−メチルフェニル)ベンゾトリアゾール、パラジメチルアミノ安息香酸2−エチルヘキシル、パラアミノ安息香酸エチル、トプチルメトキシジペンゾイルメタン、オキシベンゾン−1、グアイアズレンスルホン酸エチル、酸化亜鉛、シノキサート、ホモメンチル−N−アセチルアントラニレートなどが例示される。 Examples of the ultraviolet absorber include amyl benzoate, octyl paraaminobenzoate, ethylene glycol salicylate, phenyl salicylate, octyl salicylate, benzyl salicylate, butylphenyl salicylate, homomenthyl salicylate, benzyl cinnamate, 2-ethoxyethyl paramethoxycinnamate, Octyl paramethoxycinnamate, glyceryl mono-2-ethylhexanoate diparamethoxycinnamate, isopropyl paramethoxycinnamate, diisopropyl diisopropylcinnamate ester mixture, urocanic acid, ethyl urocanate, hydroxymethoxybenzophenone, hydroxymethoxy Benzophenonesulfonic acid and its salts, dihydroxymethoxybenzophenone, dihydroxymethoxybenzophenone sodium disulfonate, dihydride Xylbenzophenone, tetrahydroxybenzophenone, 4-tert-butyl-4′-methoxy-dibenzoylmethane, 2,4,6-trianilino-p- (carbo-2′-ethylhexyl-1′-oxy) -1,3, 5-triazine, 2- (2-hydroxy-5-methylphenyl) benzotriazole, 2-ethylhexyl paradimethylaminobenzoate, ethyl paraaminobenzoate, topylmethoxydipenzoylmethane, oxybenzone-1, ethyl guaiazulenesulfonate, oxidation Examples thereof include zinc, sinoxate, and homomenthyl-N-acetylanthranilate.
これらの紫外線吸収剤は、1種を単独で、若しくは2種以上を組み合わせて用いることができる。 These ultraviolet absorbers can be used alone or in combination of two or more.
本発明の化粧品組成物はさらに、抗菌剤を含有してもよい。抗菌剤は、有機系抗菌剤および/または無機系抗菌剤であってもよい。 The cosmetic composition of the present invention may further contain an antibacterial agent. The antibacterial agent may be an organic antibacterial agent and / or an inorganic antibacterial agent.
抗菌剤としては、オウバク抽出液、ハロカルバン、クロロフェネシン、塩化リゾチーム、塩酸アルキルジアミノエチルグリシン、イソプロピルメチルフェノール、チモール、ヘキサクロロフェン、ベルベリン、チオキソロン、サリチル酸およびそれらの誘導体、安息香酸、安息香酸ナトリウム、パラオキシ安息香酸エステル、パラクロルメタクレゾール、塩化ベンザルコニウム、フェノキシエタノール、イソプロピルメチルフェノール、石炭酸、ソルビン酸、ソルビン酸カリウム、ヘキサクロロフェン、塩化クロルヘキシジン、トリクロロカルバニリド、感光素、ビス(2−ピリジルチオ−1−オキシド)亜鉛、チアントール、ヒノキチオール、トリクロサン、トリクロロヒドロキシジフェニルエーテル、クロルヘキシジングルコン酸塩、フェノキシエタノール、レゾルシン、アズレン、サリチル酸、ジンクピリチオン、モノニトログアヤコールナトリウム、ウイキョウエキス、サンショウエキス、塩化セチルピリジニウム、塩化ベンゼトニウム及びウンデシレン酸誘導体などが例示される。 Antibacterial agents include alum extract, halocarban, chlorophenesine, lysozyme chloride, alkyldiaminoethylglycine hydrochloride, isopropylmethylphenol, thymol, hexachlorophene, berberine, thioxolone, salicylic acid and their derivatives, benzoic acid, sodium benzoate , Paraoxybenzoic acid ester, parachlormetacresol, benzalkonium chloride, phenoxyethanol, isopropylmethylphenol, carboxylic acid, sorbic acid, potassium sorbate, hexachlorophene, chlorhexidine chloride, trichlorocarbanilide, photosensitizer, bis (2-pyridylthio) -1-oxide) zinc, thianthol, hinokitiol, triclosan, trichlorohydroxydiphenyl ether, chlorhexidine gluconate, Bruno butoxyethanol, resorcinol, azulene, salicylic acid, zinc pyrithione, sodium mononitroguayacol, fennel extract, pepper extract, cetylpyridinium chloride, etc. benzethonium chloride and undecylenic acid derivatives.
これらの抗菌剤は、1種を単独で、若しくは2種以上を組み合わせて用いることができる。 These antibacterial agents can be used alone or in combination of two or more.
植物由来ポリアミン含有抽出物を含有する化粧品組成物の形態は特に制限されない。したがって、固体、液体、ペースト、ゼリー、粉末などのいずれの状態をとるものであってもよい。このような状態を形成するために、例えばゲル化剤を用いて固化したり、液体を用いて分散状態にしたりすることができる。また、溶媒を添加して溶液にしたり、噴霧乾燥して粉末状にしたりすることもできる。 The form of the cosmetic composition containing the plant-derived polyamine-containing extract is not particularly limited. Therefore, it may take any state such as solid, liquid, paste, jelly, and powder. In order to form such a state, it can be solidified using, for example, a gelling agent, or can be dispersed using a liquid. Moreover, a solvent can be added to make a solution, or it can be spray-dried to form a powder.
本発明の植物由来ポリアミン含有抽出物を含有する化粧品組成物は、優れた細胞賦活化効果、コラーゲン産生促進効果、ヒアルロン酸産生促進効果、抗酸化効果、保湿効果及び老化防止効果を有しており、皮膚表面に適度な潤いを与えてハリとツヤを保つことが確認されている。 The cosmetic composition containing the plant-derived polyamine-containing extract of the present invention has an excellent cell activation effect, collagen production promoting effect, hyaluronic acid production promoting effect, antioxidant effect, moisturizing effect and anti-aging effect. It has been confirmed that it moderately moisturizes the skin surface and keeps it firm and shiny.
例えば、本発明の植物由来ポリアミン含有抽出物を含有する化粧品組成物は化粧品として使用することができる。化粧品としては、化粧石鹸、シャンプー、洗顔料、リンス、アイクリーム、アイシャドウ、クリーム・乳液、化粧水、香水、おしろい、化粧油、頭髪用化粧品、染毛料、練香水、パウダー、パック、クレンジングクリーム、ひげそり用クリーム、ひげそり用ローション、日焼けオイル、日焼け止めオイル、日焼けローション、日焼け止めローション、日焼けクリーム、日焼け止めクリーム、ファンデーション、粉末香水、ほお紅、マスカラ、眉墨、爪クリーム、美爪エナメル、美爪エナメル除去液、洗毛料、浴用化粧品、口紅、リップクリーム、アイライナー、歯磨き、デオドラント剤、オーデコロン、養毛剤および育毛剤などが例示される。また、本発明の植物由来ポリアミン含有抽出物を含有する化粧品組成物は、軟膏剤や湿布剤などとして使用することもできる。 For example, the cosmetic composition containing the plant-derived polyamine-containing extract of the present invention can be used as a cosmetic. Cosmetics include cosmetic soap, shampoo, facial cleanser, rinse, eye cream, eye shadow, cream / milky lotion, lotion, perfume, funny, cosmetic oil, hair cosmetics, hair dye, paste perfume, powder, pack, cleansing cream , Shaving cream, shaving lotion, tanning oil, sunscreen oil, tanning lotion, sunscreen lotion, tanning cream, sunscreen cream, foundation, powdered perfume, blusher, mascara, eyebrow, nail cream, beautiful nail enamel, beautiful nails Examples include enamel remover, hair wash, bath cosmetic, lipstick, lip balm, eyeliner, toothpaste, deodorant, eau de cologne, hair nourishing agent, and hair restorer. Moreover, the cosmetic composition containing the plant-derived polyamine-containing extract of the present invention can also be used as an ointment or a poultice.
本発明の植物由来ポリアミン含有抽出物を含有する化粧品組成物には、様々な成分をさらに添加させておくことができる。 Various components can be further added to the cosmetic composition containing the plant-derived polyamine-containing extract of the present invention.
例えば、植物由来ポリアミン含有抽出物を含有する化粧品組成物は、非イオン性界面活性剤、低級アルコール、多価アルコール、油類、高級脂肪酸、高級アルコール、合成エステル、シリコーンなどに溶解して用いてもよい。 For example, a cosmetic composition containing a plant-derived polyamine-containing extract is used by dissolving in a nonionic surfactant, a lower alcohol, a polyhydric alcohol, an oil, a higher fatty acid, a higher alcohol, a synthetic ester, silicone or the like. Also good.
非イオン界面活性剤としては、例えば、ソルビタン脂肪酸エステル類(例えば、ソルビタンモノオレエート、ソルビタンモノイソステアレート、ソルビタンモノラウレート、ソルビタンモノパルミテート、ソルビタンモノステアレート、ソルビタンセスキオレエート、ソルビタントリオレエート、ペンタ−2−エチルヘキシル酸ジグリセロールソルビタン、テトラ−2−エチルヘキシル酸ジグリセロールソルビタン等);グリセリンポリグリセリン脂肪酸類(例えば、モノ綿実油脂肪酸グリセリン、モノエルカ酸グリセリン、セスキオレイン酸グリセリン、モノステアリン酸グリセリン、α,α’−オレイン酸ピログルタミン酸グリセリン、モノステアリン酸グリセリンリンゴ酸等);プロピレングリコール脂肪酸エステル類(例えば、モノステアリン酸プロピレングリコール等);硬化ヒマシ油誘導体;グリセリンアルキルエーテル等が挙げられる。 Nonionic surfactants include, for example, sorbitan fatty acid esters (for example, sorbitan monooleate, sorbitan monoisostearate, sorbitan monolaurate, sorbitan monopalmitate, sorbitan monostearate, sorbitan sesquioleate, sorbitan trioleate). Glycerol, penta-2-ethylhexyl diglycerol sorbitan, tetra-2-ethylhexyl diglycerol sorbitan, etc.); glycerin polyglycerin fatty acids (eg mono cottonseed oil fatty acid glycerin, monoerucic acid glycerin, sesquioleate glycerin, glyceryl monostearate) , Α, α′-oleic acid pyroglutamate glycerin, monostearate glycerin malate, etc.); propylene glycol fatty acid esters (for example, monos Propylene glycol tea acrylate, etc.); hardened castor oil derivative; glycerin alkyl ether and the like.
POE系の親水性非イオン界面活性剤としては、例えば、POE−ソルビタン脂肪酸エステル類(例えば、POE−ソルビタンモノオレエート、POE−ソルビタンモノステアレート、POE−ソルビタンモノオレエート、POE−ソルビタンテトラオレエート等);POEソルビット脂肪酸エステル類(例えば、POE−ソルビットモノラウレート、POE−ソルビットモノオレエート、POE−ソルビットペンタオレエート、POE−ソルビットモノステアレート等);POE−グリセリン脂肪酸エステル類(例えば、POE−グリセリンモノステアレート、POE−グリセリンモノイソステアレート、POE−グリセリントリイソステアレート等のPOE−モノオレエート等);POE−脂肪酸エステル類(例えば、POE−ジステアレート、POE−モノジオレエート、ジステアリン酸エチレングリコール等);POE−アルキルエーテル類(例えば、POE−ラウリルエーテル、POE−オレイルエーテル、POE−ステアリルエーテル、POE−ベヘニルエーテル、POE−2−オクチルドデシルエーテル、POE−コレスタノールエーテル等);プルロニック型類(例えば、プルロニック等);POE・POP−アルキルエーテル類(例えば、POE・POP−セチルエーテル、POE・POP−2−デシルテトラデシルエーテル、POE・POP−モノブチルエーテル、POE・POP−水添ラノリン、POE・POP−グリセリンエーテル等);テトラPOE・テトラPOP−エチレンジアミン縮合物類(例えば、テトロニック等);POE−ヒマシ油硬化ヒマシ油誘導体(例えば、POE−ヒマシ油、POE−硬化ヒマシ油、POE−硬化ヒマシ油モノイソステアレート、POE−硬化ヒマシ油トリイソステアレート、POE−硬化ヒマシ油モノピログルタミン酸モノイソステアリン酸ジエステル、POE−硬化ヒマシ油マレイン酸等);POE−ミツロウ・ラノリン誘導体(例えば、POE−ソルビットミツロウ等);アルカノールアミド(例えば、ヤシ油脂肪酸ジエタノールアミド、ラウリン酸モノエタノールアミド、脂肪酸イソプロパノールアミド等);POE−プロピレングリコール脂肪酸エステル;POE−アルキルアミン;POE−脂肪酸アミド;ショ糖脂肪酸エステル;アルキルエトキシジメチルアミンオキシド;トリオレイルリン酸等が挙げられる。 Examples of the POE-based hydrophilic nonionic surfactant include POE-sorbitan fatty acid esters (for example, POE-sorbitan monooleate, POE-sorbitan monostearate, POE-sorbitan monooleate, POE-sorbitan tetraoleate). POE sorbite fatty acid esters (eg, POE-sorbite monolaurate, POE-sorbite monooleate, POE-sorbite pentaoleate, POE-sorbite monostearate, etc.); POE-glycerin fatty acid esters (eg, POE-glycerol monostearate, POE-glycerin monoisostearate, POE-monooleate such as POE-glycerol triisostearate, etc.); POE-fatty acid esters (for example, POE-distearate) POE-alkyl ethers (for example, POE-lauryl ether, POE-oleyl ether, POE-stearyl ether, POE-behenyl ether, POE-2-octyldodecyl ether), POE-monodiolate, ethylene glycol distearate, etc. POE-cholestanol ether, etc.); Pluronic type (for example, Pluronic, etc.); POE • POP-alkyl ethers (for example, POE • POP-cetyl ether, POE • POP-2-decyltetradecyl ether, POE • POP−) Monobutyl ether, POE / POP-hydrogenated lanolin, POE / POP-glycerin ether, etc.); tetra-POE / tetra-POP-ethylenediamine condensates (for example, Tetronic, etc.); POE-castor oil-cured castor Oil derivatives (eg POE-castor oil, POE-hardened castor oil, POE-hardened castor oil monoisostearate, POE-hardened castor oil triisostearate, POE-hardened castor oil monopyroglutamic acid monoisostearic acid diester, POE -Hardened castor oil maleic acid, etc.); POE-beeswax lanolin derivatives (eg POE-sorbite beeswax etc.); alkanolamides (eg coconut oil fatty acid diethanolamide, lauric acid monoethanolamide, fatty acid isopropanolamide etc.); POE- Examples thereof include propylene glycol fatty acid ester; POE-alkylamine; POE-fatty acid amide; sucrose fatty acid ester; alkylethoxydimethylamine oxide; trioleyl phosphate.
低級アルコールとしては、例えば、エタノール、プロパノール、イソプロパノール、イソブチルアルコール、t−ブチルアルコール等が挙げられる。 Examples of the lower alcohol include ethanol, propanol, isopropanol, isobutyl alcohol, t-butyl alcohol and the like.
多価アルコールとしては、例えば、2価のアルコール(例えば、エチレングリコール、プロピレングリコール、トリメチレングリコール、1,2−ブチレングリコール、1,3−ブチレングリコール、テトラメチレングリコール、2,3−ブチレングリコール、ペンタメチレングリコール、2−ブテン−1,4−ジオール、ヘキシレングリコール、オクチレングリコール等);3価のアルコール(例えば、グリセリン、トリメチロールプロパン等);4価アルコール(例えば、1,2,6−ヘキサントリオール等のペンタエリスリトール等);5価アルコール(例えば、キシリトール等);6価アルコール(例えば、ソルビトール、マンニトール等);多価アルコール重合体(例えば、ジエチレングリコール、ジプロピレングリコール、トリエチレングリコール、ポリプロピレングリコール、テトラエチレングリコール、ジグリセリン、ポリエチレングリコール、トリグリセリン、テトラグリセリン、ポリグリセリン等);2価のアルコールアルキルエーテル類(例えば、エチレングリコールモノメチルエーテル、エチレングリコールモノエチルエーテル、エチレングリコールモノブチルエーテル、エチレングリコールモノフェニルエーテル、エチレングリコールモノヘキシルエーテル、エチレングリコールモノ2−メチルヘキシルエーテル、エチレングリコールイソアミルエーテル、エチレングリコールベンジルエーテル、エチレングリコールイソプロピルエーテル、エチレングリコールジメチルエーテル、エチレングリコールジエチルエーテル、エチレングリコールジブチルエーテル等);2価アルコールアルキルエーテル類(例えば、ジエチレングリコールモノメチルエーテル、ジエチレングリコールモノエチルエーテル、ジエチレングリコールモノブチルエーテル、ジエチレングリコールジメチルエーテル、ジエチレングリコールジエチルエーテル、ジエチレングリコールブチルエーテル、ジエチレングリコールメチルエチルエーテル、トリエチレングリコールモノメチルエーテル、トリエチレングリコールモノエチルエーテル、プロピレングリコールモノメチルエーテル、プロピレングリコールモノエチルエーテル、プロピレングリコールモノブチルエーテル、プロピレングリコールイソプロピルエーテル、ジプロピレングリコールメチルエーテル、ジプロピレングリコールエチルエーテル、ジプロピレングリコールブチルエーテル等);2価アルコールエーテルエステル(例えば、エチレングリコールモノメチルエーテルアセテート、エチレングリコールモノエチルエーテルアセテート、エチレングリコールモノブチルエーテルアセテート、エチレングリコールモノフェニルエーテルアセテート、エチレングリコールジアジベート、エチレングリコールジサクシネート、ジエチレングリコールモノエチルエーテルアセテート、ジエチレングリコールモノブチルエーテルアセテート、プロピレングリコールモノメチルエーテルアセテート、プロピレングリコールモノエチルエーテルアセテート、プロピレングリコールモノプロピルエーテルアセテート、プロピレングリコールモノフェニルエーテルアセテート等);グリセリンモノアルキルエーテル(例えば、キミルアルコール、セラキルアルコール、バチルアルコール等);糖アルコール(例えば、ソルビトール、マルチトール、マルトトリオース、マンニトール、ショ糖、エリトリトール、グルコース、フルクトース、デンプン分解糖、マルトース、キシリトース、デンプン分解糖還元アルコール等);グリソリッド;テトラハイドロフルフリルアルコール;POE−テトラハイドロフルフリルアルコール;POP−ブチルエーテル;POP・POE−ブチルエーテル;トリポリオキシプロピレングリセリンエーテル;POP−グリセリンエーテル;POP−グリセリンエーテルリン酸;POP・POE−ペンタンエリスリトールエーテル、ポリグリセリン等が挙げられる。 Examples of the polyhydric alcohol include divalent alcohols (for example, ethylene glycol, propylene glycol, trimethylene glycol, 1,2-butylene glycol, 1,3-butylene glycol, tetramethylene glycol, 2,3-butylene glycol, Pentamethylene glycol, 2-butene-1,4-diol, hexylene glycol, octylene glycol, etc.); trivalent alcohol (eg, glycerin, trimethylolpropane, etc.); tetravalent alcohol (eg, 1, 2, 6) Pentaerythritol such as hexanetriol, etc .; pentavalent alcohol (eg, xylitol, etc.); hexavalent alcohol (eg, sorbitol, mannitol, etc.); polyhydric alcohol polymer (eg, diethylene glycol, dipropylene glycol, Tylene glycol, polypropylene glycol, tetraethylene glycol, diglycerin, polyethylene glycol, triglycerin, tetraglycerin, polyglycerin, etc.); divalent alcohol alkyl ethers (for example, ethylene glycol monomethyl ether, ethylene glycol monoethyl ether, ethylene glycol) Monobutyl ether, ethylene glycol monophenyl ether, ethylene glycol monohexyl ether, ethylene glycol mono 2-methylhexyl ether, ethylene glycol isoamyl ether, ethylene glycol benzyl ether, ethylene glycol isopropyl ether, ethylene glycol dimethyl ether, ethylene glycol diethyl ether, ethylene glycol Dibutyl Dihydric alcohol alkyl ethers (for example, diethylene glycol monomethyl ether, diethylene glycol monoethyl ether, diethylene glycol monobutyl ether, diethylene glycol dimethyl ether, diethylene glycol diethyl ether, diethylene glycol butyl ether, diethylene glycol methyl ethyl ether, triethylene glycol monomethyl ether, triethylene glycol) Monoethyl ether, propylene glycol monomethyl ether, propylene glycol monoethyl ether, propylene glycol monobutyl ether, propylene glycol isopropyl ether, dipropylene glycol methyl ether, dipropylene glycol ethyl ether, dipropylene glycol Dibutyl alcohol ether ester (for example, ethylene glycol monomethyl ether acetate, ethylene glycol monoethyl ether acetate, ethylene glycol monobutyl ether acetate, ethylene glycol monophenyl ether acetate, ethylene glycol diazebate, ethylene glycol disuccine) , Diethylene glycol monoethyl ether acetate, diethylene glycol monobutyl ether acetate, propylene glycol monomethyl ether acetate, propylene glycol monoethyl ether acetate, propylene glycol monopropyl ether acetate, propylene glycol monophenyl ether acetate, etc.); glycerin monoalkyl ether (example) Sugar alcohol (eg, sorbitol, maltitol, maltotriose, mannitol, sucrose, erythritol, glucose, fructose, starch-degrading sugar, maltose, xylitol, starch degradation) Sugar-reduced alcohol, etc.); Glysolid; Tetrahydrofurfuryl alcohol; POE-Tetrahydrofurfuryl alcohol; POP-Butyl ether; POP / POE-Butyl ether; Tripolyoxypropylene glycerin ether; POP-glycerin ether; POP-glycerin ether phosphate POP · POE-pentane erythritol ether, polyglycerin and the like.
