JP2012201670A - Preparation for external use - Google Patents
Preparation for external use Download PDFInfo
- Publication number
- JP2012201670A JP2012201670A JP2011070456A JP2011070456A JP2012201670A JP 2012201670 A JP2012201670 A JP 2012201670A JP 2011070456 A JP2011070456 A JP 2011070456A JP 2011070456 A JP2011070456 A JP 2011070456A JP 2012201670 A JP2012201670 A JP 2012201670A
- Authority
- JP
- Japan
- Prior art keywords
- external preparation
- collagen
- weight
- pine bark
- growth factor
- 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
Links
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Landscapes
- Cosmetics (AREA)
Abstract
Description
本発明は、外用剤に関する。 The present invention relates to an external preparation.
従来から、シワの防止、肌のハリやツヤの改善に効果を発揮し、保湿性を向上させることを目的とした種々の外用剤が開発されている。これら外用剤には、肌の保湿性を向上させるために、様々な成分が配合されている。近年においては、肌の保湿性を向上させることを目的として、コラーゲンを配合した外用剤(例えば、化粧品)が知られている。 Conventionally, various external preparations have been developed that are effective in preventing wrinkles, improving skin firmness and gloss, and improving moisture retention. In these external preparations, various components are blended in order to improve the moisture retention of the skin. In recent years, external preparations (for example, cosmetics) containing collagen have been known for the purpose of improving the moisture retention of the skin.
しかし、外用剤の多種多様化の中、コラーゲンを配合した外用剤よりも、更に、肌の保湿性を向上させることができる外用剤の提供が望まれていた。 However, in the diversification of external preparations, it has been desired to provide an external preparation that can further improve the moisture retention of the skin as compared with an external preparation containing collagen.
本発明は、上述の要望に応えたものであり、肌の保湿性を向上させる成分としてコラーゲンのみを配合した外用剤と比較して、更に、肌の保湿性を向上させることができる外用剤を提供することを目的とする。 The present invention is in response to the above-mentioned demand, and an external preparation capable of further improving the skin moisturizing property as compared with an external preparation containing only collagen as a component for improving the skin moisturizing property. The purpose is to provide.
上述の目的を達成するために、請求項1記載の外用剤は、松樹皮抽出物、コラーゲンおよび成長因子を配合するものである。本発明において、成長因子とは、増殖因子とも呼び、EGF(Epidermal Growth Factor:上皮細胞増殖因子・表皮成長因子)、FGF(Fibroblast Growth Factor:線維芽細胞増殖因子)、TGF(Transforming Growth Factor:トランスフォーミング増殖因子)、IGF(Insulin−like Growth Factor:インスリン様増殖因子)、HGF(Hepatocyte Growth Factor:肝細胞増殖因子)、EGF様成分(EGF様成分とは、体内においてEGFと同様の作用を奏する成分)を含む概念である。また、本発明において、コラーゲンとは、コラーゲンタンパク質のみに限定されず、コラーゲンタンパク質を加水分解して得られるコラーゲンペプチドや、コラーゲン分子をプロテアーゼで処理し、テロペプチド部分を取り除いたアテロコラーゲンも含む概念である。 In order to achieve the above-mentioned object, the external preparation according to claim 1 contains a pine bark extract, collagen and a growth factor. In the present invention, the growth factor is also referred to as a growth factor, and EGF (Epidmal Growth Factor: epidermal growth factor / epidermal growth factor), FGF (Fibroblast Growth Factor), TGF (Transforming Growth Factor): trans Forming growth factor), IGF (Insulin-like Growth Factor), HGF (Hepatocyte Growth Factor), EGF-like component (EGF-like component) has the same action as EGF in the body. Component). In the present invention, the term “collagen” is not limited to a collagen protein, but includes a collagen peptide obtained by hydrolyzing a collagen protein and an atelocollagen obtained by treating a collagen molecule with a protease and removing a telopeptide portion. is there.
請求項2記載の外用剤は、請求項1記載の外用剤において、前記成長因子は、EGF(Epidermal Growth Factor)成分である。 The external preparation according to claim 2 is the external preparation according to claim 1, wherein the growth factor is an EGF (Epidmal Growth Factor) component.
請求項3記載の外用剤は、請求項1記載の外用剤において、前記成長因子は、ツバメの巣に含有されるEGF(Epidermal Growth Factor)様成分である。なお、EGF様成分とは、体内においてEGFと同様の作用を奏する成分を示している。 The external preparation according to claim 3 is the external preparation according to claim 1, wherein the growth factor is an EGF (Epidmal Growth Factor) -like component contained in a swallow's nest. The EGF-like component refers to a component that exhibits the same action as EGF in the body.