油類としては、アボカド油、オリーブ油、ゴマ油、ツバキ油、月見草油、タートル油、マカデミアンナッツ油、トウモロコシ油、ミンク油、ナタネ油、卵黄油、パーシック油、小麦胚芽油、サザンカ油、ヒマシ油、アマニ油、サフラワー油、綿実油、エノ油、大豆油、落花生油、茶実油、カヤ油、コメヌカ油、キリ油、ホホバ油、カカオ脂、ヤシ油、馬油、パーム油、パーム核油、牛脂、羊脂、豚脂、ラノリン、鯨ロウ、ミツロウ、カルナウバロウ、モクロウ、キャンデリラロウ、スクワラン等の動植物油およびその硬化油、流動パラフィン、ワセリン等の鉱物油、トリパルミチン酸グリセリン等の合成トリグリセリンが挙げられる。 Oils include avocado oil, olive oil, sesame oil, camellia oil, evening primrose oil, turtle oil, macadamian nut oil, corn oil, mink oil, rapeseed oil, egg yolk oil, persic oil, wheat germ oil, sasanca oil, castor oil , Linseed oil, safflower oil, cottonseed oil, eno oil, soybean oil, peanut oil, tea seed oil, kaya oil, rice bran oil, kiri oil, jojoba oil, cacao butter, palm oil, horse oil, palm oil, palm kernel oil , Beef tallow, sheep fat, lard, lanolin, whale wax, beeswax, carnauba wax, molasses, candelilla wax, squalane, etc. and its hardened oil, mineral oils such as liquid paraffin, petrolatum, synthesis of glycerin tripalmitate, etc. Triglycerin is mentioned.
高級脂肪酸としては、例えばラウリン酸、ミリスチン酸、パルミチン酸、オレイン酸、リノール酸、リノレン酸、ステアリン酸、ベヘン酸、12−ヒドロキシステアリン酸、イソステアリン酸、ウンデシン酸、トール酸、エイコサペンタエン酸、ドコサヘキサエン酸などが挙げられる。高級アルコールとしては、例えば、ラウリルアルコール、セチルアルコール、ステアリルアルコール、ベヘニルアルコール、ミリスチルアルコール、オレイルアルコール、セトステアリルアルコール、ホホバアルコール、ラノリンアルコール、バチルアルコール、2−デシルテトラテセシノール、コレステロール、フィトステロール、イソステアリルアルコール等が挙げられる。合成エステルとしては、例えば、オクタン酸セチル、ミリスチン酸オクチルドデシル、ミリスチン酸イソプロピル、ミリスチン酸ミリスチル、パルミチン酸イソプロピル、ステアリン酸ブチル、ラウリン酸ヘキシル、オレンイ酸デシル、ジメチルオクタン酸、乳酸セチル、乳酸ミリスチル等が挙げられる。シリコーンとしては、例えば、ジメチルポリシロキサン、メチルフェニルポリシロキサン等の鎖状ポリシロキサン、デカメチルシクロポリシロキサン等の環状ポリシロキサン、シリコーン樹脂等の三次元網目構造のもの等が挙げられる。 Examples of higher fatty acids include lauric acid, myristic acid, palmitic acid, oleic acid, linoleic acid, linolenic acid, stearic acid, behenic acid, 12-hydroxystearic acid, isostearic acid, undecylic acid, tallic acid, eicosapentaenoic acid, docosahexaene. An acid etc. are mentioned. Examples of higher alcohols include lauryl alcohol, cetyl alcohol, stearyl alcohol, behenyl alcohol, myristyl alcohol, oleyl alcohol, cetostearyl alcohol, jojoba alcohol, lanolin alcohol, batyl alcohol, 2-decyltetrathececinol, cholesterol, phytosterol, and isostearyl. Alcohol etc. are mentioned. Synthetic esters include, for example, cetyl octanoate, octyldodecyl myristate, isopropyl myristate, myristyl myristate, isopropyl palmitate, butyl stearate, hexyl laurate, decyl orenate, dimethyl octanoate, cetyl lactate, myristyl lactate, etc. Is mentioned. Examples of silicone include chain polysiloxanes such as dimethylpolysiloxane and methylphenylpolysiloxane, cyclic polysiloxanes such as decamethylcyclopolysiloxane, and three-dimensional network structures such as silicone resins.
本発明の植物由来ポリアミン含有抽出物を含有する化粧品組成物は、化粧品以外に、医薬部外品、医療用品、衛生用品、医薬品に配合して利用されることができる。 The cosmetic composition containing the plant-derived polyamine-containing extract of the present invention can be used in combination with quasi-drugs, medical supplies, hygiene products, and pharmaceuticals in addition to cosmetics.
本発明の植物由来ポリアミン含有抽出物を含有する化粧品組成物を、医薬部外品、医療用品、衛生用品、医薬品の形態で実施する場合、剤形は限定されず、アンプル、カプセル、粉末、顆粒、丸剤、錠剤、固形剤、液剤、ゲル、気泡、乳液、クリーム、軟膏、シート、ムース、浴用剤など多様なものとすることができる。 When the cosmetic composition containing the plant-derived polyamine-containing extract of the present invention is implemented in the form of a quasi-drug, medical product, hygiene product, or pharmaceutical product, the dosage form is not limited, and ampoules, capsules, powders, granules Pills, tablets, solids, liquids, gels, bubbles, emulsions, creams, ointments, sheets, mousses, bathing agents, and the like.
医薬部外品、医療用品、衛生用品、医薬品としては、例えば内用・外用薬用製剤、化粧水、乳液、クリーム、軟膏、ローション、オイル、パックなどの基礎化粧料、洗顔料や皮膚洗浄料、シャンプー、リンス、ヘアートリートメント、ヘアクリーム、ポマード、ヘアスプレー、整髪料、パーマ剤、ヘアートニック、染毛料、育毛・養毛料などの頭髪化粧料、ファンデーション、白粉、おしろい、口紅、頬紅、アイシャドウ、アイライナー、マスカラ、眉墨、まつ毛などのメークアップ化粧料、美爪料などの仕上げ用化粧料、香水類、浴用剤、その他、歯磨き類、口中清涼剤・含嗽剤、液臭・防臭防止剤、衛生用品、衛生綿類、ウエットティシュなどが挙げられる。また、本発明の植物由来ポリアミン含有抽出物を含有する化粧品組成物は、軟膏剤や湿布剤などとして使用することもできる。 As quasi-drugs, medical supplies, hygiene products, and pharmaceuticals, for example, internal and external pharmaceutical preparations, skin lotions, emulsions, creams, ointments, lotions, oils, packs, and other basic cosmetics, facial cleansers and skin cleansers, Hair cosmetics such as shampoo, rinse, hair treatment, hair cream, pomade, hair spray, hair conditioner, permanent agent, hair nick, hair dye, hair growth and hair restorer, foundation, white powder, funny, lipstick, blusher, eye shadow, Makeup cosmetics such as eyeliner, mascara, eyebrows, eyelashes, cosmetics for finishing such as nail polish, perfumes, bath preparations, toothpastes, mouth fresheners, mouthwash, liquid odor / deodorant, Sanitary goods, sanitary cotton, wet tissue and the like. Moreover, the cosmetic composition containing the plant-derived polyamine-containing extract of the present invention can also be used as an ointment or a poultice.
本発明の植物由来ポリアミン含有抽出物を含有する化粧品組成物は、ヒトに対して好適に適用されるものであるが、それぞれの作用効果が期待できる限り、ヒト以外の動物に対して適用することもできる。 The cosmetic composition containing the plant-derived polyamine-containing extract of the present invention is suitably applied to humans, but should be applied to animals other than humans as long as each effect can be expected. You can also.
本発明の植物由来ポリアミン含有抽出物を含有する化粧品組成物は、必要に応じて本発明の効果を損なわない範囲内で、医薬部外品、医療用品、衛生用品、医薬品に使用される成分や添加剤を併用して配合することができる。これらの成分や添加剤としては、ロウ類、鉱物油、脂肪酸類、アルコール類、エステル類、金属セッケン、ガム質および水溶性高分子化合物、界面活性剤、ビタミン類、アミノ酸、動物あるいは植物、生薬の抽出物やエキス、微生物培養代謝物、α−ヒドロキシ酸、無機顔料、収斂剤、殺菌・消毒薬、頭髪用剤、香料、色素・着色剤、甘味料、栄養強化剤などが挙げられる。 The cosmetic composition containing the plant-derived polyamine-containing extract of the present invention is a component that is used in quasi-drugs, medical supplies, hygiene products, pharmaceuticals, as long as the effects of the present invention are not impaired as necessary. Additives can be used in combination. These ingredients and additives include waxes, mineral oils, fatty acids, alcohols, esters, metal soaps, gums and water-soluble polymer compounds, surfactants, vitamins, amino acids, animals or plants, herbal medicines Extracts, extracts, microbial culture metabolites, α-hydroxy acids, inorganic pigments, astringents, bactericides / disinfectants, hair preparations, fragrances, pigments / colorants, sweeteners, nutrition enhancers and the like.
例えば、ロウ類としては、ミツロウ、カルナバロウ、鯨ロウ、ラノリン、液状ラノリン、還元ラノリン、硬質ラノリン、カンデリラロウ、モンタンロウ、セラックロウなどが挙げられる。 Examples of waxes include beeswax, carnauba wax, whale wax, lanolin, liquid lanolin, reduced lanolin, hard lanolin, candelilla wax, montan wax, shellac wax, and the like.
例えば、鉱物油としては、流動パラフィン、ワセリン、パラフィン、オゾケライド、セレシン、マイクロクリスタンワックス、ポリエチレン末、スクワレン、スクワラン、プリスタンなどが挙げられる。 Examples of mineral oils include liquid paraffin, petrolatum, paraffin, ozokelide, ceresin, microcristan wax, polyethylene powder, squalene, squalane, and pristane.
例えば、脂肪酸類としては、ラウリン酸、ミリスチン酸、パルミチン酸、ステアリン酸、ベヘン酸、オレイン酸、12−ヒドロキシステアリン酸、ウンデシレン酸、トール油、ラノリン脂肪酸などの天然脂肪酸、イソノナン酸、カプロン酸、2−エチルブタン酸、イソペンタン酸、2−メチルペンタン酸、2−エチルヘキサン酸、イソペンタン酸などの合成脂肪酸が挙げられる。 For example, as fatty acids, natural fatty acids such as lauric acid, myristic acid, palmitic acid, stearic acid, behenic acid, oleic acid, 12-hydroxystearic acid, undecylenic acid, tall oil, lanolin fatty acid, isononanoic acid, caproic acid, Examples include synthetic fatty acids such as 2-ethylbutanoic acid, isopentanoic acid, 2-methylpentanoic acid, 2-ethylhexanoic acid, and isopentanoic acid.
例えば、アルコール類としては、エタノール、イソプロパノール、ラウリルアルコール、セタノール、ステアリルアルコール、オレイルアルコール、ラノリンアルコール、コレステロール、フィトステロールなどの天然アルコール、2−ヘキシルデカノール、イソステアリルアルコール、2−オクチルドデカノールなどの合成アルコール、酸化エチレン、エチレングリコール、ジエチレングリコール、トリエチレングリコール、エチレングリコールモノエチルエーテル、エチレングリコールモノブチルエーテル、ジエチレングリコールモノメチルエーテル、ジエチレングリコールモノエチルエーテル、ポリエチレングリコール、酸化プロピレン、プロピレングリコール、ポリプロピレングリコール、1,3−ブチレングリコール、グリセリン、バチルアルコール、ペンタエリトリトール、ソルビトール、マンニトール、ブドウ糖、ショ糖などの多価アルコール類などが挙げられる。 For example, as alcohols, natural alcohols such as ethanol, isopropanol, lauryl alcohol, cetanol, stearyl alcohol, oleyl alcohol, lanolin alcohol, cholesterol, phytosterol, and synthetic alcohols such as 2-hexyldecanol, isostearyl alcohol, and 2-octyldodecanol , Ethylene oxide, ethylene glycol, diethylene glycol, triethylene glycol, ethylene glycol monoethyl ether, ethylene glycol monobutyl ether, diethylene glycol monomethyl ether, diethylene glycol monoethyl ether, polyethylene glycol, propylene oxide, propylene glycol, polypropylene glycol, 1,3-butylene Glycol, glycerin Batyl alcohol, pentaerythritol, sorbitol, mannitol, glucose, polyhydric alcohols such as sucrose and the like.
例えば、エステル類としては、ミリスチン酸イソプロピル、パルミチン酸イソプロピル、ステアリン酸ブチル、ラウリン酸ヘキシル、ミリスチン酸ミリスチル、オレイン酸オレイル、オレイン酸デシル、ミリスチン酸オクチルドデシル、ジメチルオクタン酸ヘキシルデシル、乳酸セチル、乳酸ミリスチル、フタル酸ジエチル、フタル酸ジブチル、酢酸ラノリン、モノステアリン酸エチレングリコール、モノステアリン酸プロピレングリコール、ジオレイン酸プロピレングリコールなどが挙げられる。 For example, esters include isopropyl myristate, isopropyl palmitate, butyl stearate, hexyl laurate, myristyl myristate, oleyl oleate, decyl oleate, octyldodecyl myristate, hexyl decyl dimethyloctanoate, cetyl lactate, lactic acid Examples include myristyl, diethyl phthalate, dibutyl phthalate, lanolin acetate, ethylene glycol monostearate, propylene glycol monostearate, propylene glycol dioleate, and the like.
例えば、金属セッケンとしては、ステアリン酸アルミニウム、ステアリン酸マグネシウム、ステアリン酸亜鉛、ステアリン酸カルシウム、パルミチン酸亜鉛、ミリスチン酸マグネシウム、ラウリン酸亜鉛、ウンデシレン酸亜鉛などが挙げられる。 For example, examples of the metal soap include aluminum stearate, magnesium stearate, zinc stearate, calcium stearate, zinc palmitate, magnesium myristate, zinc laurate, and zinc undecylate.
例えば、ガム質および水溶性高分子化合物としては、アラビアゴム、ベンゾインゴム、ダンマルゴム、グアヤク脂、アイルランド苔、カラヤゴム、トラガントゴム、キャロブゴム、クインシード、寒天、カゼイン、デキストリン、ゼラチン、ペクチン、デンプン、カラギーナン、カルボキシアルキルキチン、キトサン、ヒドロキシアルキルキチン、低分子キトサン、キトサン塩、硫酸化キチン、リン酸化キチン、アルギン酸およびその塩、ヒアルロン酸およびその塩、コンドロイチン硫酸、ヘパリン、エチルセルロース、メチルセルロース、カルボキシメチルセルロース、カルボキシエチルセルロース、カルボキシエチルセルロースナトリウム、ヒドロキシエチルセルロース、ヒドロキシプロピルセルロース、ニトロセルロース、結晶セルロース、ポリビニルアルコール、ポリビニルメチルエーテル、ポリビニルピロリドン、ポリビニルメタアクリレート、ポリアクリル酸塩、ポリエチレンオキサイドやポリプロピレンオキサイド等のポリアルキレンオキサイドまたはその架橋重合物、カルボキシビニルポリマー、ポリエチレンイミンなどが挙げられる。 For example, gum and water-soluble polymer compounds include gum arabic, benzoin gum, danmar gum, guaiac oil, Irish moss, Karaya gum, tragacanth gum, carob gum, quinseed, agar, casein, dextrin, gelatin, pectin, starch, carrageenan, Carboxyalkylchitin, chitosan, hydroxyalkylchitin, low molecular chitosan, chitosan salt, sulfated chitin, phosphorylated chitin, alginic acid and its salt, hyaluronic acid and its salt, chondroitin sulfate, heparin, ethylcellulose, methylcellulose, carboxymethylcellulose, carboxyethylcellulose , Sodium carboxyethyl cellulose, hydroxyethyl cellulose, hydroxypropyl cellulose, nitrocellulose, crystalline cellulose Scan, polyvinyl alcohol, polyvinyl methyl ether, polyvinyl pyrrolidone, polyvinyl methacrylate, polyacrylic acid salts, polyalkylene oxide or crosslinked polymer thereof such as polyethylene oxide or polypropylene oxide, carboxyvinyl polymers, such as polyethyleneimine.
例えば、界面活性剤としては、アニオン界面活性剤(カルボン酸塩、スルホン酸塩、硫酸エステル塩、リン酸エステル塩)、カチオン界面活性剤(アミン塩、四級アンモニウム塩)、両性界面活性剤(カルボン酸型両性界面活性剤、硫酸エステル型両性界面活性剤、スルホン酸型両性界面活性剤、リン酸エステル型両性界面活性剤)、非イオン界面活性剤(エーテル型非イオン界面活性剤、エーテルエステル型非イオン界面活性剤、エステル型非イオン界面活性剤、ブロックポリマー型非イオン界面活性剤、含窒素型非イオン界面活性剤)、その他の界面活性剤(天然界面活性剤、タンパク質加水分解物の誘導体、高分子界面活性剤、チタン・ケイ素を含む界面活性剤、フッ化炭素系界面活性剤などが挙げられる。 For example, as the surfactant, anionic surfactant (carboxylate, sulfonate, sulfate ester salt, phosphate ester salt), cationic surfactant (amine salt, quaternary ammonium salt), amphoteric surfactant ( Carboxylic acid type amphoteric surfactant, sulfate ester type amphoteric surfactant, sulfonic acid type amphoteric surfactant, phosphate ester type amphoteric surfactant), nonionic surfactant (ether type nonionic surfactant, ether ester) Type nonionic surfactant, ester type nonionic surfactant, block polymer type nonionic surfactant, nitrogen-containing type nonionic surfactant), other surfactants (natural surfactants, protein hydrolysates) Derivatives, polymer surfactants, surfactants containing titanium and silicon, fluorocarbon surfactants, and the like.
例えば、ビタミン類としては、ビタミンA群ではレチノール、レチナール(ビタミンA1)、デヒドロレチナール(ビタミンA2)、カロチン、リコピン(プロビタミンA)、ビタミンB群では、チアミン塩酸塩、チアミン硫酸塩(ビタミンB1)、リボフラビン(ビタミンB2)、ピリドキシン(ビタミンB6)、シアノコバラミン(ビタミンB12)、葉酸類、ニコチン酸類、パントテン酸類、ビオチン類、コリン、イノシトール類、ビタミンC群では、アスコルビン酸およびその誘導体、ビタミンD群では、エルゴカルシフェロール(ビタミンD2)、コレカルシフェロール(ビタミンD3)、ジヒドロタキステロール、ビタミンE群では、トコフェロールおよびその誘導体、ユビキノン類、ビタミンK群では、フィトナジオン(ビタミンK1)、メナキノン(ビタミンK2)、メナジオン(ビタミンK3)、メナジオール(ビタミンK4)などが挙げられる。 For example, as vitamins, retinol, retinal (vitamin A1), dehydroretinal (vitamin A2), carotene, lycopene (provitamin A), vitamin B group, thiamine hydrochloride, thiamine sulfate (vitamin B1) ), Riboflavin (vitamin B2), pyridoxine (vitamin B6), cyanocobalamin (vitamin B12), folic acid, nicotinic acids, pantothenic acids, biotins, choline, inositols, vitamin C, ascorbic acid and its derivatives, vitamin D In the group, ergocalciferol (vitamin D2), cholecalciferol (vitamin D3), dihydrotachysterol, in vitamin E group, tocopherol and its derivatives, ubiquinones, in vitamin K group, phytonadione (vita) Emissions K1), menaquinone (vitamin K2), menadione (vitamin K3), and the like menadiol (vitamin K4).
例えば、アミノ酸としては、バリン、ロイシン、イソロイシン、トレオニン、メチオニン、フェニルアラニン、トリプトファン、リジン、グリシン、アラニン、アスパラギン、グルタミン、セリン、システイン、シスチン、チロシン、プロリン、ヒドロキシプロリン、アスパラギン酸、グルタミン酸、ヒドロキシリジン、アルギニン、オルニチン、ヒスチジンなどや、それらの硫酸塩、リン酸塩、硝酸塩、クエン酸塩、あるいはピロリドンカルボン酸の如きアミノ酸誘導体などが挙げられる。 For example, amino acids include valine, leucine, isoleucine, threonine, methionine, phenylalanine, tryptophan, lysine, glycine, alanine, asparagine, glutamine, serine, cysteine, cystine, tyrosine, proline, hydroxyproline, aspartic acid, glutamic acid, hydroxylysine , Arginine, ornithine, histidine, and the like, and sulfates, phosphates, nitrates, citrates, and amino acid derivatives such as pyrrolidone carboxylic acid.