請求項4記載の外用剤は、請求項1から3に記載の外用剤において、前記成長因子を、前記外用剤総重量に対し、0.0001〜0.5重量%配合している。 The external preparation according to claim 4 is the external preparation according to claims 1 to 3, wherein the growth factor is blended in an amount of 0.0001 to 0.5% by weight based on the total weight of the external preparation.
請求項5記載の外用剤は、請求項1から4のいずれかに記載の外用剤において、前記松樹皮抽出物を、前記成長因子1重量部に対し、0.01〜100重量部配合している。 The external preparation according to claim 5 is the external preparation according to any one of claims 1 to 4, wherein 0.01 to 100 parts by weight of the pine bark extract is added to 1 part by weight of the growth factor. Yes.
請求項6記載の外用剤は、請求項1から5のいずれかに記載の外用剤において、前記松樹皮抽出物を、前記外用剤総重量に対し、0.0001〜1重量%配合している。 The external preparation according to claim 6 is the external preparation according to any one of claims 1 to 5, wherein the pine bark extract is blended in an amount of 0.0001 to 1% by weight based on the total weight of the external preparation. .
本発明の外用剤は、松樹皮抽出物、コラーゲンおよび成長因子(特に、EGFまたはEGF様成分)を配合しているので、肌の保湿性を向上させる成分としてコラーゲンのみを配合した外用剤と比較して、肌の保湿性をより向上させることができるという効果がある。 Since the external preparation of the present invention contains a pine bark extract, collagen and a growth factor (especially EGF or EGF-like component), it is compared with an external preparation containing only collagen as a component for improving the moisture retention of the skin. Thus, there is an effect that the moisture retention of the skin can be further improved.
以下、本発明の実施形態について説明する。なお、本発明は、後述する実施形態の記載により限定して解釈されるものではなく、特許請求の範囲における記載の範囲内で種々の変更が可能である。 Hereinafter, embodiments of the present invention will be described. The present invention is not construed as being limited by the description of the embodiments described later, and various modifications can be made within the scope of the claims.
本発明の外用剤は、松樹皮抽出物、コラーゲンおよび成長因子を配合することを特徴とする。また、本発明の外用剤に配合される成長因子は、EGF(Epidermal Growth Factor)成分またはツバメの巣に含有されるEGF様成分であることを特徴とする。また、本発明の外用剤は、成長因子を、外用剤総重量に対し、0.0001〜0.5重量%配合していることを特徴とする。また、本発明の外用剤は、松樹皮抽出物を、成長因子1重量部に対し、0.01〜100重量部配合していることを特徴とする。更に、本発明の外用剤は、松樹皮抽出物を、外用剤総重量に対し、0.0001〜1重量%配合していることを特徴とする。 The external preparation of the present invention is characterized by blending a pine bark extract, collagen and a growth factor. The growth factor to be blended in the external preparation of the present invention is characterized by being an EGF (Epidmal Growth Factor) component or an EGF-like component contained in a swallow's nest. The external preparation of the present invention is characterized in that the growth factor is blended in an amount of 0.0001 to 0.5% by weight based on the total weight of the external preparation. Moreover, the external preparation of this invention is characterized by mix | blending 0.01-100 weight part of pine bark extracts with respect to 1 weight part of growth factors. Furthermore, the external preparation of the present invention is characterized in that the pine bark extract is blended in an amount of 0.0001 to 1% by weight based on the total weight of the external preparation.
(松樹皮抽出物について)
松樹皮抽出物としては、フランス海岸松(Pinus Martima)、カラマツ、クロマツ、アカマツ、ヒメコマツ、ゴヨウマツ、チョウセンマツ、ハイマツ、リュウキュウマツ、ウツクシマツ、ダイオウマツ、シロマツ、カナダのケベック地方のアネダ等の樹皮抽出物が好ましく用いられる。中でも、フランス海岸松の樹皮抽出物が好ましく用いられる。
(About pine bark extract)
The pine bark extract is extracted from the bark of French coastal pine (Pinus Martina), larch, black pine, red pine, Japanese black pine, pine pine, Korean pine, high pine, rhyukyu pine, Utsukushima, Japanese pine, white pine, Canada The product is preferably used. Among these, a bark extract of French coastal pine is preferably used.
フランス海岸松は、南仏の大西洋沿岸の一部に生育している海洋性松をいう。このフランス海岸松の樹皮は、フラボノイド類であるプロアントシアニジン(proanthocyanidin)を主要成分として含有する他に、有機酸及びその他の生理活性成分等を含有している。この主要成分であるプロアントシアニジンには、活性酸素を除去する強い抗酸化作用があることが知られている。 French coastal pine is a marine pine that grows on the Atlantic coast of southern France. The bark of French coastal pine contains organic acids and other physiologically active components in addition to proanthocyanidins, which are flavonoids, as main components. This main component, proanthocyanidins, is known to have a strong antioxidant action to remove active oxygen.