例えば、動物あるいは植物、生薬の抽出物やエキスとしては、アセンヤク(阿仙薬)、アシタバ、アセロラ、アルテア、アルニカ、アボカド、アマチャ(甘茶)、アロエ、アロエベラ、イラクサ、イチョウ(銀杏葉、銀杏)、ウイキョウ(茴香)、ウコン(鬱金)、ウスバサイシン(細辛)、ウメ(烏梅)、ウラジロガシ、ウワウルシ、ノイバラ(営実)、ヒキオコシ(延命草)、オウギ(黄耆)、コガネバナ(オウゴン)、ヤマザクラ(桜皮)、キハダ(黄柏)、オウレン(黄連)、オタネニンジン(人参)、オトギリソウ(弟切草)、オドリコソウ、オランダガラシ、オレンジ、イトヒメハギ(遠志)、ウツボグサ(夏枯草)、ツルドクダミ(何首烏)、エンジュ(槐花)、ヨモギ(ガイ葉)、ガジュツ(莪朮)、クズ(葛根)、カノコソウ(吉草根)、カミツレ、キカラスウリ(瓜呂根)、カワラヨモギ(茵チン蒿)、カンゾウ(甘草)、フキタンポポ(款冬花、款冬葉)、キイチゴ、キウイ果実、キキョウ(桔梗)、キク(菊花)、キササゲ(梓実)、ミカン属植物果実(枳実)、タチバナ(橘皮)、キュウリ、ウドまたはシシウド(羌活、独活)、アンズ(杏仁)、クコ(地骨皮、枸杞子、枸杞葉)、クララ(苦参)、クスノキ、クマザサ、グレープフルーツ果実、ニッケイ(桂皮)、ケイガイ(ケイガイ)、エビスグサ(決明子)、マルバアサガオまたはアサガオ(ケン牛子)、ベニバナ(紅花)、ゴバイシ(五倍子)、コンフリー、コパイバ、クチナシ(山梔子)、ゲンチアナ、ホオノキ(厚朴)、ヒナタイノコズチ(牛膝)、ゴシュユ(呉茱萸)、ゴボウ、チョウセンゴミシ(五味子)、米、米ぬか、コムギ、ミシマサイコ(柴胡)、サフラン、サボンソウ、サンザシ(山ザ子)、サンショウ(山椒)、サルビア、サンシチニンジン(三七人参)、シイタケ(椎茸)、ジオウ(地黄)、シクンシ(使君子)、ムラサキ(紫根)、シソ(紫蘇葉、紫蘇子)、カキ(柿蒂)、シャクヤク(芍薬)、オオバコ(車前子、車前草)、ショウガ(生姜)、ショウブ(菖蒲)、トウネズミモチ(女貞子)、シモツケソウ、シラカバ、スイカズラ(金銀花、忍冬)、セイヨウキヅタ、セイヨウノコギリソウ、セイヨウニワトコ、アズキ(赤小豆)、ニワトコ(接骨木)、ゼニアオイ、センキュウ(川キュウ)、センブリ(当薬)、クワ(桑白皮、桑葉)、ナツメ(大棗)、ダイズ、タラノキ、チクセツニンジン(竹節人参)、ハナスゲ(知母)、ワレモコウ(地楡)、ドクダミ(十薬)、フユムシナツクサタケ(冬虫夏草)、トウガラシ、ホオズキ(登呂根)、タチジャコウソウ、リョクチャ(緑茶)、コウチャ(紅茶)、チョウジ(丁子)、ウンシュウミカン(陳皮)、ツバキ、ツボクサ、トウガラシ(番椒)、トウキ(当帰)、トウキンセンカ、ダイダイ(橙皮)、ワレモコウ(地楡)、トウモロコシ(南蛮毛)、トチュウ(杜仲、杜仲葉)、トマト、ナンテン(南天実)、ニンニク(大サン)、オオムギ(麦芽)、ハクセン(白蘚皮)、ジャノヒゲ(麦門冬)、パセリ、バタタ、ハッカ(薄荷)、ハマメリス、バラ、ビワ葉(枇杷葉)、マツホド(茯リョウ)、ブドウまたはその葉、ヘチマ、ボダイジュ、ボタン(牡丹皮)、ホップ、マイカイ(マイ瑰花)、松葉、マロニエ、マンネンロウ、ムクロジ、メリッサ、メリロート、ボケ(木瓜)、モヤシ、モモ(桃仁、桃葉)、ヒオウギ(射干)、ビンロウジュ(檳ロウ子)、メハジキ(益母草)、ヤグルマギク、ユキノシタ(虎耳草)、ヤマモモ(楊梅皮)、ヤシャブシ(矢車)、ハトムギ(ヨクイニン)、モウコヨモギ、ヤマヨモギ、ラベンダー、リンゴ果実、マンネンタケ(霊芝)、レモン果実、レンギョウ(連翹)、レンゲソウ、ゲンノショウコ(老鸛草)、ハシリドコロ(ロート根)、鶏トサカ、牛・人の胎盤抽出物、豚・牛の胃、十二指腸、或いは腸の抽出物若しくはその分解物、水溶性コラーゲン、水溶性コラーゲン誘導体、コラーゲン加水分解物、エラスチン、エラスチン加水分解物、水溶性エラスチン誘導体、シルク蛋白、シルク蛋白分解物、牛血球蛋白分解物などが挙げられる。 For example, as an extract or extract of an animal or plant, herbal medicine, Asenyaku (Asen Yaku), Ashitaba, Acerola, Altea, Arnica, Avocado, Achacha (Amacha), Aloe, Aloe Vera, Nettle, Ginkgo (Ginkgo leaf, Ginkgo), Fennel (cage), turmeric (red gold), usba saishin (spicy), Japanese apricot (salmon plum), Japanese white beetle, waurusushi, green rose (fruit), hikiokoshi (life-prolonging grass), Japanese oak (yellow cocoon), Koganebana (Ogon), Yamazakura ( Cherry bark), yellowfin, yellow orchid, ginseng, carrot, helicopter, licorice, Dutch pepper, orange, sagebrush (long-distance), crabs (summer hay), tsurudokudami (what neck shark), enju (槐花), mugwort (guy leaf), scallops (莪 朮), kudu (kazune), kanoko Cormorant (Valgarine), Chamomile, Kikarasuuri (Gurone), Kawara-momogi (Cervus chinensis), Licorice (licorice), Fukidan Popo (Cavity Winter Flower, Clover Winter Leaves), Raspberry, Kiwi Fruit, Japanese Clover (Kikkyo), Chrysanthemum (Chrysanthemum Flower) ), Catalpa (fruit), Citrus fruit (fruit), Tachibana (tachibana skin), cucumber, Udo or Shishido (living, solitary), apricot, wolfberry (bone skin, coconut, coconut leaf) , Clara, bittersweet, Kumazasa, grapefruit fruit, Nikkei (Kei-Kai), Keigai (Kai-Gai), Ebisugua (Keiko), Maruba morning glory or morning glory (Ken cow), safflower (Safflower), Gobaishi (Pyper), Confrey , Copaiba, gardenia, gentian, honoki (shoku), hinata taikozu (cow knee), goshuyu (burdock), burdock, butterfly Ngomushi (Gomiko), Rice, Rice bran, Wheat, Mishima Saiko (Shibahu), Saffron, Savonso, Hawthorn (Yamazako), Salamander (Samurai), Salvia, Sancynin carrot (Ginseng ginseng), Shiitake mushroom (Shiitake), Jiou (jihuang), Shikunshi (Mr. Kimiko), Murasaki (Shine), Perilla (Shiso leaf, Shiso), Oyster (柿蒂), Peonies (glaze), Psyllium (car forerunner, car front grass), Ginger (ginger), Shobu (Japanese cypress), Japanese horned potato (Sadako), Shimotsuke, Birch, Honeysuckle (Gin silver flower, Shinobu), Western ivy, Achillea millefolium, Elderberry, Redwood, Elderberry (Bone), Zeniaoi, River Kyu ), Assembly (this medicine), mulberry (mulberry white skin, mulberry leaf), jujube (large potato), soybean, taranoki, chikutsujinjin (take bamboo carrot) ), Hanasuge (knowing mother), Waremokkou (earth), Dokudami (10 medicines), Fuyumushinatsusatake (Cycium Cordyceps), red pepper, physalis (Torone), Tachikakuso, Ryokucha (green tea), kocha (tea), clove (Clove), mandarin orange (Chen bark), camellia, camellia, capsicum (panju), crested bean curd, red snapper, daidai (orange peel), bitter mulberry (gem), corn (south fur), eucommia , 杜 中葉), tomato, Nanten (Southern fruit), garlic (large sun), barley (malt), hakusen (white birch), janohi (barley winter), parsley, batata, mint (light load), hamamelis, rose , Loquat leaves, pine pods, grapes or their leaves, loofah, bodaiju, buttons (peony skin), hops, maikai , Matsuba, Maronie, Mannenrou, Mukuroji, Melissa, Merirot, Bokeh (Kiso), Palms, Peach (Peachin, Peach), Hiogi (Garden-dried), Binroju (Mellow wax), Swordfish (Mothera), Cornflower, Yukinoshita Grass), bayberry (Yellow Plum), Yashabushi (Yakuin), pearl barley (Yokuinin), mugwort, sagebrush, lavender, apple fruit, garlic mushroom (reishi), lemon fruit, forsythia (lily), forsythia, genus , Hashiridokoro (roth root), chicken tosaka, cattle / human placenta extract, pig / cow stomach, duodenum, or intestinal extract or its degradation product, water-soluble collagen, water-soluble collagen derivative, collagen hydrolyzate, Elastin, elastin hydrolyzate, water-soluble elastin derivative, silk protein, sill Protein hydrolyzate, and the like cow blood cell protein hydrolyzate.
例えば、微生物培養代謝物としては、酵母エキス、亜鉛含有酵母エキス、ゲルマニウム含有酵母エキス、セレン含有酵母エキス、マグネシウム含有酵母エキス、米醗酵エキス、ユーグレナ抽出物、脱脂粉乳の乳酸発酵物などが挙げられる。 Examples of microbial culture metabolites include yeast extract, zinc-containing yeast extract, germanium-containing yeast extract, selenium-containing yeast extract, magnesium-containing yeast extract, rice fermentation extract, Euglena extract, and lactic acid fermented milk powder. .
例えば、α−ヒドロキシ酸としては、グリコール酸、クエン酸、リンゴ酸、酒石酸、乳酸などが挙げられる。 For example, examples of the α-hydroxy acid include glycolic acid, citric acid, malic acid, tartaric acid, and lactic acid.
例えば、無機顔料としては、無水ケイ酸、ケイ酸マグネシウム、タルク、カオリン、ベントナイト、マイカ、雲母チタン、オキシ塩化ビスマス、酸化ジルコニウム、酸化マグネシウム、酸化亜鉛、酸化チタン、炭酸カルシウム、炭酸マグネシウム、黄酸化鉄、ベンガラ、黒酸化鉄、グンジョウ、酸化クロム、水酸化クロム、カーボンブラック、カラミンなどが挙げられる。 For example, inorganic pigments include anhydrous silicic acid, magnesium silicate, talc, kaolin, bentonite, mica, titanium mica, bismuth oxychloride, zirconium oxide, magnesium oxide, zinc oxide, titanium oxide, calcium carbonate, magnesium carbonate, yellow oxide Examples include iron, bengara, black iron oxide, gunjo, chromium oxide, chromium hydroxide, carbon black, and calamine.
例えば、収斂剤としては、乳酸、酒石酸、コハク酸、クエン酸、アラントイン、塩化亜鉛、硫酸亜鉛、酸化亜鉛、カラミン、p−フェノールスルホン酸亜鉛、硫酸アルミニウムカリウム、レソルシン、塩化第二鉄、タンニン酸などが挙げられる。 For example, astringents include lactic acid, tartaric acid, succinic acid, citric acid, allantoin, zinc chloride, zinc sulfate, zinc oxide, calamine, zinc p-phenolsulfonate, potassium aluminum sulfate, resorcin, ferric chloride, tannic acid Etc.
例えば、殺菌・消毒薬としては、アクリノール、イオウ、塩化ベンザルコニウム、塩化ベンゼトニウム、塩化メチルロザニリン、クレゾール、グルコン酸カルシウム、グルコン酸クロルヘキシジン、スルファミン、マーキュロクロム、ラクトフェリンまたはその加水分解物などが挙げられる。 Examples of the bactericidal / disinfectant include acrinol, sulfur, benzalkonium chloride, benzethonium chloride, methyl rosaniline chloride, cresol, calcium gluconate, chlorhexidine gluconate, sulfamine, mercurochrome, lactoferrin or a hydrolyzate thereof.
例えば、頭髪用剤としては、二硫化セレン、臭化アルキルイソキノリニウム液、ジンクピリチオン、ビフェナミン、チアントール、カスタリチンキ、ショウキョウチンキ、トウガラシチンキ、塩酸キニーネ、強アンモニア水、臭素酸カリウム、臭素酸ナトリウム、チオグリコール酸などが挙げられる。 For example, selenium disulfide, alkylisoquinolinium bromide, zinc pyrithione, biphenamine, thianthol, castari tincture, ginger tincture, pepper tincture, quinine hydrochloride, strong ammonia water, potassium bromate, sodium bromate And thioglycolic acid.
例えば、香料としては、ジャコウ、シベット、カストリウム、アンバーグリスなどの天然動物性香料、アニス精油、アンゲリカ精油、イラン精油、イリス精油、ウイキョウ精油、オレンジ精油、カナンガ精油、カラウェー精油、カルダモン精油、グアヤクウッド精油、クミン精油、黒文字精油、ケイ皮精油、シンナモン精油、ゲラニウム精油、コパイババルサム精油、コリアンデル精油、シソ精油、シダーウッド精油、シトロネラ精油、ジャスミン精油、ジンジャーグラス精油、杉精油、スペアミント精油、西洋ハッカ精油、大茴香精油、チュベローズ精油、丁字精油、橙花精油、冬緑精油、トルーバルサム精油、バチュリー精油、バラ精油、パルマローザ精油、檜精油、ヒバ精油、白檀精油、プチグレン精油、ベイ精油、ベチバ精油、ベルガモット精油、ペルーバルサム精油、ボアドローズ精油、芳樟精油、マンダリン精油、ユーカリ精油、ライム精油、ラベンダー精油、リナロエ精油、レモングラス精油、レモン精油、ローズマリー精油、和種ハッカ精油などの植物性香料、その他合成香料などが挙げられる。 For example, as perfumes, natural animal perfumes such as musk, civet, castorium, ambergris, anise essential oil, angelica essential oil, Iran essential oil, Iris essential oil, fennel essential oil, orange essential oil, cananga essential oil, caraway essential oil, cardamom essential oil, guayakwood essential oil , Cumin essential oil, black letter essential oil, cinnamon essential oil, cinnamon essential oil, geranium essential oil, copaiba balsam essential oil, coriandel essential oil, perilla essential oil, cedarwood essential oil, citronella essential oil, jasmine essential oil, gingergrass essential oil, cedar essential oil, spearmint essential oil, western peppermint essential oil , Otsuka perfume essential oil, tuberose essential oil, clove essential oil, orange flower essential oil, winter green essential oil, trout balsam essential oil, buttery essential oil, rose essential oil, palmarosa essential oil, persimmon essential oil, hiba essential oil, sandalwood essential oil, petitgren essential oil, bay essential oil, vetiva essential oil, bell Vegetable fragrances such as Mott essential oil, Peruvian balsam essential oil, Boad Rose essential oil, melamine essential oil, mandarin essential oil, eucalyptus essential oil, lime essential oil, lavender essential oil, linaloe essential oil, lemongrass essential oil, lemon essential oil, rosemary essential oil, Japanese seed mint essential oil, Other synthetic fragrances can be mentioned.
例えば、色素・着色剤としては、赤キャベツ色素、赤米色素、アカネ色素、アナトー色素、イカスミ色素、ウコン色素、エンジュ色素、オキアミ色素、柿色素、カラメル、金、銀、クチナシ色素、コーン色素、タマネギ色素、タマリンド色素、スピルリナ色素、ソバ全草色素、チェリー色素、海苔色素、ハイビスカス色素、ブドウ果汁色素、マリーゴールド色素、紫イモ色素、紫ヤマイモ色素、ラック色素、ルチンなどが挙げられる。 For example, as a dye / colorant, a red cabbage dye, a red rice dye, an akane dye, an anato dye, an squid dye, a turmeric dye, an enju dye, a krill dye, an amber dye, a caramel, a gold, a silver, a gardenia dye, a corn dye, Examples include onion pigment, tamarind pigment, spirulina pigment, buckwheat whole plant pigment, cherry pigment, laver pigment, hibiscus pigment, grape juice pigment, marigold pigment, purple potato pigment, purple yam pigment, lac pigment and rutin.
例えば、甘味料としては、砂糖、甘茶、果糖、アラビノース、ガラクトース、キシロース、マンノース、麦芽糖、蜂蜜、ブドウ糖、ミラクリン、モネリンなどが挙げられる。 Examples of sweeteners include sugar, sweet tea, fructose, arabinose, galactose, xylose, mannose, maltose, honey, glucose, miraculin, monelin and the like.
例えば、栄養強化剤としては、貝殻焼成カルシウム、シアノコラバミン、酵母、小麦胚芽、大豆胚芽、卵黄粉末、ヘミセルロース、ヘム鉄などが挙げられる。 For example, examples of the nutrient fortifier include shell calcined calcium, cyanocolabamine, yeast, wheat germ, soybean germ, egg yolk powder, hemicellulose, heme iron and the like.
本発明の植物由来ポリアミン含有物を含有する化粧品組成物に配合することができる成分や添加剤としては、その他、ホルモン類、金属イオン封鎖剤、pH調整剤、キレート剤、防腐・防バイ剤、清涼剤、安定化剤、乳化剤、動・植物性蛋白質およびその分解物、動・植物性多糖類およびその分解物、動・植物性糖蛋白質およびその分解物、血流促進剤、消炎剤・抗アレルギー剤、細胞賦活剤、角質溶解剤、創傷治療剤、増泡剤、増粘剤、口腔用剤、消臭・脱臭剤、苦味料、調味料、酵素などが挙げられる。 Ingredients and additives that can be blended in the cosmetic composition containing the plant-derived polyamine-containing material of the present invention include hormones, sequestering agents, pH adjusters, chelating agents, antiseptic and antibacterial agents, Coolant, stabilizer, emulsifier, animal / plant protein and its degradation product, animal / plant polysaccharide and its degradation product, animal / plant glycoprotein and its degradation product, blood flow promoter, anti-inflammatory agent / anti Examples include allergic agents, cell activators, keratolytic agents, wound treatment agents, foaming agents, thickeners, oral preparations, deodorizing / deodorizing agents, bittering agents, seasonings, enzymes, and the like.
本発明の植物由来ポリアミン含有抽出物を含有する化粧品組成物は、保湿効果、コラーゲン生成促進効果、ヒアルロン酸生成促進効果、細胞賦活化効果、抗酸化効果、抗老化効果、育毛効果及び肌荒れ改善効果などが必要とされる場合に広く使用することができる。使用量は、所期の保湿効果、コラーゲン生成促進効果、ヒアルロン酸生成促進効果、細胞賦活化効果、抗酸化効果、抗老化効果、育毛効果及び肌荒れ改善効果などを十分に奏する範囲内で決定する。 The cosmetic composition containing the plant-derived polyamine-containing extract of the present invention has a moisturizing effect, collagen production promoting effect, hyaluronic acid production promoting effect, cell activation effect, antioxidant effect, anti-aging effect, hair growth effect and rough skin improving effect. It can be widely used when required. The amount to be used is determined within a range where the desired moisturizing effect, collagen production promoting effect, hyaluronic acid production promoting effect, cell activation effect, antioxidant effect, anti-aging effect, hair growth effect and rough skin improving effect are sufficiently exhibited. .
本発明の化粧品組成物は、前記のような効果から、化粧品組成物や化粧品として利用されることは勿論であるが、その他にも、医薬部外品組成物、医療用品組成物、衛生用品組成物、医薬品組成物、機能性食品組成物や、医薬部外品、医療用品、衛生用品、医薬品などの形態やプレミックス品などの形態で利用することができる。 Of course, the cosmetic composition of the present invention can be used as a cosmetic composition or a cosmetic because of the above-mentioned effects. In addition, the quasi-drug composition, the medical product composition, and the hygiene product composition are used. Products, pharmaceutical compositions, functional food compositions, quasi-drugs, medical supplies, hygiene products, pharmaceutical products, and premixed products.
以下の実施例により、本発明を更に詳細に説明するが、本発明は、これらに何ら限定されるものではない。
ポリアミン分析方法
試料中のポリアミン含量を以下の方法で調べることができる。植物中のポリアミンは遊離型ポリアミン、化合型ポリアミン、結合型ポリアミンがあり抽出方法は異なるがいずれも解析することができる(Plant Cell Physiol.,43(2),196−206,2002,J.Nutr.Biochem.,4,66−70,1993,Biosci.Biotech.Biochem.,61(9),1582−1584,1997)。具体例として植物種子の遊離型ポリアミンの分析方法について詳細に示す。約0.1〜1.0gのダイズ種子に希釈内部標準液(1,6−hexanediamine、又は1,7−diaminoheptane、内部標準量=7.5又12nmol)と5%過塩素酸水溶液(試料生体重1.0g当たり5〜20mL)を加え、ポリトロンミキサーを用いて室温下で十分に磨砕抽出する。磨砕液を、4℃・35,000×gで20分間遠心分離して上清液を採取し本液を遊離型ポリアミン溶液とする。スクリューキャップ付きのマイクロチューブに100〜400μLの遊離型ポリアミン溶液(植物抽出物,精製植物抽出物)、200μLの飽和炭酸ナトリウム水溶液、200μLのダンシルクロライド/アセトン溶液(10mg/mL)を加えて軽く混和する。チューブの栓をしっかりと閉めたのちアルミ箔で覆い、60℃のウォーターバスで1時間加温してダンシル化を行う。チューブを放冷した後、プロリン水溶液(100mg/mL)を200μL加えて混和する。アルミ箔で覆ってウォーターバスで30分間再加温する。放冷後、窒素ガスを吹き付けてアセトンを除いた後に、600μLのトルエンを加えて激しく混和する。チューブを静置して2相に分かれた後に、上層のトルエン層を300μLマイクロチューブに分取する。分取したトルエンに窒素ガスを吹き付けてトルエンを完全除去する。チューブに200μLのメタノールを加えてダンシル化遊離型ポリアミンを溶解させる。プトレシン、スペルミジン、スペルミンの遊離型ポリアミン量の定量は蛍光検出器(励起波長:365nm・発光波長:510nm)を接続した高速液体クロマトグラフィーを用いて内部標準法で分析する。HPLCカラムはμBondapak C18(Waters社製:027324、3.9×300mm、粒子径10μm)を使用する。試料中のポリアミン含量は標準液と試料のHPLCチャートから、それぞれ各ポリアミンと内部標準のピーク面積を求めて算出する。
The following examples further illustrate the present invention in detail but are not to be construed to limit the scope thereof.
Polyamine analysis method The polyamine content in a sample can be examined by the following method. Polyamines in plants include free polyamines, compound polyamines, and conjugated polyamines, which can be analyzed with different extraction methods (Plant Cell Physiol., 43 (2), 196-206, 2002, J. Nutr). Biochem., 4, 66-70, 1993, Biosci. Biotech. Biochem., 61 (9), 1582-1584, 1997). As a specific example, a method for analyzing plant seed free polyamine will be described in detail. About 0.1 to 1.0 g of soybean seeds were diluted with an internal standard solution (1,6-hexaneamine or 1,7-diaminoheptane, internal standard amount = 7.5 or 12 nmol) and a 5% aqueous perchloric acid solution (sample raw 5-20 mL per 1.0 g body weight) and thoroughly triturate and extract at room temperature using a Polytron mixer. The grinding solution is centrifuged at 4 ° C., 35,000 × g for 20 minutes to collect the supernatant, and this solution is used as a free polyamine solution. Add 100 to 400 μL of free polyamine solution (plant extract, purified plant extract), 200 μL of saturated sodium carbonate aqueous solution, 200 μL of dansyl chloride / acetone solution (10 mg / mL) to a microtube with a screw cap and mix gently. To do. After tightly closing the stopper of the tube, it is covered with aluminum foil and heated in a water bath at 60 ° C. for 1 hour for dansylation. After allowing the tube to cool, 200 μL of an aqueous proline solution (100 mg / mL) is added and mixed. Cover with aluminum foil and reheat in water bath for 30 minutes. After cooling, nitrogen gas is blown to remove acetone, and then 600 μL of toluene is added and mixed vigorously. After leaving the tube to separate into two phases, the upper toluene layer is fractionated into 300 μL microtubes. Nitrogen gas is blown onto the collected toluene to completely remove the toluene. 200 μL of methanol is added to the tube to dissolve the dansylated free polyamine. The amount of free polyamines of putrescine, spermidine and spermine is analyzed by an internal standard method using high performance liquid chromatography connected with a fluorescence detector (excitation wavelength: 365 nm, emission wavelength: 510 nm). As the HPLC column, μ Bondapak C18 (manufactured by Waters: 0273324, 3.9 × 300 mm, particle diameter 10 μm) is used. The polyamine content in the sample is calculated by obtaining the peak areas of each polyamine and the internal standard from the standard solution and the HPLC chart of the sample, respectively.
実施例1A:大豆由来のポリアミン含有抽出物の調製
100gのダイズ胚芽(フォーユー社製)に希釈内部標準液(1,7−diaminoheptane、内部標準量=1200nmol)、500mLの5%過塩素酸水溶液を加えて室温下で1時間放置した。その後、ポリフェノール吸着剤であるポリクラールVT(ISP社製)を16g添加し、ブレンダーミキサーでダイズ胚芽を十分に破砕後、室温下で30分間放置して酸性条件下で抽出した。破砕物を2℃・22,000×gで20分間遠心分離して液体画分を採取し、30%の水酸化ナトリウム溶液で中和して本液を植物抽出物(ダイズ胚芽抽出物)とした。植物抽出物中にはポリアミンとしてプトレシンが23.5mg、スペルミジンが24.0mg、スペルミンが9.6mg含まれており、合計で57.1mgであった。さらに回収した植物抽出物を陽イオン交換樹脂(AG 50W−X4,200−400mesh,H+型,バイオラッド社製)で充填したカラムに通し、ポリアミンを樹脂に吸着させた。0.7N NaCl/0.1Mリン酸ナトリウム溶液(pH8.0)、水、1N塩酸を順次流してカラムを洗浄した。不純物を除去した後に、6N塩酸でポリアミンを溶出して30%の水酸化ナトリウムで中和して本液を精製植物抽出物(精製ダイズ胚芽抽出物)とした。精製植物抽出物中にはポリアミンとしてプトレシンが20.4mg、スペルミジンが22.3mg、スペルミンが7.7mg含まれており、合計で50.4mgであった。植物抽出物(ダイズ胚芽抽出物)と精製植物抽出物(精製ダイズ胚芽抽出物)は電気透析装置(アシライザー,アストム社製)により脱塩を行い、凍結乾燥により濃縮して種々の評価に用いた。
Example 1A: Preparation of a polyamine-containing extract derived from soybean 100 g of soybean germ (manufactured by Foryou) was diluted with a diluted internal standard solution (1,7-diaminoheptane, internal standard amount = 1200 nmol) and 500 mL of 5% aqueous perchloric acid In addition, it was left at room temperature for 1 hour. Thereafter, 16 g of polyclar VT (manufactured by ISP), which is a polyphenol adsorbent, was added, and the soybean germ was sufficiently crushed with a blender mixer and then extracted under acidic conditions by leaving it at room temperature for 30 minutes. The crushed material is centrifuged at 2 ° C. and 22,000 × g for 20 minutes to collect a liquid fraction, neutralized with a 30% sodium hydroxide solution, and this solution is used as a plant extract (soybean germ extract). did. The plant extract contained 23.5 mg of putrescine as polyamine, 24.0 mg of spermidine, and 9.6 mg of spermine, and the total amount was 57.1 mg. Further, the recovered plant extract was passed through a column packed with a cation exchange resin (AG 50W-X4, 200-400 mesh, H + type, manufactured by Bio-Rad), and the polyamine was adsorbed on the resin. The column was washed by flowing 0.7N NaCl / 0.1M sodium phosphate solution (pH 8.0), water and 1N hydrochloric acid sequentially. After removing the impurities, the polyamine was eluted with 6N hydrochloric acid and neutralized with 30% sodium hydroxide to obtain a purified plant extract (purified soybean germ extract). The purified plant extract contained 20.4 mg of putrescine, 22.3 mg of spermidine and 7.7 mg of spermine as polyamines, for a total of 50.4 mg. The plant extract (soybean germ extract) and the purified plant extract (purified soybean germ extract) were desalted with an electrodialyzer (Acylizer, manufactured by Astom), concentrated by freeze-drying, and used for various evaluations. .
実施例1B:大豆由来のポリアミン含有抽出物の調製
各1kgのダイズ胚芽(大豆胚芽・粉タイプ,フォーユー社製)に各6Lの0.1N、0.5N、1Nの塩酸溶液を加えた。さらに、ポリフェノール吸着剤であるダイバガンF(BASF社製)を各80g添加し、スリーワンモーターで室温下にて2時間攪拌して酸性条件下で抽出した。攪拌物を4℃、12,000×gで30分間遠心分離して液体画分を採取し、30%の水酸化ナトリウム溶液で中和した後に4℃、12,000×gで30分間遠心分離して液体画分を採取し、本液を植物抽出物(ダイズ胚芽抽出物)とした。0.1Nの塩酸による植物抽出物中にはポリアミンとしてプトレシンが217.9mg、スペルミジンが163.5mg、スペルミンが34.7mg含まれており、合計で416.1mgであった。0.5Nの塩酸による植物抽出物中にはポリアミンとしてプトレシンが226.5mg、スペルミジンが170.0mg、スペルミンが36.5mg含まれており、合計で433.0mgであった。1Nの塩酸による植物抽出物中にはポリアミンとしてプトレシンが232.4mg、スペルミジンが174.4mg、スペルミンが39.96mg含まれており、合計で446.76mgであった。植物抽出物(ダイズ胚芽抽出物)は電気透析装置(アシライザー,アストム社製)により脱塩を行い、凍結乾燥により濃縮して種々の評価に用いた。
以上の結果から、0.1N、0.5N、1Nの塩酸濃度でもポリアミンを含む植物抽出物及び/又はポリアミンを有効成分として含む植物抽出物が回収できることが確認でき、安全性や取り扱い上の面でも優れた調製方法が見出された。
Example 1B: Preparation of soybean-derived polyamine-containing extract 6 L of 0.1 N, 0.5 N, and 1 N hydrochloric acid solutions were added to 1 kg of soybean germ (soy germ / powder type, manufactured by For You). Further, 80 g of each of Daibagan F (BASF), which is a polyphenol adsorbent, was added, and the mixture was stirred for 2 hours at room temperature with a three-one motor and extracted under acidic conditions. The stirred product was centrifuged at 12,000 × g for 30 minutes at 4 ° C., and the liquid fraction was collected, neutralized with 30% sodium hydroxide solution, and then centrifuged at 12,000 × g for 30 minutes at 4 ° C. The liquid fraction was collected, and this liquid was used as a plant extract (soybean germ extract). The plant extract containing 0.1N hydrochloric acid contained 217.9 mg of putrescine, 163.5 mg of spermidine and 34.7 mg of spermine as polyamines, for a total of 416.1 mg. The plant extract containing 0.5N hydrochloric acid contained 226.5 mg of putrescine, 170.0 mg of spermidine and 36.5 mg of spermine as polyamines, for a total of 433.0 mg. The plant extract with 1N hydrochloric acid contained 232.4 mg of putrescine, 174.4 mg of spermidine and 39.96 mg of spermine as polyamines, for a total of 446.76 mg. The plant extract (soybean germ extract) was desalted with an electrodialyzer (Acylizer, manufactured by Astom), concentrated by freeze-drying, and used for various evaluations.
From the above results, it can be confirmed that a plant extract containing polyamine and / or a plant extract containing polyamine as an active ingredient can be recovered even at hydrochloric acid concentrations of 0.1N, 0.5N, and 1N. However, an excellent preparation method has been found.
実施例1C:大豆由来のポリアミン含有抽出物の調製
各1kgのダイズ胚芽(大豆胚芽・粉タイプ,フォーユー社製)に各6Lの0.1N、0.5N、1Nの硫酸溶液を加えた。さらに、ポリフェノール吸着剤であるダイバガンF(BASF社製)を各80g添加し、スリーワンモーターで室温下にて2時間攪拌して酸性条件下で抽出した。攪拌物を4℃・12,000×gで30分間遠心分離して液体画分を採取し、30%の水酸化ナトリウム溶液で中和した後に4℃・12,000×gで30分間遠心分離して液体画分を採取し、本液を植物抽出物(ダイズ胚芽抽出物)とした。0.1Nの硫酸による植物抽出物中にはポリアミンとしてプトレシンが220.8mg、スペルミジンが165.7mg、スペルミンが35.1mg含まれており、合計で421.6mgであった。0.5Nの硫酸による植物抽出物中にはポリアミンとしてプトレシンが223.7mg、スペルミジンが167.9mg、スペルミンが35.5mg含まれており、合計で427.1mgであった。1Nの硫酸による植物抽出物中にはポリアミンとしてプトレシンが229.4mg、スペルミジンが172.2mg、スペルミンが36.5mg含まれており、合計で438.1mgであった。植物抽出物(ダイズ胚芽抽出物)は電気透析装置(アシライザー,アストム社製)により脱塩を行い、凍結乾燥により濃縮して種々の評価に用いた。
以上の結果から、0.1N、0.5N、1Nの硫酸濃度でもポリアミンを含む植物抽出物及び/又はポリアミンを有効成分として含む植物抽出物が回収できることが確認でき、安全性や取り扱い上の面でも優れた調製方法が見出された。
Example 1C: Preparation of polyamine-containing extract derived from soybean 6 L of 0.1 N, 0.5 N, and 1 N sulfuric acid solutions were added to 1 kg of soybean germ (soy germ / powder type, manufactured by For You). Further, 80 g of each of Daibagan F (BASF), which is a polyphenol adsorbent, was added, and the mixture was stirred for 2 hours at room temperature with a three-one motor and extracted under acidic conditions. Centrifugation is performed at 4 ° C. and 12,000 × g for 30 minutes, and a liquid fraction is collected, neutralized with 30% sodium hydroxide solution, and then centrifuged at 4 ° C. and 12,000 × g for 30 minutes. The liquid fraction was collected, and this liquid was used as a plant extract (soybean germ extract). The plant extract containing 0.1N sulfuric acid contained 220.8 mg of putrescine, 165.7 mg of spermidine and 35.1 mg of spermine as polyamines, for a total of 421.6 mg. The plant extract with 0.5N sulfuric acid contained 223.7 mg of putrescine, 167.9 mg of spermidine and 35.5 mg of spermine as polyamines, for a total of 427.1 mg. The plant extract with 1N sulfuric acid contained 229.4 mg of putrescine, 172.2 mg of spermidine and 36.5 mg of spermine as polyamines, for a total of 438.1 mg. The plant extract (soybean germ extract) was desalted with an electrodialyzer (Acylizer, manufactured by Astom), concentrated by freeze-drying, and used for various evaluations.
From the above results, it can be confirmed that a plant extract containing polyamine and / or a plant extract containing polyamine as an active ingredient can be recovered even at sulfuric acid concentrations of 0.1N, 0.5N, and 1N. However, an excellent preparation method has been found.
実施例2A:小麦由来のポリアミン含有抽出物の調製
100gのコムギ胚芽(培焼・ローストタイプ,日清ファルマ社製)に希釈内部標準液(1,7−diaminoheptane、内部標準量=1200nmol)、500mLの5%過塩素酸水溶液を加えて室温下で1時間放置した。その後、ポリフェノール吸着剤であるポリクラールVT(ISP社製)を16g添加し、ブレンダーミキサーでダイズ胚芽を十分に破砕後、室温下で30分間放置して酸性条件下で抽出した。破砕物を2℃・22,000×gで20分間遠心分離して液体画分を採取し、30%の水酸化ナトリウム溶液で中和して本液を植物抽出物(コムギ胚芽抽出物)とした。植物抽出物中にはポリアミンとしてプトレシンが6.4mg、スペルミジンが23.9mg、スペルミンが14.3mg含まれており、合計で44.6mgであった。さらに回収した植物抽出物を陽イオン交換樹脂(AG 50W−X4,200−400mesh,H+型,バイオラッド社製)で充填したカラムに通し、ポリアミンを樹脂に吸着させた。0.7N NaCl/0.1Mリン酸ナトリウム溶液(pH8.0)、水、1N塩酸を順次流してカラムを洗浄した。不純物を除去した後に、6N塩酸でポリアミンを溶出して30%の水酸化ナトリウムで中和して本液を精製植物抽出物(精製コムギ胚芽抽出物)とした。精製植物抽出物中にはポリアミンとしてプトレシンが5.7mg、スペルミジンが21.5mg、スペルミンが12.9mg含まれており、合計で40.1mgであった。植物抽出物(コムギ胚芽抽出物)と精製植物抽出物(精製コムギ胚芽抽出物)は電気透析装置(アシライザー,アストム社製)により脱塩を行い、凍結乾燥により濃縮して種々の評価に用いた。
Example 2A: Preparation of a polyamine-containing extract derived from wheat 100 g of wheat germ (cultured and roasted type, manufactured by Nisshin Pharma) diluted internal standard solution (1,7-diaminoheptane, internal standard amount = 1200 nmol), 500 mL 5% perchloric acid aqueous solution was added and allowed to stand at room temperature for 1 hour. Thereafter, 16 g of polyclar VT (manufactured by ISP), which is a polyphenol adsorbent, was added, and the soybean germ was sufficiently crushed with a blender mixer and then extracted under acidic conditions by leaving it at room temperature for 30 minutes. The crushed material is centrifuged at 2 ° C. and 22,000 × g for 20 minutes to collect a liquid fraction, neutralized with a 30% sodium hydroxide solution, and this solution is used as a plant extract (wheat germ extract). did. The plant extract contained 6.4 mg of putrescine, 23.9 mg of spermidine and 14.3 mg of spermine as polyamines, for a total of 44.6 mg. Further, the recovered plant extract was passed through a column packed with a cation exchange resin (AG 50W-X4, 200-400 mesh, H + type, manufactured by Bio-Rad), and the polyamine was adsorbed on the resin. The column was washed by flowing 0.7N NaCl / 0.1M sodium phosphate solution (pH 8.0), water and 1N hydrochloric acid sequentially. After removing the impurities, the polyamine was eluted with 6N hydrochloric acid and neutralized with 30% sodium hydroxide to obtain a purified plant extract (purified wheat germ extract). The purified plant extract contained 5.7 mg of putrescine as polyamine, 21.5 mg of spermidine, and 12.9 mg of spermine, for a total of 40.1 mg. Plant extracts (wheat germ extract) and purified plant extracts (purified wheat germ extract) were desalted with an electrodialyzer (Acylizer, manufactured by Astom), concentrated by freeze-drying, and used for various evaluations. .
実施例2B:小麦由来のポリアミン含有抽出物の調製
各1kgのコムギ胚芽(特脱脂小麦胚芽・微粉末タイプ・20kg入り,日清ファルマ社製)に各4Lの0.1N、0.5N、1Nの塩酸溶液を加えた。さらに、ポリフェノール吸着剤であるダイバガンF(BASF社製)を各80g添加し、スリーワンモーターで室温下にて2時間攪拌して酸性条件下で抽出した。攪拌物を4℃・12,000×gで30分間遠心分離して液体画分を採取し、30%の水酸化ナトリウム溶液で中和した後に4℃・12,000×gで30分間遠心分離して液体画分を採取し、本液を植物抽出物(コムギ胚芽抽出物)とした。0.1Nの塩酸による植物抽出物中にはポリアミンとしてプトレシンが48.4mg、スペルミジンが201.6mg、スペルミンが46mg含まれており、合計で296mgであった。0.5Nの塩酸による植物抽出物中にはポリアミンとしてプトレシンが48.4mg、スペルミジンが183.6mg、スペルミンが50.8mg含まれており、合計で282.8mgであった。1Nの塩酸による植物抽出物中にはポリアミンとしてプトレシンが51.2mg、スペルミジンが204.4mg、スペルミンが56.6mg含まれており、合計で312.2mgであった。植物抽出物(コムギ胚芽抽出物)は電気透析装置(アシライザー,アストム社製)により脱塩を行い、凍結乾燥により濃縮して種々の評価に用いた。
以上の結果から、0.1N、0.5N、1Nの塩酸濃度でもポリアミンを含む植物抽出物及び/又はポリアミンを有効成分として含む植物抽出物が回収できることが確認でき、安全性や取り扱い上の面でも優れた調製方法が見出された。
Example 2B: Preparation of a polyamine-containing extract derived from wheat Each 1 kg of wheat germ (specially defatted wheat germ, fine powder type, 20 kg, manufactured by Nisshin Pharma Co., Ltd.) 4 L each 0.1 N, 0.5 N, 1 N Of hydrochloric acid solution was added. Further, 80 g of each of Daibagan F (BASF), which is a polyphenol adsorbent, was added, and the mixture was stirred for 2 hours at room temperature with a three-one motor and extracted under acidic conditions. Centrifugation is performed at 4 ° C. and 12,000 × g for 30 minutes, and a liquid fraction is collected, neutralized with 30% sodium hydroxide solution, and then centrifuged at 4 ° C. and 12,000 × g for 30 minutes. Then, the liquid fraction was collected, and this liquid was used as a plant extract (wheat germ extract). The plant extract containing 0.1N hydrochloric acid contained 48.4 mg of putrescine, 201.6 mg of spermidine and 46 mg of spermine as polyamines, for a total of 296 mg. The plant extract with 0.5N hydrochloric acid contained 48.4 mg of putrescine, 183.6 mg of spermidine and 50.8 mg of spermine as polyamines, for a total of 282.8 mg. The plant extract with 1N hydrochloric acid contained 51.2 mg of putrescine, 204.4 mg of spermidine and 56.6 mg of spermine as polyamines, for a total of 312.2 mg. The plant extract (wheat germ extract) was desalted with an electrodialyzer (Acylizer, manufactured by Astom Corp.), concentrated by lyophilization, and used for various evaluations.
From the above results, it can be confirmed that a plant extract containing polyamine and / or a plant extract containing polyamine as an active ingredient can be recovered even at hydrochloric acid concentrations of 0.1N, 0.5N, and 1N. However, an excellent preparation method has been found.