松樹皮抽出物は、上述の松の樹皮を水及び/又は有機溶媒で抽出して得られる。水を用いる場合には温水、または熱水が用いられる。抽出に用いる有機溶媒としては、メタノール、エタノール、1−プロパノール、2−プロパノール、1−ブタノール、2−ブタノール、ブタン、アセトン、ヘキサン、シクロヘキサン、プロピレングリコール、含水エタノール、含水プロピレングリコール、エチルメチルケトン、グリセリン、酢酸メチル、酢酸エチル、ジエチルエーテル、ジクロロメタン、食用油脂、1,1,1,2−テトラフルオロエタン、1,1,2−トリクロロエテン等の食品または薬剤の製造に許容され得る有機溶媒が好ましく用いられる。これらの水、有機溶媒は単独で用いてもよいし、組合わせて用いてもよい。特に、熱水、含水エタノール、含水プロピレングリコール等が好ましく用いられる。 The pine bark extract is obtained by extracting the above-mentioned pine bark with water and / or an organic solvent. When water is used, warm water or hot water is used. As an organic solvent used for extraction, methanol, ethanol, 1-propanol, 2-propanol, 1-butanol, 2-butanol, butane, acetone, hexane, cyclohexane, propylene glycol, hydrous ethanol, hydrous propylene glycol, ethyl methyl ketone, Organic solvents acceptable for the production of foods or drugs such as glycerin, methyl acetate, ethyl acetate, diethyl ether, dichloromethane, edible oils and fats, 1,1,1,2-tetrafluoroethane, 1,1,2-trichloroethene Preferably used. These water and organic solvents may be used alone or in combination. In particular, hot water, hydrous ethanol, hydrous propylene glycol and the like are preferably used.
松樹皮抽出物を松樹皮から抽出する方法については特に制限はないが、例えば、加温抽出法、超臨界流体抽出法などが用いられる。 The method for extracting the pine bark extract from the pine bark is not particularly limited, and for example, a warm extraction method, a supercritical fluid extraction method, or the like is used.
超臨界流体抽出法とは、物質の気液の臨界点(臨界温度、臨界圧力)を超えた状態の流体である超臨界流体を用いて抽出を行う方法である。超臨界流体としては、二酸化炭素、エチレン、プロパン、亜酸化窒素(笑気ガス)等が用いられるが、二酸化炭素が好ましく用いられる。 The supercritical fluid extraction method is a method of performing extraction using a supercritical fluid that is a fluid that exceeds the critical point (critical temperature, critical pressure) of a gas-liquid substance. As the supercritical fluid, carbon dioxide, ethylene, propane, nitrous oxide (laughing gas) or the like is used, and carbon dioxide is preferably used.
超臨界流体抽出法では、目的成分を超臨界流体によって抽出する抽出工程と、目的成分と超臨界流体を分離する分離工程とを行う。分離工程では、圧力変化による抽出分離、温度変化による抽出分離、吸着剤・吸収剤を用いた抽出分離のいずれを行ってもよい。 In the supercritical fluid extraction method, an extraction process for extracting a target component with a supercritical fluid and a separation process for separating the target component and the supercritical fluid are performed. In the separation step, any one of extraction separation by pressure change, extraction separation by temperature change, and extraction separation using an adsorbent / absorbent may be performed.
また、エントレーナー添加法による超臨界流体抽出を行ってもよい。この方法は、抽出流体に、例えば、エタノール、プロパノール、n−ヘキサン、アセトン、トルエン、その他の脂肪族低級アルコール類、脂肪族炭化水素類、芳香族炭化水素類、ケトン類を2〜20W/V%程度添加し、この流体を用いて超臨界流体抽出を行うことによって、OPC(oligomeric proanthocyanidin:オリゴメリック・プロアントシアニジン)、カテキン類などの目的とする抽出物の抽出溶媒に対する溶解度を飛躍的に上昇させる、あるいは分離の選択性を増強させる方法であり、効率的な松樹皮抽出物を得る方法である。 Moreover, you may perform supercritical fluid extraction by the entrainer addition method. In this method, for example, ethanol, propanol, n-hexane, acetone, toluene, other aliphatic lower alcohols, aliphatic hydrocarbons, aromatic hydrocarbons, and ketones are added to the extraction fluid in an amount of 2 to 20 W / V. %, And by performing supercritical fluid extraction using this fluid, the solubility of the target extract such as OPC (oligomeric proanthocyanidin) and catechins in the extraction solvent is dramatically increased. Or a method for enhancing the selectivity of separation, and obtaining an efficient pine bark extract.