実施例2C:小麦由来のポリアミン含有抽出物の調製
各1kgのコムギ胚芽(特脱脂小麦胚芽・微粉末タイプ・20kg入り,日清ファルマ社製)に各4Lの0.1N、0.5N、1Nの硫酸溶液を加えた。さらに、ポリフェノール吸着剤であるダイバガンF(BASF社製)を各80g添加し、スリーワンモーターで室温下にて2時間攪拌して酸性条件下で抽出した。攪拌物を4℃・12,000×gで30分間遠心分離して液体画分を採取し、30%の水酸化ナトリウム溶液で中和した後に4℃・12,000×gで30分間遠心分離して液体画分を採取し、本液を植物抽出物(コムギ胚芽抽出物)とした。0.1Nの硫酸による植物抽出物中にはポリアミンとしてプトレシンが50mg、スペルミジンが195.6mg、スペルミンが46.4mg含まれており、合計で292mgであった。0.5Nの硫酸による植物抽出物中にはポリアミンとしてプトレシンが50mg、スペルミジンが201.6mg、スペルミンが56.6mg含まれており、合計で308.2mgであった。1Nの硫酸による植物抽出物中にはポリアミンとしてプトレシンが52.8mg、スペルミジンが197.2mg、スペルミンが58.4mg含まれており、合計で308.4mgであった。植物抽出物(コムギ胚芽抽出物)は電気透析装置(アシライザー,アストム社製)により脱塩を行い、凍結乾燥により濃縮して種々の評価に用いた。
以上の結果から、0.1N、0.5N、1Nの硫酸濃度でもポリアミンを含む植物抽出物及び/又はポリアミンを有効成分として含む植物抽出物が回収できることが確認でき、安全性や取り扱い上の面でも優れた調製方法が見出された。
Example 2C: Preparation of a polyamine-containing extract derived from wheat Each 4 kg of wheat germ (specially defatted wheat germ, fine powder type, 20 kg, manufactured by Nisshin Pharma Co., Ltd.) 4 L each 0.1 N, 0.5 N, 1 N Of sulfuric acid solution was added. Further, 80 g of each of Daibagan F (BASF), which is a polyphenol adsorbent, was added, and the mixture was stirred for 2 hours at room temperature with a three-one motor and extracted under acidic conditions. Centrifugation is performed at 4 ° C. and 12,000 × g for 30 minutes, and a liquid fraction is collected, neutralized with 30% sodium hydroxide solution, and then centrifuged at 4 ° C. and 12,000 × g for 30 minutes. Then, the liquid fraction was collected, and this liquid was used as a plant extract (wheat germ extract). The plant extract with 0.1 N sulfuric acid contained 50 mg of putrescine, 195.6 mg of spermidine and 46.4 mg of spermine as polyamines, for a total of 292 mg. The plant extract with 0.5N sulfuric acid contained 50 mg of putrescine, 201.6 mg of spermidine and 56.6 mg of spermine as polyamines, for a total of 308.2 mg. The plant extract with 1N sulfuric acid contained 52.8 mg of putrescine, 197.2 mg of spermidine and 58.4 mg of spermine as polyamines, for a total of 308.4 mg. The plant extract (wheat germ extract) was desalted with an electrodialyzer (Acylizer, manufactured by Astom Corp.), concentrated by lyophilization, and used for various evaluations.
From the above results, it can be confirmed that a plant extract containing polyamine and / or a plant extract containing polyamine as an active ingredient can be recovered even at sulfuric acid concentrations of 0.1N, 0.5N, and 1N. However, an excellent preparation method has been found.
実施例3A:ダイズ胚芽由来のポリアミンを含む植物抽出物の細胞賦活化作用の評価
ダイズ胚芽由来のポリアミンを含む植物抽出物及び/又はポリアミンを有効成分として含む植物抽出物は実施例1Aに記載されている植物抽出物(ダイズ胚芽抽出物)と精製植物抽出物(精製ダイズ胚芽抽出物)を用いた。評価は以下の手順で行った。正常ヒト皮膚線維芽細胞を1ウェル当たり2.0×104個となるように48穴マイクロプレートに播種した。播種培地には、ダルベッコ改変イーグル培地(DMEM)に10%のウシ胎児血清を添加したものを用いた。37℃、二酸化炭素濃度5vol%中にて24時間培養後、任意のポリアミン濃度の試料を添加した試験培地に交換し、さらに48時間培養した。次いで3−(4,5−ジメチル−2−チアゾリル)−2,5−ジフェニルテトラゾリウムブロミド(MTT)を100μg/mL含有する培地に交換して3時間培養し、テトラゾリウム環の開環により生じるフォルマザンを2−プロパノールにて抽出し、マイクロプレートリーダーにて550nmの吸光度を測定した。同時に濁度として650nmにおける吸光度を測定し、両測定値の差により細胞賦活化作用を評価した。評価結果を、コントロール(水添加)における細胞賦活化作用を100とした相対値にて図1に示す。なお、濃度はポリアミン濃度で示した。
Example 3A: Evaluation of Cell Activating Action of Plant Extract Containing Polyamine Derived from Soybean Germ A plant extract containing polyamine derived from soybean germ and / or a plant extract containing polyamine as an active ingredient is described in Example 1A. Plant extract (soybean germ extract) and purified plant extract (purified soybean germ extract) were used. The evaluation was performed according to the following procedure. Normal human skin fibroblasts were seeded in a 48-well microplate so that the number of normal human skin fibroblasts was 2.0 × 10 4 per well. The seeding medium used was Dulbecco's modified Eagle medium (DMEM) supplemented with 10% fetal bovine serum. After culturing at 37 ° C. in a carbon dioxide concentration of 5 vol% for 24 hours, the culture medium was replaced with a test medium to which a sample having an arbitrary polyamine concentration was added, and further cultured for 48 hours. Next, the medium containing 3- (4,5-dimethyl-2-thiazolyl) -2,5-diphenyltetrazolium bromide (MTT) was replaced with a medium containing 100 μg / mL and cultured for 3 hours. Extraction was performed with 2-propanol, and absorbance at 550 nm was measured with a microplate reader. At the same time, the absorbance at 650 nm was measured as turbidity, and the cell activation effect was evaluated by the difference between the two measured values. The evaluation results are shown in FIG. 1 as relative values with the cell activation effect in the control (water addition) as 100. In addition, the density | concentration was shown by the polyamine density | concentration.
図1より明らかなように、ダイズ胚芽抽出物、精製ダイズ胚芽抽出物を添加した培地では、いずれにおいても正常ヒト皮膚線維芽細胞に対して高い細胞賦活化・抗老化効果を有していることが認められた。特に、ダイズ胚芽抽出物では0.67μM、6.7μM、13.4μM(プトレシン濃度9.2μM,スペルミジン濃度3.8μM,スペルミン濃度0.4μM)、33.5μMのポリアミン濃度、精製ダイズ胚芽抽出物では7.4μM、14.8μM(プトレシン濃度8.2μM,スペルミジン濃度5.8μM,スペルミン濃度0.8μM)、37.0μMのポリアミン濃度においてコントロール(水)と比較して、いずれも20%以上の有意な細胞賦活化・抗老化作用が認められた。以上のことから、これらのポリアミンを含む植物抽出物及び/又はポリアミンを有効成分として含む植物抽出物は、優れた細胞賦活化作用を有することが明らかとなり、これらを肌に適用することにより、加齢に伴う繊維芽細胞の衰えが軽減されることでコラーゲンやヒアルロン酸の代謝回転速度の低下が小さくなり、極めて優れた老化防止効果を発揮し、加齢、紫外線曝露等により生じる皮膚のしわ、たるみ等を効果的に改善することができる。 As is apparent from FIG. 1, the medium supplemented with soybean germ extract and purified soybean germ extract has a high cell activation / anti-aging effect on normal human skin fibroblasts. Was recognized. In particular, in soybean germ extract, 0.67 μM, 6.7 μM, 13.4 μM (putrescine concentration 9.2 μM, spermidine concentration 3.8 μM, spermine concentration 0.4 μM), 33.5 μM polyamine concentration, purified soybean germ extract In the polyamine concentrations of 7.4 μM, 14.8 μM (putrescine concentration 8.2 μM, spermidine concentration 5.8 μM, spermine concentration 0.8 μM), and 37.0 μM, both were 20% or more compared to the control (water). Significant cell activation and anti-aging effects were observed. From the above, it has been clarified that plant extracts containing these polyamines and / or plant extracts containing polyamines as active ingredients have an excellent cell activating effect. The decrease in the rate of turnover of collagen and hyaluronic acid is reduced by reducing the deterioration of fibroblasts with age, and it exhibits an extremely excellent anti-aging effect, wrinkles on the skin caused by aging, UV exposure, etc. The sagging can be effectively improved.
実施例3B:コムギ胚芽由来のポリアミンを含む植物抽出物の細胞賦活化作用の評価
コムギ胚芽由来のポリアミンを含む植物抽出物及び/又はポリアミンを有効成分として含む植物抽出物は実施例2Aに記載されている植物抽出物(コムギ胚芽抽出物)と精製植物抽出物(精製コムギ胚芽抽出物)を用いた。評価は以下の手順で行った。正常ヒト皮膚線維芽細胞を1ウェル当たり2.0×104個となるように48穴マイクロプレートに播種した。播種培地には、ダルベッコ改変イーグル培地(DMEM)に10%のウシ胎児血清を添加したものを用いた。37℃、二酸化炭素濃度5vol%中にて24時間培養後、任意のポリアミン濃度の試料を添加した試験培地に交換し、さらに48時間培養した。次いで3−(4,5−ジメチル−2−チアゾリル)−2,5−ジフェニルテトラゾリウムブロミド(MTT)を100μg/mL含有する培地に交換して3時間培養し、テトラゾリウム環の開環により生じるフォルマザンを2−プロパノールにて抽出し、マイクロプレートリーダーにて550nmの吸光度を測定した。同時に濁度として650nmにおける吸光度を測定し、両測定値の差により細胞賦活化作用を評価した。評価結果を、コントロール(水添加)における細胞賦活化作用を100とした相対値にて図2に示す。なお、濃度はポリアミン濃度で示した。
Example 3B: Evaluation of Cell Activating Action of Plant Extract Containing Polyamine Derived from Wheat Germ A plant extract containing polyamine derived from wheat germ and / or a plant extract containing polyamine as an active ingredient is described in Example 2A. Plant extract (wheat germ extract) and purified plant extract (purified wheat germ extract) were used. The evaluation was performed according to the following procedure. Normal human skin fibroblasts were seeded in a 48-well microplate so that the number of normal human skin fibroblasts was 2.0 × 10 4 per well. The seeding medium used was Dulbecco's modified Eagle medium (DMEM) supplemented with 10% fetal bovine serum. After culturing at 37 ° C. in a carbon dioxide concentration of 5 vol% for 24 hours, the culture medium was replaced with a test medium to which a sample having an arbitrary polyamine concentration was added, and further cultured for 48 hours. Next, the medium containing 3- (4,5-dimethyl-2-thiazolyl) -2,5-diphenyltetrazolium bromide (MTT) was replaced with a medium containing 100 μg / mL and cultured for 3 hours. Extraction was performed with 2-propanol, and absorbance at 550 nm was measured with a microplate reader. At the same time, the absorbance at 650 nm was measured as turbidity, and the cell activation effect was evaluated by the difference between the two measured values. The evaluation results are shown in FIG. 2 as relative values with the cell activation effect in the control (water addition) as 100. In addition, the density | concentration was shown by the polyamine density | concentration.
図2より明らかなように、コムギ胚芽抽出物、精製コムギ胚芽抽出物を添加した培地では、いずれにおいても正常ヒト皮膚線維芽細胞に対して高い細胞賦活化・抗老化効果を有していることが認められた。特に、コムギ胚芽抽出物では0.33μM、3.3μM(プトレシン濃度0.7μM,スペルミジン濃度2.3μM,スペルミン濃度0.3μM)、6.6μM、16.5μMのポリアミン濃度、精製コムギ胚芽抽出物では4.1μM、8.2μM、20.5μM(プトレシン濃度3.5μM,スペルミジン濃度14.5μM,スペルミン濃度2.5μM)のポリアミン濃度においてコントロール(水)と比較して、いずれも20%以上の有意な細胞賦活化・抗老化作用が認められた。以上のことから、これらのポリアミンを含む植物抽出物及び/又はポリアミンを有効成分として含む植物抽出物は、優れた細胞賦活化作用を有することが明らかとなり、これらを肌に適用することにより、加齢に伴う繊維芽細胞の衰えが軽減されることでコラーゲンやヒアルロン酸の代謝回転速度の低下が小さくなり、極めて優れた老化防止効果を発揮し、加齢、紫外線曝露等により生じる皮膚のしわ、たるみ等を効果的に改善することができる。 As is clear from FIG. 2, the medium supplemented with wheat germ extract and purified wheat germ extract has a high cell activation / anti-aging effect on normal human skin fibroblasts. Was recognized. In particular, in wheat germ extract, 0.33 μM, 3.3 μM (putrescine concentration 0.7 μM, spermidine concentration 2.3 μM, spermine concentration 0.3 μM), 6.6 μM, 16.5 μM polyamine concentration, purified wheat germ extract In the polyamine concentration of 4.1 μM, 8.2 μM, 20.5 μM (putrescine concentration 3.5 μM, spermidine concentration 14.5 μM, spermine concentration 2.5 μM), all were 20% or more compared to the control (water). Significant cell activation and anti-aging effects were observed. From the above, it has been clarified that plant extracts containing these polyamines and / or plant extracts containing polyamines as active ingredients have an excellent cell activating effect. The decrease in the rate of turnover of collagen and hyaluronic acid is reduced by reducing the deterioration of fibroblasts with age, and it exhibits an extremely excellent anti-aging effect, wrinkles on the skin caused by aging, UV exposure, etc. The sagging can be effectively improved.
実施例4A:ダイズ胚芽由来のポリアミンを含む植物抽出物とコムギ胚芽由来のポリアミンを含む植物抽出物のコラーゲン産生能の評価
ダイズ胚芽由来のポリアミンを含む植物抽出物及び/又はポリアミンを有効成分として含む植物抽出物は実施例1Aに記載されている植物抽出物(ダイズ胚芽抽出物)を用いた。コムギ胚芽由来のポリアミンを含む植物抽出物及び/又はポリアミンを有効成分として含む植物抽出物は実施例2Aに記載されている植物抽出物(コムギ胚芽抽出物)を用いた。ポリアミンとの比較としてプトレシン、スペルミジン、スペルミンをそれぞれ単独で用いた。評価は、以下の手順で行った。正常ヒト皮膚線維芽細胞を1ウェル当たり1.0×105個となるように48穴マイクロプレートに播種した。播種培地には、ダルベッコ改変イーグル培地(DMEM)に1%のウシ胎児血清を添加したものを用いた。37℃、二酸化炭素濃度5vol%中にて24時間培養後、PBS(−)で2回洗浄した後、任意の濃度の試料を添加した無血清培地に交換し、さらに3日間または6日間同条件にて培養した。培養上清から、ヒト線維芽細胞が産生するI型プロコラーゲンC末端ペプチド(Procollagen typeI carboxyterminal propeptide:PIP)を、Procollagen type I C−peptide(PIP)EIA Kit(TaKaRa)で測定した。コラーゲン産生促進率は、標準品を上記ELISAキットにて測定し、その結果から検量線を作成、その検量線から試料添加時のコラーゲン産生量及び試料無添加時のコラーゲン産生量を求め、試料無添加時(コントロールとして水を添加した時)のコラーゲン産生量を100%として算出し、評価を行った。3日間培養した場合の結果を図3に、6日間培養した場合の結果を図4にそれぞれ示す。なお、濃度はポリアミン濃度で示した。
Example 4A: Evaluation of Collagen Production Ability of Plant Extracts Containing Polyamines Derived from Soybean Germ and Polyamines Derived from Wheat Germ Containing Plant Extracts and / or Polyamines Containing Polyamines Derived from Soybean Germ as Active Components The plant extract (soybean germ extract) described in Example 1A was used as the plant extract. As a plant extract containing polyamine derived from wheat germ and / or a plant extract containing polyamine as an active ingredient, the plant extract (wheat germ extract) described in Example 2A was used. For comparison with polyamine, putrescine, spermidine and spermine were used alone. The evaluation was performed according to the following procedure. Normal human dermal fibroblasts were seeded in a 48-well microplate so that the number of normal human skin fibroblasts was 1.0 × 10 5 per well. The seeding medium used was Dulbecco's modified Eagle medium (DMEM) supplemented with 1% fetal bovine serum. After culturing at 37 ° C. in a carbon dioxide concentration of 5 vol% for 24 hours, after washing twice with PBS (−), the medium is replaced with a serum-free medium to which a sample of any concentration is added, and the conditions are the same for 3 or 6 days. Incubated in From the culture supernatant, type I procollagen C-terminal peptide (PIP) produced by human fibroblasts was measured with Procollagen type I C-peptide (PIP) EIA Kit (TaKaRa). Collagen production acceleration rate was determined by measuring standard products using the above ELISA kit, creating a calibration curve from the results, and determining the amount of collagen produced when the sample was added and the amount of collagen produced when no sample was added. The collagen production amount at the time of addition (when water was added as a control) was calculated as 100% for evaluation. FIG. 3 shows the results when cultured for 3 days, and FIG. 4 shows the results when cultured for 6 days. In addition, the density | concentration was shown by the polyamine density | concentration.
図3、図4より明らかなように、ダイズ胚芽抽出物または小麦胚芽抽出物を添加した培地では、ヒト皮膚のコラーゲン産生活性(コラーゲン産生促進作用)が有意に顕著に高まることが認められた。ダイズ胚芽抽出物では6.7μM、13.4μM、33.5μMのポリアミン濃度、コムギ胚芽抽出物では3.3μM、6.6μM、16.5μMのポリアミン濃度においてコントロール(水)や各種ポリアミンと比較して、いずれも顕著なコラーゲン産生促進作用が認められた。このことから、ポリアミンを含む植物抽出物及び/又はポリアミンを有効成分として含む植物抽出物は各種ポリアミンに比べて明らかに優れた細胞外マトリックスやコラーゲンの産生作用を有することが確認された。ポリアミンを含む植物抽出物及び/又はポリアミンを有効成分として含む植物抽出物肌に適用することにより、加齢に伴う繊維芽細胞の衰えが軽減し、コラーゲンの産生を促進してコラーゲン量を維持することができる。その結果、加齢、紫外線曝露等により生じる皮膚のしわ、たるみ等を効果的に改善することができる。 As is clear from FIGS. 3 and 4, in the medium supplemented with soybean germ extract or wheat germ extract, the collagen production activity (collagen production promoting effect) of human skin was significantly increased significantly. . Compared with control (water) and various polyamines in soybean germ extract at polyamine concentrations of 6.7 μM, 13.4 μM, 33.5 μM, and wheat germ extract at 3.3 μM, 6.6 μM, and 16.5 μM. In all cases, a remarkable collagen production promoting effect was observed. From this, it was confirmed that the plant extract containing polyamine and / or the plant extract containing polyamine as an active ingredient has an excellent extracellular matrix and collagen producing action as compared with various polyamines. By applying the plant extract containing polyamine and / or plant extract skin containing polyamine as an active ingredient, the deterioration of fibroblasts accompanying aging is reduced, collagen production is promoted and the amount of collagen is maintained. be able to. As a result, it is possible to effectively improve skin wrinkles and sagging caused by aging, exposure to ultraviolet rays, and the like.
実施例4B:ダイズ胚芽由来のポリアミンを含む植物抽出物とコムギ胚芽由来のポリアミンを含む植物抽出物のヒアルロン酸産生能の評価
ダイズ胚芽由来の植物抽出物は実施例1Aに記載されている植物抽出物(ダイズ胚芽抽出物)を用いた。コムギ胚芽由来の植物抽出物は実施例2Aに記載されている植物抽出物(コムギ胚芽抽出物)を用いた。ポリアミンとの比較としてプトレシン、スペルミジン、スペルミンをそれぞれ単独で用いた。評価は、以下の手順で行った。正常ヒト皮膚線維芽細胞を1ウェル当たり1.0×105個となるように48穴マイクロプレートに播種した。播種培地には、ダルベッコ改変イーグル培地(DMEM)に1%のウシ胎児血清を添加したものを用いた。37℃、二酸化炭素濃度5vol%中にて24時間培養後、PBS(−)で2回洗浄した後、任意のポリアミン濃度の試料を添加した無血清培地に交換し、さらに3日間同条件にて培養した。培養上清中のヒアルロン酸を測定した。尚プレート上の細胞を0.5% Triton−X100を含む細胞溶解液で溶解し回収後にタンパク質量を測定し(Bio Rad,プロテインアッセイキット)、細胞数の指標とした。ヒアルロン酸の測定は、正常ヒト皮膚線維芽細胞が産生するヒアルロン酸を、ヒアルロン酸プレート「中外」(富士レビオ社)を用いてHyaluronic acid binding protein(HABP)を用いたサンドイッチ法により測定した。ポリアミンや植物抽出物を添加していない試料(コントロール(水添加))のヒアルロン酸量を100とした、ポリアミン、植物抽出物添加試料のヒアルロン酸量の相対値を図5に示す。なお、濃度はポリアミン濃度で示した。
Example 4B: Evaluation of hyaluronic acid producing ability of a plant extract containing a polyamine derived from soybean germ and a polyamine derived from wheat germ The plant extract derived from soybean germ is the plant extract described in Example 1A The product (soybean germ extract) was used. As a plant extract derived from wheat germ, the plant extract (wheat germ extract) described in Example 2A was used. For comparison with polyamine, putrescine, spermidine and spermine were used alone. The evaluation was performed according to the following procedure. Normal human dermal fibroblasts were seeded in a 48-well microplate so that the number of normal human skin fibroblasts was 1.0 × 10 5 per well. The seeding medium used was Dulbecco's modified Eagle medium (DMEM) supplemented with 1% fetal bovine serum. After culturing at 37 ° C. in a carbon dioxide concentration of 5 vol% for 24 hours, after washing twice with PBS (−), the medium was replaced with a serum-free medium to which a sample having an arbitrary polyamine concentration was added, and the conditions were further changed for 3 days. Cultured. Hyaluronic acid in the culture supernatant was measured. The cells on the plate were lysed with a cell lysate containing 0.5% Triton-X100, and after recovery, the amount of protein was measured (BioRad, protein assay kit), which was used as an indicator of the number of cells. For the measurement of hyaluronic acid, hyaluronic acid produced by normal human skin fibroblasts was measured by a sandwich method using hyaluronic acid binding protein (HABP) using a hyaluronic acid plate “Chugai” (Fujirebio). FIG. 5 shows the relative value of the amount of hyaluronic acid in the sample added with polyamine and plant extract, where the amount of hyaluronic acid in the sample not added with polyamine or plant extract (control (water addition)) is taken as 100. In addition, the density | concentration was shown by the polyamine density | concentration.