超臨界流体抽出法は、比較的低い温度で操作できるため、高温で変質・分解する物質にも適用できるという利点、抽出流体が残留しないという利点、溶媒の循環利用が可能であるため、脱溶媒工程などが省略でき、工程がシンプルになるという利点がある。 Since the supercritical fluid extraction method can be operated at a relatively low temperature, it can be applied to substances that are altered or decomposed at high temperatures, the advantage that the extraction fluid does not remain, and the recycling of the solvent is possible. There is an advantage that the process can be omitted and the process becomes simple.
また、松樹皮からの抽出は、上述の抽出法以外に、液体二酸化炭素回分法、液体二酸化炭素還流法、超臨界二酸化炭素還流法等により行ってもよい。 Extraction from pine bark may be performed by a liquid carbon dioxide batch method, a liquid carbon dioxide reflux method, a supercritical carbon dioxide reflux method, or the like, in addition to the extraction method described above.
松樹皮からの抽出は、複数の抽出方法を組み合わせてもよい。複数の抽出方法を組み合わせることにより、種々の組成の松樹皮抽出物を得ることが可能となる。 For extraction from pine bark, a plurality of extraction methods may be combined. By combining a plurality of extraction methods, it becomes possible to obtain pine bark extracts having various compositions.
上述した抽出により得られた松樹皮抽出物は、限外濾過、あるいは吸着性担体(ダイヤイオンHP−20、Sephadex−LH20、キチンなど)を用いたカラム法またはバッチ法により精製を行うことが安全性の面から好ましい。 It is safe to purify the pine bark extract obtained by the above-described extraction by ultrafiltration or column method or batch method using an adsorptive carrier (Diaion HP-20, Sephadex-LH20, chitin, etc.). From the viewpoint of sex.
本発明の外用剤に配合される松樹皮抽出物は、具体的には、以下のような方法により調製されるが、これは例示であり、この方法に限定されない。 Specifically, the pine bark extract to be blended with the external preparation of the present invention is prepared by the following method, but this is illustrative and is not limited to this method.
フランス海岸松の樹皮1kgを、塩化ナトリウムの飽和水溶液3Lに入れ、100℃にて30分間抽出し、抽出液を得る(抽出工程)。その後、抽出液を濾過し、得られる不溶物を塩化ナトリウムの飽和溶液500mLで洗浄し、洗浄液を得る(洗浄工程)。この抽出液と洗浄液を合わせて、松樹皮の粗抽出液を得る。 1 kg of French coastal pine bark is placed in 3 L of a saturated aqueous solution of sodium chloride and extracted at 100 ° C. for 30 minutes to obtain an extract (extraction process). Thereafter, the extract is filtered, and the resulting insoluble matter is washed with 500 mL of a saturated solution of sodium chloride to obtain a washing solution (washing step). The extract and washing solution are combined to obtain a crude extract of pine bark.
次いで、この粗抽出液に酢酸エチル250mLを添加して分液し、酢酸エチル層を回収する工程を5回繰り返す。回収した酢酸エチル溶液を合わせて、無水硫酸ナトリウム200gに直接添加して脱水する。その後、この酢酸エチル溶液を濾過し、濾液を、元の5分の1の量になるまで減圧濃縮する。そして、濃縮された酢酸エチル溶液を2Lのクロロホルムに注ぎ、攪拌して得られる沈殿物を濾過して回収する。その後、この沈殿物を酢酸エチル100mLに溶解した後、再度1Lのクロロホルムに添加して洗浄するため沈殿させる工程を2回繰り返す。この方法により、例えば、重合度が2〜4のプロアントシアニジンを20重量%以上含有し、かつカテキン類を5重量%以上含有する、約5gの松樹皮抽出物が得られる。ここで、抽出物中の特定成分の含有量は、抽出物の乾燥質量を基準とした値であり、以下においても同様である。 Next, 250 mL of ethyl acetate is added to the crude extract and the phases are separated, and the process of recovering the ethyl acetate layer is repeated 5 times. The collected ethyl acetate solutions are combined and added directly to 200 g of anhydrous sodium sulfate for dehydration. The ethyl acetate solution is then filtered and the filtrate is concentrated in vacuo until the original volume is reduced to one fifth. Then, the concentrated ethyl acetate solution is poured into 2 L of chloroform, and the precipitate obtained by stirring is collected by filtration. Thereafter, the precipitate is dissolved in 100 mL of ethyl acetate, and then added again to 1 L of chloroform and precipitated for washing twice. By this method, for example, about 5 g of pine bark extract containing 20% by weight or more of proanthocyanidins having a degree of polymerization of 2 to 4 and containing 5% by weight or more of catechins is obtained. Here, the content of the specific component in the extract is a value based on the dry mass of the extract, and the same applies to the following.