図5より明らかなように、各ポリアミン、ダイズ胚芽抽出物又はコムギ胚芽抽出物を添加した培地では、ヒト皮膚のヒアルロン酸産生率が有意に高まることが認められた。培養3日間では、ダイズ胚芽抽出物は6.7μM、13.4μM、33.5μMのポリアミン濃度、コムギ胚芽抽出物は3.3μM、6.6μM、16.5μMのポリアミン濃度においてコントロールや各種ポリアミンと比較して、いずれも高いヒアルロン酸産生促進作用が認められた。このことから、ポリアミンを含む植物抽出物及び/又はポリアミンを有効成分として含む植物抽出物は、ポリアミン以外の有効成分を含むことでポリアミンに比べて明らかに優れた細胞外マトリックスやヒアルロン酸の産生作用を有することが確認された。ポリアミンを含む植物抽出物及び/又はポリアミンを有効成分として含む植物抽出物を肌に適用することにより、加齢に伴う繊維芽細胞の衰えが軽減し、ヒアルロン酸の産生を促進してヒアルロン酸量を維持することができる。その結果、加齢、紫外線曝露等により生じる皮膚のしわ、たるみ等を効果的に改善することができる。 As is clear from FIG. 5, it was recognized that the hyaluronic acid production rate of human skin was significantly increased in the medium to which each polyamine, soybean germ extract or wheat germ extract was added. In 3 days of culture, soybean germ extract was controlled with various polyamine concentrations at 6.7 μM, 13.4 μM, 33.5 μM polyamine concentration, and wheat germ extract was 3.3 μM, 6.6 μM, 16.5 μM polyamine concentration. In comparison, a high hyaluronic acid production promoting action was observed in all cases. Therefore, plant extracts containing polyamines and / or plant extracts containing polyamines as active ingredients are clearly superior to polyamines in producing extracellular matrix and hyaluronic acid by containing active ingredients other than polyamines. It was confirmed to have By applying a plant extract containing polyamine and / or a plant extract containing polyamine as an active ingredient to the skin, the deterioration of fibroblasts associated with aging is reduced, and the production of hyaluronic acid is promoted to increase the amount of hyaluronic acid. Can be maintained. As a result, it is possible to effectively improve skin wrinkles and sagging caused by aging, exposure to ultraviolet rays, and the like.
実施例5:美白剤を含む大豆由来ポリアミン含有抽出物美容液の製造
以下に示す組成の美容液を常法により製造した。大豆由来ポリアミン抽出物は実施例1Bに記載されている1Nの塩酸溶液で調製した植物抽出物(ダイズ胚芽抽出物)を用いた。コントロール(比較例5)として、ダイズ胚芽抽出物を含まない美容液も常法により製造した。
(組成) (重量%)
油相成分:ステアリン酸 3.0
スクワラン 5.0
オリーブ油 5.0
ダイズ胚芽抽出物 2.0
乳化剤:POEソルビタンモノラウレート 5.0
ソルビタンモノステアレート 5.0
アルカリ:トリエタノールアミン 1.0
美白剤:アルブチン 4.0
水相成分:プロピレングリコール 5.0
精製水 全体で100となる量
Example 5: Manufacture of a soybean-derived polyamine-containing extract cosmetic liquid containing a whitening agent A cosmetic liquid having the following composition was produced by a conventional method. As the soybean-derived polyamine extract, a plant extract (soybean germ extract) prepared with a 1N hydrochloric acid solution described in Example 1B was used. As a control (Comparative Example 5), a serum containing no soybean germ extract was also produced by a conventional method.
(Composition) (wt%)
Oil phase component: stearic acid 3.0
Squalane 5.0
Olive oil 5.0
Soybean germ extract 2.0
Emulsifier: POE sorbitan monolaurate 5.0
Sorbitan monostearate 5.0
Alkali: Triethanolamine 1.0
Whitening agent: Arbutin 4.0
Aqueous phase component: propylene glycol 5.0
Total amount of purified water is 100
実施例6:美白剤と抗老化剤を含む大豆由来ポリアミン含有抽出物美容液の製造
以下に示す組成の美容液を常法により製造した。大豆由来ポリアミン抽出物は実施例1Bに記載されている1Nの塩酸溶液で調製した植物抽出物(ダイズ胚芽抽出物)を用いた。コントロール(比較例6)として、ダイズ胚芽抽出物を含まない美容液も常法により製造した。
(組成) (重量%)
油相成分:ステアリン酸 3.0
スクワラン 5.0
オリーブ油 5.0
ダイズ胚芽抽出物 2.0
乳化剤:POEソルビタンモノラウレート 5.0
ソルビタンモノステアレート 5.0
アルカリ:トリエタノールアミン 1.0
美白剤:アルブチン 4.0
抗老化剤:CoQ10 4.0
水相成分:プロピレングリコール 5.0
精製水 全体で100となる量
Example 6: Preparation of soybean-derived polyamine-containing extract cosmetic liquid containing whitening agent and anti-aging agent A cosmetic liquid having the composition shown below was prepared by a conventional method. As the soybean-derived polyamine extract, a plant extract (soybean germ extract) prepared with a 1N hydrochloric acid solution described in Example 1B was used. As a control (Comparative Example 6), a serum containing no soybean germ extract was also produced by a conventional method.
(Composition) (wt%)
Oil phase component: stearic acid 3.0
Squalane 5.0
Olive oil 5.0
Soybean germ extract 2.0
Emulsifier: POE sorbitan monolaurate 5.0
Sorbitan monostearate 5.0
Alkali: Triethanolamine 1.0
Whitening agent: Arbutin 4.0
Anti-aging agent: CoQ10 4.0
Aqueous phase component: propylene glycol 5.0
Total amount of purified water is 100
実施例7:美白剤と保湿剤を含む大豆由来ポリアミン含有抽出物美容液の製造
以下に示す組成の美容液を常法により製造した。大豆由来ポリアミン抽出物は実施例1Bに記載されている1Nの塩酸溶液で調製した植物抽出物(ダイズ胚芽抽出物)を用いた。コントロール(比較例7)として、ダイズ胚芽抽出物を含まない美容液も常法により製造した。
(組成) (重量%)
油相成分:ステアリン酸 3.0
スクワラン 5.0
オリーブ油 5.0
ダイズ胚芽抽出物 2.0
乳化剤:POEソルビタンモノラウレート 5.0
ソルビタンモノステアレート 5.0
アルカリ:トリエタノールアミン 1.0
美白剤:アルブチン 4.0
保湿剤:ポリグルタミン酸 4.0
水相成分:プロピレングリコール 5.0
精製水 全体で100となる量
Example 7: Production of soybean-derived polyamine-containing extract cosmetic liquid containing whitening agent and moisturizing agent A cosmetic liquid having the composition shown below was produced by a conventional method. As the soybean-derived polyamine extract, a plant extract (soybean germ extract) prepared with a 1N hydrochloric acid solution described in Example 1B was used. As a control (Comparative Example 7), a serum containing no soybean germ extract was also produced by a conventional method.
(Composition) (wt%)
Oil phase component: stearic acid 3.0
Squalane 5.0
Olive oil 5.0
Soybean germ extract 2.0
Emulsifier: POE sorbitan monolaurate 5.0
Sorbitan monostearate 5.0
Alkali: Triethanolamine 1.0
Whitening agent: Arbutin 4.0
Moisturizer: Polyglutamic acid 4.0
Aqueous phase component: propylene glycol 5.0
Total amount of purified water is 100
実施例8:美白剤と紫外線吸収剤を含む大豆由来ポリアミン含有抽出物美容液の製造
以下に示す組成の美容液を常法により製造した。大豆由来ポリアミン抽出物は実施例1Bに記載されている1Nの塩酸溶液で調製した植物抽出物(ダイズ胚芽抽出物)を用いた。コントロール(比較例8)として、ダイズ胚芽抽出物を含まない美容液も常法により製造した。
(組成) (重量%)
油相成分:ステアリン酸 3.0
スクワラン 5.0
オリーブ油 5.0
ダイズ胚芽抽出物 2.0
乳化剤:POEソルビタンモノラウレート 5.0
ソルビタンモノステアレート 5.0
アルカリ:トリエタノールアミン 1.0
美白剤:アルブチン 4.0
紫外線吸収剤:パラアミノ安息香酸オクチル 4.0
水相成分:プロピレングリコール 5.0
精製水 全体で100となる量
Example 8: Preparation of soybean-derived polyamine-containing extract cosmetic liquid containing a whitening agent and an ultraviolet absorber A cosmetic liquid having the composition shown below was produced by a conventional method. As the soybean-derived polyamine extract, a plant extract (soybean germ extract) prepared with a 1N hydrochloric acid solution described in Example 1B was used. As a control (Comparative Example 8), a serum containing no soybean germ extract was also produced by a conventional method.
(Composition) (wt%)
Oil phase component: stearic acid 3.0
Squalane 5.0
Olive oil 5.0
Soybean germ extract 2.0
Emulsifier: POE sorbitan monolaurate 5.0
Sorbitan monostearate 5.0
Alkali: Triethanolamine 1.0
Whitening agent: Arbutin 4.0
Ultraviolet absorber: Octyl paraaminobenzoate 4.0
Aqueous phase component: propylene glycol 5.0
Total amount of purified water is 100
実施例9:美白剤と抗菌剤を含む大豆由来ポリアミン含有抽出物美容液の製造
以下に示す組成の美容液を常法により製造した。大豆由来ポリアミン抽出物は実施例1Bに記載されている1Nの塩酸溶液で調製した植物抽出物(ダイズ胚芽抽出物)を用いた。コントロール(比較例9)として、ダイズ胚芽抽出物を含まない美容液も常法により製造した。
(組成) (重量%)
油相成分:ステアリン酸 3.0
スクワラン 5.0
オリーブ油 5.0
ダイズ胚芽抽出物 2.0
乳化剤:POEソルビタンモノラウレート 5.0
ソルビタンモノステアレート 5.0
アルカリ:トリエタノールアミン 1.0
美白剤:アルブチン 4.0
抗菌剤:ウンデシレン酸亜鉛 4.0
水相成分:プロピレングリコール 5.0
精製水 全体で100となる量
Example 9: Production of soybean-derived polyamine-containing extract cosmetic liquid containing whitening agent and antibacterial agent A cosmetic liquid having the following composition was produced by a conventional method. As the soybean-derived polyamine extract, a plant extract (soybean germ extract) prepared with a 1N hydrochloric acid solution described in Example 1B was used. As a control (Comparative Example 9), a serum containing no soybean germ extract was also produced by a conventional method.
(Composition) (wt%)
Oil phase component: stearic acid 3.0
Squalane 5.0
Olive oil 5.0
Soybean germ extract 2.0
Emulsifier: POE sorbitan monolaurate 5.0
Sorbitan monostearate 5.0
Alkali: Triethanolamine 1.0
Whitening agent: Arbutin 4.0
Antibacterial agent: zinc undecylenate 4.0
Aqueous phase component: propylene glycol 5.0
Total amount of purified water is 100
実施例10:美白剤と抗老化剤と保湿剤を含む大豆由来ポリアミン含有抽出物美容液の製造
以下に示す組成の美容液を常法により製造した。大豆由来ポリアミン抽出物は実施例1Bに記載されている1Nの塩酸溶液で調製した植物抽出物(ダイズ胚芽抽出物)を用いた。コントロール(比較例10)として、ダイズ胚芽抽出物を含まない美容液も常法により製造した。
(組成) (重量%)
油相成分:ステアリン酸 3.0
スクワラン 5.0
オリーブ油 5.0
ダイズ胚芽抽出物 2.0
乳化剤:POEソルビタンモノラウレート 5.0
ソルビタンモノステアレート 5.0
アルカリ:トリエタノールアミン 1.0
美白剤:アルブチン 4.0
抗老化剤:CoQ10 4.0
保湿剤:ポリグルタミン酸 4.0
水相成分:プロピレングリコール 5.0
精製水 全体で100となる量
Example 10: Production of soybean-derived polyamine-containing extract cosmetic liquid containing whitening agent, anti-aging agent, and moisturizer A cosmetic liquid having the composition shown below was produced by a conventional method. As the soybean-derived polyamine extract, a plant extract (soybean germ extract) prepared with a 1N hydrochloric acid solution described in Example 1B was used. As a control (Comparative Example 10), a serum containing no soybean germ extract was also produced by a conventional method.
(Composition) (wt%)
Oil phase component: stearic acid 3.0
Squalane 5.0
Olive oil 5.0
Soybean germ extract 2.0
Emulsifier: POE sorbitan monolaurate 5.0
Sorbitan monostearate 5.0
Alkali: Triethanolamine 1.0
Whitening agent: Arbutin 4.0
Anti-aging agent: CoQ10 4.0
Moisturizer: Polyglutamic acid 4.0
Aqueous phase component: propylene glycol 5.0
Total amount of purified water is 100
実施例11:美白剤と抗老化剤と紫外線吸収剤を含む大豆由来ポリアミン含有抽出物美容液の製造
以下に示す組成の美容液を常法により製造した。大豆由来ポリアミン抽出物は実施例1Bに記載されている1Nの塩酸溶液で調製した植物抽出物(ダイズ胚芽抽出物)を用いた。コントロール(比較例11)として、ダイズ胚芽抽出物を含まない美容液も常法により製造した。
(組成) (重量%)
油相成分:ステアリン酸 3.0
スクワラン 5.0
オリーブ油 5.0
ダイズ胚芽抽出物 2.0
乳化剤:POEソルビタンモノラウレート 5.0
ソルビタンモノステアレート 5.0
アルカリ:トリエタノールアミン 1.0
美白剤:アルブチン 4.0
抗老化剤:CoQ10 4.0
紫外線吸収剤:パラアミノ安息香酸オクチル 4.0
水相成分:プロピレングリコール 5.0
精製水 全体で100となる量
Example 11: Production of soybean-derived polyamine-containing extract cosmetic liquid containing whitening agent, anti-aging agent and ultraviolet absorber A cosmetic liquid having the composition shown below was produced by a conventional method. As the soybean-derived polyamine extract, a plant extract (soybean germ extract) prepared with a 1N hydrochloric acid solution described in Example 1B was used. As a control (Comparative Example 11), a serum containing no soybean germ extract was also produced by a conventional method.
(Composition) (wt%)
Oil phase component: stearic acid 3.0
Squalane 5.0
Olive oil 5.0
Soybean germ extract 2.0
Emulsifier: POE sorbitan monolaurate 5.0
Sorbitan monostearate 5.0
Alkali: Triethanolamine 1.0
Whitening agent: Arbutin 4.0
Anti-aging agent: CoQ10 4.0
Ultraviolet absorber: Octyl paraaminobenzoate 4.0
Aqueous phase component: propylene glycol 5.0
Total amount of purified water is 100
実施例12:美白剤と老化剤と抗菌剤を含む大豆由来ポリアミン含有抽出物美容液の製造
以下に示す組成の美容液を常法により製造した。大豆由来ポリアミン抽出物は実施例1Bに記載されている1Nの塩酸溶液で調製した植物抽出物(ダイズ胚芽抽出物)を用いた。コントロール(比較例12)として、ダイズ胚芽抽出物を含まない美容液も常法により製造した。
(組成) (重量%)
油相成分:ステアリン酸 3.0
スクワラン 5.0
オリーブ油 5.0
ダイズ胚芽抽出物 2.0
乳化剤:POEソルビタンモノラウレート 5.0
ソルビタンモノステアレート 5.0
アルカリ:トリエタノールアミン 1.0
美白剤:アルブチン 4.0
抗老化剤:CoQ10 4.0
抗菌剤:ウンデシレン酸亜鉛 4.0
水相成分:プロピレングリコール 5.0
精製水 全体で100となる量
Example 12: Production of soybean-derived polyamine-containing extract cosmetic liquid containing a whitening agent, an aging agent, and an antibacterial agent A cosmetic liquid having the following composition was produced by a conventional method. As the soybean-derived polyamine extract, a plant extract (soybean germ extract) prepared with a 1N hydrochloric acid solution described in Example 1B was used. As a control (Comparative Example 12), a serum containing no soybean germ extract was also produced by a conventional method.
(Composition) (wt%)
Oil phase component: stearic acid 3.0
Squalane 5.0
Olive oil 5.0
Soybean germ extract 2.0
Emulsifier: POE sorbitan monolaurate 5.0
Sorbitan monostearate 5.0
Alkali: Triethanolamine 1.0
Whitening agent: Arbutin 4.0
Anti-aging agent: CoQ10 4.0
Antibacterial agent: zinc undecylenate 4.0
Aqueous phase component: propylene glycol 5.0
Total amount of purified water is 100
実施例13:美白剤と保湿剤と紫外線吸収剤を含む大豆由来ポリアミン含有抽出物美容液の製造
以下に示す組成の美容液を常法により製造した。大豆由来ポリアミン抽出物は実施例1Bに記載されている1Nの塩酸溶液で調製した植物抽出物(ダイズ胚芽抽出物)を用いた。コントロール(比較例13)として、ダイズ胚芽抽出物を含まない美容液も常法により製造した。
(組成) (重量%)
油相成分:ステアリン酸 3.0
スクワラン 5.0
オリーブ油 5.0
ダイズ胚芽抽出物 2.0
乳化剤:POEソルビタンモノラウレート 5.0
ソルビタンモノステアレート 5.0
アルカリ:トリエタノールアミン 1.0
美白剤:アルブチン 4.0
保湿剤:ポリグルタミン酸 4.0
紫外線吸収剤:パラアミノ安息香酸オクチル 4.0
水相成分:プロピレングリコール 5.0
精製水 全体で100となる量
Example 13: Production of soybean-derived polyamine-containing extract cosmetic liquid containing a whitening agent, a moisturizing agent and an ultraviolet absorber A cosmetic liquid having the composition shown below was produced by a conventional method. As the soybean-derived polyamine extract, a plant extract (soybean germ extract) prepared with a 1N hydrochloric acid solution described in Example 1B was used. As a control (Comparative Example 13), a serum containing no soybean germ extract was also produced by a conventional method.
(Composition) (wt%)
Oil phase component: stearic acid 3.0
Squalane 5.0
Olive oil 5.0
Soybean germ extract 2.0
Emulsifier: POE sorbitan monolaurate 5.0
Sorbitan monostearate 5.0
Alkali: Triethanolamine 1.0
Whitening agent: Arbutin 4.0
Moisturizer: Polyglutamic acid 4.0
Ultraviolet absorber: Octyl paraaminobenzoate 4.0
Aqueous phase component: propylene glycol 5.0
Total amount of purified water is 100
実施例14:美白剤と保湿剤と抗菌剤を含む大豆由来ポリアミン含有抽出物美容液の製造
以下に示す組成の美容液を常法により製造した。大豆由来ポリアミン抽出物は実施例1Bに記載されている1Nの塩酸溶液で調製した植物抽出物(ダイズ胚芽抽出物)を用いた。コントロール(比較例14)として、ダイズ胚芽抽出物を含まない美容液も常法により製造した。
(組成) (重量%)
油相成分:ステアリン酸 3.0
スクワラン 5.0
オリーブ油 5.0
ダイズ胚芽抽出物 2.0
乳化剤:POEソルビタンモノラウレート 5.0
ソルビタンモノステアレート 5.0
アルカリ:トリエタノールアミン 1.0
美白剤:アルブチン 4.0
保湿剤:ポリグルタミン酸 4.0
抗菌剤:ウンデシレン酸亜鉛 4.0
水相成分:プロピレングリコール 5.0
精製水 全体で100となる量
Example 14 Production of Soybean-Derived Polyamine-Containing Extract Cosmetic Liquid Containing Whitening Agent, Moisturizing Agent and Antibacterial Agent A cosmetic liquid having the composition shown below was produced by a conventional method. As the soybean-derived polyamine extract, a plant extract (soybean germ extract) prepared with a 1N hydrochloric acid solution described in Example 1B was used. As a control (Comparative Example 14), a serum containing no soybean germ extract was also produced by a conventional method.
(Composition) (wt%)
Oil phase component: stearic acid 3.0
Squalane 5.0
Olive oil 5.0
Soybean germ extract 2.0
Emulsifier: POE sorbitan monolaurate 5.0
Sorbitan monostearate 5.0
Alkali: Triethanolamine 1.0
Whitening agent: Arbutin 4.0
Moisturizer: Polyglutamic acid 4.0
Antibacterial agent: zinc undecylenate 4.0
Aqueous phase component: propylene glycol 5.0
Total amount of purified water is 100
実施例15:美白剤と紫外線吸収剤と抗菌剤を含む大豆由来ポリアミン含有抽出物美容液の製造
以下に示す組成の美容液を常法により製造した。大豆由来ポリアミン抽出物は実施例1Bに記載されている1Nの塩酸溶液で調製した植物抽出物(ダイズ胚芽抽出物)を用いた。コントロール(比較例15)として、ダイズ胚芽抽出物を含まない美容液も常法により製造した。
(組成) (重量%)
油相成分:ステアリン酸 3.0
スクワラン 5.0
オリーブ油 5.0
ダイズ胚芽抽出物 2.0
乳化剤:POEソルビタンモノラウレート 5.0
ソルビタンモノステアレート 5.0
アルカリ:トリエタノールアミン 1.0
美白剤:アルブチン 4.0
紫外線吸収剤:パラアミノ安息香酸オクチル 4.0
抗菌剤:ウンデシレン酸亜鉛 4.0
水相成分:プロピレングリコール 5.0
精製水 全体で100となる量
Example 15: Production of a soybean-derived polyamine-containing extract cosmetic liquid containing a whitening agent, an ultraviolet absorber and an antibacterial agent A cosmetic liquid having the composition shown below was produced by a conventional method. As the soybean-derived polyamine extract, a plant extract (soybean germ extract) prepared with a 1N hydrochloric acid solution described in Example 1B was used. As a control (Comparative Example 15), a serum containing no soybean germ extract was also produced by a conventional method.
(Composition) (wt%)
Oil phase component: stearic acid 3.0
Squalane 5.0
Olive oil 5.0
Soybean germ extract 2.0
Emulsifier: POE sorbitan monolaurate 5.0
Sorbitan monostearate 5.0
Alkali: Triethanolamine 1.0
Whitening agent: Arbutin 4.0
Ultraviolet absorber: Octyl paraaminobenzoate 4.0
Antibacterial agent: zinc undecylenate 4.0
Aqueous phase component: propylene glycol 5.0
Total amount of purified water is 100
実施例16:美白剤と抗老化剤と保湿剤と紫外線吸収剤を含む大豆由来ポリアミン含有抽出物美容液の製造
以下に示す組成の美容液を常法により製造した。大豆由来ポリアミン抽出物は実施例1Bに記載されている1Nの塩酸溶液で調製した植物抽出物(ダイズ胚芽抽出物)を用いた。コントロール(比較例16)として、ダイズ胚芽抽出物を含まない美容液も常法により製造した。
(組成) (重量%)
油相成分:ステアリン酸 3.0
スクワラン 5.0
オリーブ油 5.0
ダイズ胚芽抽出物 2.0
乳化剤:POEソルビタンモノラウレート 5.0
ソルビタンモノステアレート 5.0
アルカリ:トリエタノールアミン 1.0
美白剤:アルブチン 4.0
抗老化剤:CoQ10 4.0
保湿剤:ポリグルタミン酸 4.0
紫外線吸収剤:パラアミノ安息香酸オクチル 4.0
水相成分:プロピレングリコール 5.0
精製水 全体で100となる量
Example 16: Production of soybean-derived polyamine-containing extract cosmetic liquid containing a whitening agent, an anti-aging agent, a moisturizer, and an ultraviolet absorber A cosmetic liquid having the composition shown below was produced by a conventional method. As the soybean-derived polyamine extract, a plant extract (soybean germ extract) prepared with a 1N hydrochloric acid solution described in Example 1B was used. As a control (Comparative Example 16), a serum containing no soybean germ extract was also produced by a conventional method.
(Composition) (wt%)
Oil phase component: stearic acid 3.0
Squalane 5.0
Olive oil 5.0
Soybean germ extract 2.0
Emulsifier: POE sorbitan monolaurate 5.0
Sorbitan monostearate 5.0
Alkali: Triethanolamine 1.0
Whitening agent: Arbutin 4.0
Anti-aging agent: CoQ10 4.0
Moisturizer: Polyglutamic acid 4.0
Ultraviolet absorber: Octyl paraaminobenzoate 4.0
Aqueous phase component: propylene glycol 5.0
Total amount of purified water is 100
実施例17:美白剤と抗老化剤と保湿剤と抗菌剤を含む大豆由来ポリアミン含有抽出物美容液の製造
以下に示す組成の美容液を常法により製造した。大豆由来ポリアミン抽出物は実施例1Bに記載されている1Nの塩酸溶液で調製した植物抽出物(ダイズ胚芽抽出物)を用いた。コントロール(比較例17)として、ダイズ胚芽抽出物を含まない美容液も常法により製造した。
(組成) (重量%)
油相成分:ステアリン酸 3.0
スクワラン 5.0
オリーブ油 5.0
ダイズ胚芽抽出物 2.0
乳化剤:POEソルビタンモノラウレート 5.0
ソルビタンモノステアレート 5.0
アルカリ:トリエタノールアミン 1.0
美白剤:アルブチン 4.0
抗老化剤:CoQ10 4.0
保湿剤:ポリグルタミン酸 4.0
抗菌剤:ウンデシレン酸亜鉛 4.0
水相成分:プロピレングリコール 5.0
精製水 全体で100となる量
Example 17: Production of soybean-derived polyamine-containing extract cosmetic liquid containing a whitening agent, an anti-aging agent, a moisturizer, and an antibacterial agent A cosmetic liquid having the following composition was produced by a conventional method. As the soybean-derived polyamine extract, a plant extract (soybean germ extract) prepared with a 1N hydrochloric acid solution described in Example 1B was used. As a control (Comparative Example 17), a serum containing no soybean germ extract was also produced by a conventional method.
(Composition) (wt%)
Oil phase component: stearic acid 3.0
Squalane 5.0
Olive oil 5.0
Soybean germ extract 2.0
Emulsifier: POE sorbitan monolaurate 5.0
Sorbitan monostearate 5.0
Alkali: Triethanolamine 1.0
Whitening agent: Arbutin 4.0
Anti-aging agent: CoQ10 4.0
Moisturizer: Polyglutamic acid 4.0
Antibacterial agent: zinc undecylenate 4.0
Aqueous phase component: propylene glycol 5.0
Total amount of purified water is 100
実施例18:美白剤と抗老化剤と紫外線吸収剤と抗菌剤を含む大豆由来ポリアミン含有抽出物美容液の製造
以下に示す組成の美容液を常法により製造した。大豆由来ポリアミン抽出物は実施例1Bに記載されている1Nの塩酸溶液で調製した植物抽出物(ダイズ胚芽抽出物)を用いた。コントロール(比較例18)として、ダイズ胚芽抽出物を含まない美容液も常法により製造した。
(組成) (重量%)
油相成分:ステアリン酸 3.0
スクワラン 5.0
オリーブ油 5.0
ダイズ胚芽抽出物 2.0
乳化剤:POEソルビタンモノラウレート 5.0
ソルビタンモノステアレート 5.0
アルカリ:トリエタノールアミン 1.0
美白剤:アルブチン 4.0
抗老化剤:CoQ10 4.0
紫外線吸収剤:パラアミノ安息香酸オクチル 4.0
抗菌剤:ウンデシレン酸亜鉛 4.0
水相成分:プロピレングリコール 5.0
精製水 全体で100となる量
Example 18: Production of soybean-derived polyamine-containing extract cosmetic liquid containing a whitening agent, an anti-aging agent, an ultraviolet absorber and an antibacterial agent A cosmetic liquid having the following composition was produced by a conventional method. As the soybean-derived polyamine extract, a plant extract (soybean germ extract) prepared with a 1N hydrochloric acid solution described in Example 1B was used. As a control (Comparative Example 18), a serum containing no soybean germ extract was also produced by a conventional method.
(Composition) (wt%)
Oil phase component: stearic acid 3.0
Squalane 5.0
Olive oil 5.0
Soybean germ extract 2.0
Emulsifier: POE sorbitan monolaurate 5.0
Sorbitan monostearate 5.0
Alkali: Triethanolamine 1.0
Whitening agent: Arbutin 4.0
Anti-aging agent: CoQ10 4.0
Ultraviolet absorber: Octyl paraaminobenzoate 4.0
Antibacterial agent: zinc undecylenate 4.0
Aqueous phase component: propylene glycol 5.0
Total amount of purified water is 100
実施例19:美白剤と保湿剤と紫外線吸収剤と抗菌剤を含む大豆由来ポリアミン含有抽出物美容液の製造
以下に示す組成の美容液を常法により製造した。大豆由来ポリアミン抽出物は実施例1Bに記載されている1Nの塩酸溶液で調製した植物抽出物(ダイズ胚芽抽出物)を用いた。コントロール(比較例19)として、ダイズ胚芽抽出物を含まない美容液も常法により製造した。
(組成) (重量%)
油相成分:ステアリン酸 3.0
スクワラン 5.0
オリーブ油 5.0
ダイズ胚芽抽出物 2.0
乳化剤:POEソルビタンモノラウレート 5.0
ソルビタンモノステアレート 5.0
アルカリ:トリエタノールアミン 1.0
美白剤:アルブチン 4.0
保湿剤:ポリグルタミン酸 4.0
紫外線吸収剤:パラアミノ安息香酸オクチル 4.0
抗菌剤:ウンデシレン酸亜鉛 4.0
水相成分:プロピレングリコール 5.0
精製水 全体で100となる量
Example 19: Production of soybean-derived polyamine-containing extract cosmetic liquid containing a whitening agent, a moisturizing agent, an ultraviolet absorber and an antibacterial agent A cosmetic liquid having the following composition was produced by a conventional method. As the soybean-derived polyamine extract, a plant extract (soybean germ extract) prepared with a 1N hydrochloric acid solution described in Example 1B was used. As a control (Comparative Example 19), a serum containing no soybean germ extract was also produced by a conventional method.
(Composition) (wt%)
Oil phase component: stearic acid 3.0
Squalane 5.0
Olive oil 5.0
Soybean germ extract 2.0
Emulsifier: POE sorbitan monolaurate 5.0
Sorbitan monostearate 5.0
Alkali: Triethanolamine 1.0
Whitening agent: Arbutin 4.0
Moisturizer: Polyglutamic acid 4.0
Ultraviolet absorber: Octyl paraaminobenzoate 4.0
Antibacterial agent: zinc undecylenate 4.0
Aqueous phase component: propylene glycol 5.0
Total amount of purified water is 100
実施例20:美白剤と抗老化剤と保湿剤と紫外線吸収剤と抗菌剤を含む大豆由来ポリアミン含有抽出物美容液の製造
以下に示す組成の美容液を常法により製造した。大豆由来ポリアミン抽出物は実施例1Bに記載されている1Nの塩酸溶液で調製した植物抽出物(ダイズ胚芽抽出物)を用いた。コントロール(比較例20)として、ダイズ胚芽抽出物を含まない美容液も常法により製造した。
(組成) (重量%)
油相成分:ステアリン酸 3.0
スクワラン 5.0
オリーブ油 5.0
ダイズ胚芽抽出物 2.0
乳化剤:POEソルビタンモノラウレート 5.0
ソルビタンモノステアレート 5.0
アルカリ:トリエタノールアミン 1.0
美白剤:アルブチン 4.0
抗老化剤:CoQ10 4.0
保湿剤:ポリグルタミン酸 4.0
紫外線吸収剤:パラアミノ安息香酸オクチル 4.0
抗菌剤:ウンデシレン酸亜鉛 4.0
水相成分:プロピレングリコール 5.0
精製水 全体で100となる量
Example 20 Production of Soybean-derived Polyamine-containing Extract Cosmetic Liquid Containing Whitening Agent, Anti-Aging Agent, Moisturizer, Ultraviolet Absorber, and Antibacterial Agent A cosmetic liquid having the composition shown below was produced by a conventional method. As the soybean-derived polyamine extract, a plant extract (soybean germ extract) prepared with a 1N hydrochloric acid solution described in Example 1B was used. As a control (Comparative Example 20), a serum containing no soybean germ extract was also produced by a conventional method.
(Composition) (wt%)
Oil phase component: stearic acid 3.0
Squalane 5.0
Olive oil 5.0
Soybean germ extract 2.0
Emulsifier: POE sorbitan monolaurate 5.0
Sorbitan monostearate 5.0
Alkali: Triethanolamine 1.0
Whitening agent: Arbutin 4.0
Anti-aging agent: CoQ10 4.0
Moisturizer: Polyglutamic acid 4.0
Ultraviolet absorber: Octyl paraaminobenzoate 4.0
Antibacterial agent: zinc undecylenate 4.0
Aqueous phase component: propylene glycol 5.0
Total amount of purified water is 100
実施例21:美白剤を含む小麦由来ポリアミン含有抽出物美容液の製造
以下に示す組成の美容液を常法により製造した。小麦由来ポリアミン抽出物は実施例2Bに記載されている1Nの塩酸溶液で調製した植物抽出物(コムギ胚芽抽出物)を用いた。
(組成) (重量%)
油相成分:ステアリン酸 3.0
スクワラン 5.0
オリーブ油 5.0
コムギ胚芽抽出物 2.0
乳化剤:POEソルビタンモノラウレート 5.0
ソルビタンモノステアレート 5.0
アルカリ:トリエタノールアミン 1.0
美白剤:アルブチン 4.0
水相成分:プロピレングリコール 5.0
精製水 全体で100となる量
Example 21 Production of Wheat-Derived Polyamine-Containing Extract Cosmetic Liquid Containing Whitening Agent A cosmetic liquid having the following composition was produced by a conventional method. As the wheat-derived polyamine extract, a plant extract (wheat germ extract) prepared with a 1N hydrochloric acid solution described in Example 2B was used.
(Composition) (wt%)
Oil phase component: stearic acid 3.0
Squalane 5.0
Olive oil 5.0
Wheat germ extract 2.0
Emulsifier: POE sorbitan monolaurate 5.0
Sorbitan monostearate 5.0
Alkali: Triethanolamine 1.0
Whitening agent: Arbutin 4.0
Aqueous phase component: propylene glycol 5.0
Total amount of purified water is 100
実施例22:美白剤と抗老化剤を含む小麦由来ポリアミン含有抽出物美容液の製造
以下に示す組成の美容液を常法により製造した。小麦由来ポリアミン抽出物は実施例2Bに記載されている1Nの塩酸溶液で調製した植物抽出物(コムギ胚芽抽出物)を用いた。
(組成) (重量%)
油相成分:ステアリン酸 3.0
スクワラン 5.0
オリーブ油 5.0
コムギ胚芽抽出物 2.0
乳化剤:POEソルビタンモノラウレート 5.0
ソルビタンモノステアレート 5.0
アルカリ:トリエタノールアミン 1.0
美白剤:アルブチン 4.0
抗老化剤:CoQ10 4.0
水相成分:プロピレングリコール 5.0
精製水 全体で100となる量
Example 22: Production of a wheat-derived polyamine-containing extract cosmetic liquid containing a whitening agent and an anti-aging agent A cosmetic liquid having the composition shown below was produced by a conventional method. As the wheat-derived polyamine extract, a plant extract (wheat germ extract) prepared with a 1N hydrochloric acid solution described in Example 2B was used.
(Composition) (wt%)
Oil phase component: stearic acid 3.0
Squalane 5.0
Olive oil 5.0
Wheat germ extract 2.0
Emulsifier: POE sorbitan monolaurate 5.0
Sorbitan monostearate 5.0
Alkali: Triethanolamine 1.0
Whitening agent: Arbutin 4.0
Anti-aging agent: CoQ10 4.0
Aqueous phase component: propylene glycol 5.0
Total amount of purified water is 100
実施例23:美白剤と保湿剤を含む小麦由来ポリアミン含有抽出物美容液の製造
以下に示す組成の美容液を常法により製造した。小麦由来ポリアミン抽出物は実施例2Bに記載されている1Nの塩酸溶液で調製した植物抽出物(コムギ胚芽抽出物)を用いた。
(組成) (重量%)
油相成分:ステアリン酸 3.0
スクワラン 5.0
オリーブ油 5.0
コムギ胚芽抽出物 2.0
乳化剤:POEソルビタンモノラウレート 5.0
ソルビタンモノステアレート 5.0
アルカリ:トリエタノールアミン 1.0
美白剤:アルブチン 4.0
保湿剤:ポリグルタミン酸 4.0
水相成分:プロピレングリコール 5.0
精製水 全体で100となる量
Example 23: Production of a wheat-derived polyamine-containing extract cosmetic liquid containing a whitening agent and a moisturizer A cosmetic liquid having the composition shown below was produced by a conventional method. As the wheat-derived polyamine extract, a plant extract (wheat germ extract) prepared with a 1N hydrochloric acid solution described in Example 2B was used.
(Composition) (wt%)
Oil phase component: stearic acid 3.0
Squalane 5.0
Olive oil 5.0
Wheat germ extract 2.0
Emulsifier: POE sorbitan monolaurate 5.0
Sorbitan monostearate 5.0
Alkali: Triethanolamine 1.0
Whitening agent: Arbutin 4.0
Moisturizer: Polyglutamic acid 4.0
Aqueous phase component: propylene glycol 5.0
Total amount of purified water is 100
実施例24:美白剤と紫外線吸収剤を含む小麦由来ポリアミン含有抽出物美容液の製造
以下に示す組成の美容液を常法により製造した。小麦由来ポリアミン抽出物は実施例2Bに記載されている1Nの塩酸溶液で調製した植物抽出物(コムギ胚芽抽出物)を用いた。
(組成) (重量%)
油相成分:ステアリン酸 3.0
スクワラン 5.0
オリーブ油 5.0
コムギ胚芽抽出物 2.0
乳化剤:POEソルビタンモノラウレート 5.0
ソルビタンモノステアレート 5.0
アルカリ:トリエタノールアミン 1.0
美白剤:アルブチン 4.0
紫外線吸収剤:パラアミノ安息香酸オクチル 4.0
水相成分:プロピレングリコール 5.0
精製水 全体で100となる量
Example 24 Production of Wheat-Derived Polyamine-Containing Extract Cosmetic Liquid Containing Whitening Agent and Ultraviolet Absorber A cosmetic liquid having the composition shown below was produced by a conventional method. As the wheat-derived polyamine extract, a plant extract (wheat germ extract) prepared with a 1N hydrochloric acid solution described in Example 2B was used.
(Composition) (wt%)
Oil phase component: stearic acid 3.0
Squalane 5.0
Olive oil 5.0
Wheat germ extract 2.0
Emulsifier: POE sorbitan monolaurate 5.0
Sorbitan monostearate 5.0
Alkali: Triethanolamine 1.0
Whitening agent: Arbutin 4.0
Ultraviolet absorber: Octyl paraaminobenzoate 4.0
Aqueous phase component: propylene glycol 5.0
Total amount of purified water is 100
実施例25:美白剤と抗菌剤を含む小麦由来ポリアミン含有抽出物美容液の製造
以下に示す組成の美容液を常法により製造した。小麦由来ポリアミン抽出物は実施例2Bに記載されている1Nの塩酸溶液で調製した植物抽出物(コムギ胚芽抽出物)を用いた。
(組成) (重量%)
油相成分:ステアリン酸 3.0
スクワラン 5.0
オリーブ油 5.0
コムギ胚芽抽出物 2.0
乳化剤:POEソルビタンモノラウレート 5.0
ソルビタンモノステアレート 5.0
アルカリ:トリエタノールアミン 1.0
美白剤:アルブチン 4.0
抗菌剤:ウンデシレン酸亜鉛 4.0
水相成分:プロピレングリコール 5.0
精製水 全体で100となる量
Example 25: Production of a wheat-derived polyamine-containing extract cosmetic liquid containing a whitening agent and an antibacterial agent A cosmetic liquid having the composition shown below was produced by a conventional method. As the wheat-derived polyamine extract, a plant extract (wheat germ extract) prepared with a 1N hydrochloric acid solution described in Example 2B was used.
(Composition) (wt%)
Oil phase component: stearic acid 3.0
Squalane 5.0
Olive oil 5.0
Wheat germ extract 2.0
Emulsifier: POE sorbitan monolaurate 5.0
Sorbitan monostearate 5.0
Alkali: Triethanolamine 1.0
Whitening agent: Arbutin 4.0
Antibacterial agent: zinc undecylenate 4.0
Aqueous phase component: propylene glycol 5.0
Total amount of purified water is 100
実施例26:美白剤と抗老化剤と保湿剤を含む小麦由来ポリアミン含有抽出物美容液の製造
以下に示す組成の美容液を常法により製造した。小麦由来ポリアミン抽出物は実施例2Bに記載されている1Nの塩酸溶液で調製した植物抽出物(コムギ胚芽抽出物)を用いた。
(組成) (重量%)
油相成分:ステアリン酸 3.0
スクワラン 5.0
オリーブ油 5.0
コムギ胚芽抽出物 2.0
乳化剤:POEソルビタンモノラウレート 5.0
ソルビタンモノステアレート 5.0
アルカリ:トリエタノールアミン 1.0
美白剤:アルブチン 4.0
抗老化剤:CoQ10 4.0
保湿剤:ポリグルタミン酸 4.0
水相成分:プロピレングリコール 5.0
精製水 全体で100となる量
Example 26: Production of a wheat-derived polyamine-containing extract cosmetic liquid containing a whitening agent, an anti-aging agent, and a moisturizer A cosmetic liquid having the composition shown below was produced by a conventional method. As the wheat-derived polyamine extract, a plant extract (wheat germ extract) prepared with a 1N hydrochloric acid solution described in Example 2B was used.
(Composition) (wt%)
Oil phase component: stearic acid 3.0
Squalane 5.0
Olive oil 5.0
Wheat germ extract 2.0
Emulsifier: POE sorbitan monolaurate 5.0
Sorbitan monostearate 5.0
Alkali: Triethanolamine 1.0
Whitening agent: Arbutin 4.0
Anti-aging agent: CoQ10 4.0
Moisturizer: Polyglutamic acid 4.0
Aqueous phase component: propylene glycol 5.0
Total amount of purified water is 100
実施例27:美白剤と抗老化剤と紫外線吸収剤を含む小麦由来ポリアミン含有抽出物美容液の製造
以下に示す組成の美容液を常法により製造した。小麦由来ポリアミン抽出物は実施例2Bに記載されている1Nの塩酸溶液で調製した植物抽出物(コムギ胚芽抽出物)を用いた。
(組成) (重量%)
油相成分:ステアリン酸 3.0
スクワラン 5.0
オリーブ油 5.0
コムギ胚芽抽出物 2.0
乳化剤:POEソルビタンモノラウレート 5.0
ソルビタンモノステアレート 5.0
アルカリ:トリエタノールアミン 1.0
美白剤:アルブチン 4.0
抗老化剤:CoQ10 4.0
紫外線吸収剤:パラアミノ安息香酸オクチル 4.0
水相成分:プロピレングリコール 5.0
精製水 全体で100となる量
Example 27: Manufacture of a wheat-derived polyamine-containing extract cosmetic liquid containing a whitening agent, an anti-aging agent, and an ultraviolet absorber A cosmetic liquid having the composition shown below was prepared by a conventional method. As the wheat-derived polyamine extract, a plant extract (wheat germ extract) prepared with a 1N hydrochloric acid solution described in Example 2B was used.
(Composition) (wt%)
Oil phase component: stearic acid 3.0
Squalane 5.0
Olive oil 5.0
Wheat germ extract 2.0
Emulsifier: POE sorbitan monolaurate 5.0
Sorbitan monostearate 5.0
Alkali: Triethanolamine 1.0
Whitening agent: Arbutin 4.0
Anti-aging agent: CoQ10 4.0
Ultraviolet absorber: Octyl paraaminobenzoate 4.0
Aqueous phase component: propylene glycol 5.0
Total amount of purified water is 100
実施例28:美白剤と抗老化剤と抗菌剤を含む小麦由来ポリアミン含有抽出物美容液の製造
以下に示す組成の美容液を常法により製造した。小麦由来ポリアミン抽出物は実施例2Bに記載されている1Nの塩酸溶液で調製した植物抽出物(コムギ胚芽抽出物)を用いた。
(組成) (重量%)
油相成分:ステアリン酸 3.0
スクワラン 5.0
オリーブ油 5.0
コムギ胚芽抽出物 2.0
乳化剤:POEソルビタンモノラウレート 5.0
ソルビタンモノステアレート 5.0
アルカリ:トリエタノールアミン 1.0
美白剤:アルブチン 4.0
抗老化剤:CoQ10 4.0
抗菌剤:ウンデシレン酸亜鉛 4.0
水相成分:プロピレングリコール 5.0
精製水 全体で100となる量
Example 28: Production of a wheat-derived polyamine-containing extract cosmetic liquid containing a whitening agent, an anti-aging agent, and an antibacterial agent A cosmetic liquid having the following composition was produced by a conventional method. As the wheat-derived polyamine extract, a plant extract (wheat germ extract) prepared with a 1N hydrochloric acid solution described in Example 2B was used.
(Composition) (wt%)
Oil phase component: stearic acid 3.0
Squalane 5.0
Olive oil 5.0
Wheat germ extract 2.0
Emulsifier: POE sorbitan monolaurate 5.0
Sorbitan monostearate 5.0
Alkali: Triethanolamine 1.0
Whitening agent: Arbutin 4.0
Anti-aging agent: CoQ10 4.0
Antibacterial agent: zinc undecylenate 4.0
Aqueous phase component: propylene glycol 5.0
Total amount of purified water is 100
実施例29:美白剤と保湿剤と紫外線吸収剤を含む小麦由来ポリアミン含有抽出物美容液の製造
以下に示す組成の美容液を常法により製造した。小麦由来ポリアミン抽出物は実施例2Bに記載されている1Nの塩酸溶液で調製した植物抽出物(コムギ胚芽抽出物)を用いた。
(組成) (重量%)
油相成分:ステアリン酸 3.0
スクワラン 5.0
オリーブ油 5.0
コムギ胚芽抽出物 2.0
乳化剤:POEソルビタンモノラウレート 5.0
ソルビタンモノステアレート 5.0
アルカリ:トリエタノールアミン 1.0
美白剤:アルブチン 4.0
保湿剤:ポリグルタミン酸 4.0
紫外線吸収剤:パラアミノ安息香酸オクチル 4.0
水相成分:プロピレングリコール 5.0
精製水 全体で100となる量
Example 29: Production of a wheat-derived polyamine-containing extract cosmetic liquid containing a whitening agent, a moisturizing agent and an ultraviolet absorber A cosmetic liquid having the composition shown below was produced by a conventional method. As the wheat-derived polyamine extract, a plant extract (wheat germ extract) prepared with a 1N hydrochloric acid solution described in Example 2B was used.
(Composition) (wt%)
Oil phase component: stearic acid 3.0
Squalane 5.0
Olive oil 5.0
Wheat germ extract 2.0
Emulsifier: POE sorbitan monolaurate 5.0
Sorbitan monostearate 5.0
Alkali: Triethanolamine 1.0
Whitening agent: Arbutin 4.0
Moisturizer: Polyglutamic acid 4.0
Ultraviolet absorber: Octyl paraaminobenzoate 4.0
Aqueous phase component: propylene glycol 5.0
Total amount of purified water is 100
実施例30:美白剤と保湿剤と抗菌剤を含む小麦由来ポリアミン含有抽出物美容液の製造
以下に示す組成の美容液を常法により製造した。小麦由来ポリアミン抽出物は実施例2Bに記載されている1Nの塩酸溶液で調製した植物抽出物(コムギ胚芽抽出物)を用いた。
(組成) (重量%)
油相成分:ステアリン酸 3.0
スクワラン 5.0
オリーブ油 5.0
コムギ胚芽抽出物 2.0
乳化剤:POEソルビタンモノラウレート 5.0
ソルビタンモノステアレート 5.0
アルカリ:トリエタノールアミン 1.0
美白剤:アルブチン 4.0
保湿剤:ポリグルタミン酸 4.0
抗菌剤:ウンデシレン酸亜鉛 4.0
水相成分:プロピレングリコール 5.0
精製水 全体で100となる量
Example 30: Production of a wheat-derived polyamine-containing extract cosmetic liquid containing a whitening agent, a moisturizing agent and an antibacterial agent A cosmetic liquid having the composition shown below was produced by a conventional method. As the wheat-derived polyamine extract, a plant extract (wheat germ extract) prepared with a 1N hydrochloric acid solution described in Example 2B was used.
(Composition) (wt%)
Oil phase component: stearic acid 3.0
Squalane 5.0
Olive oil 5.0
Wheat germ extract 2.0
Emulsifier: POE sorbitan monolaurate 5.0
Sorbitan monostearate 5.0
Alkali: Triethanolamine 1.0
Whitening agent: Arbutin 4.0
Moisturizer: Polyglutamic acid 4.0
Antibacterial agent: zinc undecylenate 4.0
Aqueous phase component: propylene glycol 5.0
Total amount of purified water is 100
実施例31:美白剤と紫外線吸収剤と抗菌剤を含む小麦由来ポリアミン含有抽出物美容液の製造
以下に示す組成の美容液を常法により製造した。小麦由来ポリアミン抽出物は実施例2Bに記載されている1Nの塩酸溶液で調製した植物抽出物(コムギ胚芽抽出物)を用いた。
(組成) (重量%)
油相成分:ステアリン酸 3.0
スクワラン 5.0
オリーブ油 5.0
コムギ胚芽抽出物 2.0
乳化剤:POEソルビタンモノラウレート 5.0
ソルビタンモノステアレート 5.0
アルカリ:トリエタノールアミン 1.0
美白剤:アルブチン 4.0
紫外線吸収剤:パラアミノ安息香酸オクチル 4.0
抗菌剤:ウンデシレン酸亜鉛 4.0
水相成分:プロピレングリコール 5.0
精製水 全体で100となる量
Example 31 Manufacture of a wheat-derived polyamine-containing extract cosmetic liquid containing a whitening agent, an ultraviolet absorber and an antibacterial agent A cosmetic liquid having the composition shown below was prepared by a conventional method. As the wheat-derived polyamine extract, a plant extract (wheat germ extract) prepared with a 1N hydrochloric acid solution described in Example 2B was used.
(Composition) (wt%)
Oil phase component: stearic acid 3.0
Squalane 5.0
Olive oil 5.0
Wheat germ extract 2.0
Emulsifier: POE sorbitan monolaurate 5.0
Sorbitan monostearate 5.0
Alkali: Triethanolamine 1.0
Whitening agent: Arbutin 4.0
Ultraviolet absorber: Octyl paraaminobenzoate 4.0
Antibacterial agent: zinc undecylenate 4.0
Aqueous phase component: propylene glycol 5.0
Total amount of purified water is 100
実施例32:美白剤と抗老化剤と保湿剤と紫外線吸収剤を含む小麦由来ポリアミン含有抽出物美容液の製造
以下に示す組成の美容液を常法により製造した。小麦由来ポリアミン抽出物は実施例2Bに記載されている1Nの塩酸溶液で調製した植物抽出物(コムギ胚芽抽出物)を用いた。
(組成) (重量%)
油相成分:ステアリン酸 3.0
スクワラン 5.0
オリーブ油 5.0
コムギ胚芽抽出物 2.0
乳化剤:POEソルビタンモノラウレート 5.0
ソルビタンモノステアレート 5.0
アルカリ:トリエタノールアミン 1.0
美白剤:アルブチン 4.0
抗老化剤:CoQ10 4.0
保湿剤:ポリグルタミン酸 4.0
紫外線吸収剤:パラアミノ安息香酸オクチル 4.0
水相成分:プロピレングリコール 5.0
精製水 全体で100となる量
Example 32: Production of wheat-derived polyamine-containing extract cosmetic liquid containing whitening agent, anti-aging agent, moisturizer, and UV absorber A cosmetic liquid having the composition shown below was produced by a conventional method. As the wheat-derived polyamine extract, a plant extract (wheat germ extract) prepared with a 1N hydrochloric acid solution described in Example 2B was used.
(Composition) (wt%)
Oil phase component: stearic acid 3.0
Squalane 5.0
Olive oil 5.0
Wheat germ extract 2.0
Emulsifier: POE sorbitan monolaurate 5.0
Sorbitan monostearate 5.0
Alkali: Triethanolamine 1.0
Whitening agent: Arbutin 4.0
Anti-aging agent: CoQ10 4.0
Moisturizer: Polyglutamic acid 4.0
Ultraviolet absorber: Octyl paraaminobenzoate 4.0
Aqueous phase component: propylene glycol 5.0
Total amount of purified water is 100
実施例33:美白剤と抗老化剤と保湿剤と抗菌剤を含む小麦由来ポリアミン含有抽出物美容液の製造
以下に示す組成の美容液を常法により製造した。小麦由来ポリアミン抽出物は実施例2Bに記載されている1Nの塩酸溶液で調製した植物抽出物(コムギ胚芽抽出物)を用いた。
(組成) (重量%)
油相成分:ステアリン酸 3.0
スクワラン 5.0
オリーブ油 5.0
コムギ胚芽抽出物 2.0
乳化剤:POEソルビタンモノラウレート 5.0
ソルビタンモノステアレート 5.0
アルカリ:トリエタノールアミン 1.0
美白剤:アルブチン 4.0
抗老化剤:CoQ10 4.0
保湿剤:ポリグルタミン酸 4.0
抗菌剤:ウンデシレン酸亜鉛 4.0
水相成分:プロピレングリコール 5.0
精製水 全体で100となる量
Example 33: Production of a wheat-derived polyamine-containing extract cosmetic liquid containing a whitening agent, an anti-aging agent, a moisturizing agent and an antibacterial agent A cosmetic liquid having the following composition was produced by a conventional method. As the wheat-derived polyamine extract, a plant extract (wheat germ extract) prepared with a 1N hydrochloric acid solution described in Example 2B was used.
(Composition) (wt%)
Oil phase component: stearic acid 3.0
Squalane 5.0
Olive oil 5.0
Wheat germ extract 2.0
Emulsifier: POE sorbitan monolaurate 5.0
Sorbitan monostearate 5.0
Alkali: Triethanolamine 1.0
Whitening agent: Arbutin 4.0
Anti-aging agent: CoQ10 4.0
Moisturizer: Polyglutamic acid 4.0
Antibacterial agent: zinc undecylenate 4.0
Aqueous phase component: propylene glycol 5.0
Total amount of purified water is 100
実施例34:美白剤と抗老化剤と紫外線吸収剤と抗菌剤を含む小麦由来ポリアミン含有抽出物美容液の製造
以下に示す組成の美容液を常法により製造した。小麦由来ポリアミン抽出物は実施例2Bに記載されている1Nの塩酸溶液で調製した植物抽出物(コムギ胚芽抽出物)を用いた。
(組成) (重量%)
油相成分:ステアリン酸 3.0
スクワラン 5.0
オリーブ油 5.0
コムギ胚芽抽出物 2.0
乳化剤:POEソルビタンモノラウレート 5.0
ソルビタンモノステアレート 5.0
アルカリ:トリエタノールアミン 1.0
美白剤:アルブチン 4.0
抗老化剤:CoQ10 4.0
紫外線吸収剤:パラアミノ安息香酸オクチル 4.0
抗菌剤:ウンデシレン酸亜鉛 4.0
水相成分:プロピレングリコール 5.0
精製水 全体で100となる量
Example 34 Production of Wheat-Derived Polyamine-Containing Extract Cosmetic Liquid Containing Whitening Agent, Anti-aging Agent, Ultraviolet Absorber and Antibacterial Agent A cosmetic liquid having the composition shown below was produced by a conventional method. As the wheat-derived polyamine extract, a plant extract (wheat germ extract) prepared with a 1N hydrochloric acid solution described in Example 2B was used.
(Composition) (wt%)
Oil phase component: stearic acid 3.0
Squalane 5.0
Olive oil 5.0
Wheat germ extract 2.0
Emulsifier: POE sorbitan monolaurate 5.0
Sorbitan monostearate 5.0
Alkali: Triethanolamine 1.0
Whitening agent: Arbutin 4.0
Anti-aging agent: CoQ10 4.0
Ultraviolet absorber: Octyl paraaminobenzoate 4.0
Antibacterial agent: zinc undecylenate 4.0
Aqueous phase component: propylene glycol 5.0
Total amount of purified water is 100
実施例35:美白剤と保湿剤と紫外線吸収剤と抗菌剤を含む小麦由来ポリアミン含有抽出物美容液の製造
以下に示す組成の美容液を常法により製造した。小麦由来ポリアミン抽出物は実施例2Bに記載されている1Nの塩酸溶液で調製した植物抽出物(コムギ胚芽抽出物)を用いた。
(組成) (重量%)
油相成分:ステアリン酸 3.0
スクワラン 5.0
オリーブ油 5.0
コムギ胚芽抽出物 2.0
乳化剤:POEソルビタンモノラウレート 5.0
ソルビタンモノステアレート 5.0
アルカリ:トリエタノールアミン 1.0
美白剤:アルブチン 4.0
保湿剤:ポリグルタミン酸 4.0
紫外線吸収剤:パラアミノ安息香酸オクチル 4.0
抗菌剤:ウンデシレン酸亜鉛 4.0
水相成分:プロピレングリコール 5.0
精製水 全体で100となる量
Example 35: Production of a wheat-derived polyamine-containing extract cosmetic liquid containing a whitening agent, a moisturizing agent, an ultraviolet absorber and an antibacterial agent A cosmetic liquid having the following composition was produced by a conventional method. As the wheat-derived polyamine extract, a plant extract (wheat germ extract) prepared with a 1N hydrochloric acid solution described in Example 2B was used.
(Composition) (wt%)
Oil phase component: stearic acid 3.0
Squalane 5.0
Olive oil 5.0
Wheat germ extract 2.0
Emulsifier: POE sorbitan monolaurate 5.0
Sorbitan monostearate 5.0
Alkali: Triethanolamine 1.0
Whitening agent: Arbutin 4.0
Moisturizer: Polyglutamic acid 4.0
Ultraviolet absorber: Octyl paraaminobenzoate 4.0
Antibacterial agent: zinc undecylenate 4.0
Aqueous phase component: propylene glycol 5.0
Total amount of purified water is 100
実施例36:美白剤と抗老化剤と保湿剤と紫外線吸収剤と抗菌剤を含む小麦由来ポリアミン含有抽出物美容液の製造
以下に示す組成の美容液を常法により製造した。小麦由来ポリアミン抽出物は実施例2Bに記載されている1Nの塩酸溶液で調製した植物抽出物(コムギ胚芽抽出物)を用いた。
(組成) (重量%)
油相成分:ステアリン酸 3.0
スクワラン 5.0
オリーブ油 5.0
コムギ胚芽抽出物 2.0
乳化剤:POEソルビタンモノラウレート 5.0
ソルビタンモノステアレート 5.0
アルカリ:トリエタノールアミン 1.0
美白剤:アルブチン 4.0
抗老化剤:CoQ10 4.0
保湿剤:ポリグルタミン酸 4.0
紫外線吸収剤:パラアミノ安息香酸オクチル 4.0
抗菌剤:ウンデシレン酸亜鉛 4.0
水相成分:プロピレングリコール 5.0
精製水 全体で100となる量
Example 36: Production of a wheat-derived polyamine-containing extract cosmetic liquid containing a whitening agent, an anti-aging agent, a moisturizer, an ultraviolet absorber and an antibacterial agent A cosmetic liquid having the composition shown below was produced by a conventional method. As the wheat-derived polyamine extract, a plant extract (wheat germ extract) prepared with a 1N hydrochloric acid solution described in Example 2B was used.
(Composition) (wt%)
Oil phase component: stearic acid 3.0
Squalane 5.0
Olive oil 5.0
Wheat germ extract 2.0
Emulsifier: POE sorbitan monolaurate 5.0
Sorbitan monostearate 5.0
Alkali: Triethanolamine 1.0
Whitening agent: Arbutin 4.0
Anti-aging agent: CoQ10 4.0
Moisturizer: Polyglutamic acid 4.0
Ultraviolet absorber: Octyl paraaminobenzoate 4.0
Antibacterial agent: zinc undecylenate 4.0
Aqueous phase component: propylene glycol 5.0
Total amount of purified water is 100
美容液の評価(対照区)
比較例5〜20の美容液を用いて、5名のパネリストが、これを使用したときの、のび、つき、しっとり感、かさつきにくさについて評価し、次の基準に従って判定した。結果を表1に示す。
判定基準:
◎:5名中4名以上が良好と評価した。
○:5名中3名が良好と評価した。
△:5名中2名が良好と評価した。
×:5名中1名以下が良好と評価した。
Evaluation of serum (control zone)
Using the essence liquids of Comparative Examples 5 to 20, five panelists evaluated the spread, stickiness, moist feeling, and hardness when using this, and determined according to the following criteria. The results are shown in Table 1.
Judgment criteria:
A: 4 or more out of 5 evaluated as good.
A: 3 out of 5 people evaluated it as good.
(Triangle | delta): Two persons evaluated that 5 persons were favorable.
X: 1 or less out of 5 evaluated as good.
美容液の評価(ダイズ胚芽抽出物)
実施例5〜20に示した組成の美容液を用いて、5名のパネリストが、これを使用したときの、のび、つき、しっとり感、かさつきにくさについて評価し、次の基準に従って判定した。結果を表2に示す。なお、いずれの場合も、美白効果は良好と評価された。
判定基準:
◎:5名中4名以上が良好と評価した。
○:5名中3名が良好と評価した。
△:5名中2名が良好と評価した。
×:5名中1名以下が良好と評価した。
Evaluation of serum (soybean germ extract)
Using the essences of the compositions shown in Examples 5 to 20, five panelists evaluated the spread, stickiness, moist feeling, and hardness when using this, and determined according to the following criteria: . The results are shown in Table 2. In all cases, the whitening effect was evaluated as good.
Judgment criteria:
A: 4 or more out of 5 evaluated as good.
A: 3 out of 5 people evaluated it as good.
(Triangle | delta): Two persons evaluated that 5 persons were favorable.
X: 1 or less out of 5 evaluated as good.
美容液の評価(コムギ胚芽抽出物)
実施例21〜36に示した組成の美容液を用いて、5名のパネリストが、これを使用したときの、のび、つき、しっとり感、かさつきにくさについて評価し、次の基準に従って判定した。結果を表3に示す。なお、いずれの場合も、美白効果は良好と評価された。
判定基準:
◎:5名中4名以上が良好と評価した。
○:5名中3名が良好と評価した。
△:5名中2名が良好と評価した。
×:5名中1名以下が良好と評価した。
Evaluation of serum (wheat germ extract)
Using the essences of the compositions shown in Examples 21 to 36, five panelists evaluated the spread, stickiness, moist feeling, and hardness when using this, and determined according to the following criteria: . The results are shown in Table 3. In all cases, the whitening effect was evaluated as good.
Judgment criteria:
A: 4 or more out of 5 evaluated as good.
A: 3 out of 5 people evaluated it as good.
(Triangle | delta): Two persons evaluated that 5 persons were favorable.
X: 1 or less out of 5 evaluated as good.
本発明の植物由来ポリアミン含有抽出物を含有する化粧品組成物により、保湿作用、コラーゲン生成促進作用、ヒアルロン酸生成促進作用、細胞賦活化作用、抗酸化作用、抗老化作用、育毛作用及び肌荒れ改善作用などの効果を有する、化粧品、医薬部外品、医療用品、衛生用品、医薬品を提供することができる。また、本発明により、美白剤を含有する皮膚外用剤において、刺激性の少ない皮膚外用剤を提供することができ、さらに、従来より、原料コストが安価であり、大量生産可能となり、長期にわたる使用に十分に耐え得ることからも、産業界に大きく寄与することが期待される。 The cosmetic composition containing the plant-derived polyamine-containing extract of the present invention provides moisturizing action, collagen production promoting action, hyaluronic acid production promoting action, cell activation action, antioxidant action, anti-aging action, hair growth action and rough skin improving action. Cosmetics, quasi-drugs, medical supplies, hygiene products, and pharmaceuticals that have effects such as these can be provided. In addition, according to the present invention, it is possible to provide a skin external preparation with less irritation in a skin external preparation containing a whitening agent. Therefore, it is expected to contribute greatly to the industry.
Claims (15)
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