松樹皮抽出物は、主な有効成分の一つとして、プロアントシアニジンを含有する。プロアントシアニジンは、フラバン−3−オールおよび/またはフラバン−3,4−ジオールを構成単位とする重合度が2以上の縮重合体からなる化合物群をいう。プロアントシアニジンは、植物が作り出す強力な抗酸化物質であり、植物の葉、樹皮、果実の皮および種に集中的に含まれている。このプロアントシアニジンは、ヒトの体内では生成することができない物質である。 Pine bark extract contains proanthocyanidins as one of the main active ingredients. Proanthocyanidins refer to a group of compounds consisting of a condensation polymer having a degree of polymerization of 2 or more, with flavan-3-ol and / or flavan-3,4-diol as a structural unit. Proanthocyanidins are powerful antioxidants produced by plants and are intensively contained in plant leaves, bark, fruit peels and seeds. This proanthocyanidin is a substance that cannot be produced in the human body.
このプロアントシアニジンを含有する松樹皮抽出物を摂取した場合は、優れた脂質代謝改善効果が得られる。松樹皮抽出物には、プロアントシアニジンとして重合度が2以上の縮重合体が含有され、さらにカテキンなどが含有される。特に、重合度が低い縮重合体が多く含まれるプロアントシアニジンが好ましく用いられる。重合度の低い縮重合体としては、重合度が2〜30の縮重合体(2〜30量体)が好ましく、重合度が2〜10の縮重合体(2〜10量体)がより好ましく、重合度が2〜4の縮重合体(2〜4量体)がさらに好ましい。重合度が2〜4の縮重合体(2〜4量体)のプロアントシアニジンは、特に体内に吸収されやすい。本明細書では、上記の重合度が2〜4の重合体を、オリゴメリック・プロアントシアニジン(oligomeric proanthocyanidin、以下「OPC」という)という。 When a pine bark extract containing proanthocyanidins is ingested, an excellent effect of improving lipid metabolism is obtained. The pine bark extract contains a condensed polymer having a polymerization degree of 2 or more as proanthocyanidins, and further contains catechin and the like. In particular, proanthocyanidins containing a large amount of a condensation polymer having a low degree of polymerization are preferably used. The condensation polymer having a low polymerization degree is preferably a condensation polymer having a polymerization degree of 2 to 30 (2 to 30 mer), more preferably a condensation polymer having a polymerization degree of 2 to 10 (2 to 10 mer). Further, a condensation polymer (2 to 4 mer) having a polymerization degree of 2 to 4 is more preferable. Proanthocyanidins that are condensation polymers having a degree of polymerization of 2 to 4 (2 to 4 mer) are particularly easily absorbed into the body. In the present specification, the polymer having a degree of polymerization of 2 to 4 is referred to as oligomeric proanthocyanidin (hereinafter referred to as “OPC”).
松樹皮抽出物は、2〜4量体のプロアントシアニジン(即ち、OPC)を、松樹皮抽出物の乾燥質量基準で、15重量%以上、より好ましくは20重量%以上、さらに好ましくは30重量%以上含有する抽出物であることがより好ましい。 The pine bark extract contains 2-4 mer of proanthocyanidins (ie, OPC), based on the dry mass of the pine bark extract, 15% by weight or more, more preferably 20% by weight or more, and further preferably 30% by weight. More preferably, it is an extract containing the above.
また、松樹皮抽出物は、5量体以上のプロアントシアニジンを、松樹皮抽出物の乾燥質量基準で、10重量%以上、より好ましくは15重量%以上含有する抽出物であることが好ましい。 Further, the pine bark extract is preferably an extract containing pentamer or more proanthocyanidins in an amount of 10% by weight or more, more preferably 15% by weight or more based on the dry mass of the pine bark extract.
松樹皮抽出物には、さらにカテキン(catechin)類が含有され得る。松樹皮抽出物におけるカテキン類の含有量は、松樹皮抽出物の乾燥質量基準で、好ましくは5重量%以上であり、より好ましくは10重量%以上である。 The pine bark extract may further contain catechins. The content of catechins in the pine bark extract is preferably 5% by weight or more, more preferably 10% by weight or more, based on the dry mass of the pine bark extract.
カテキン類は、上述した抽出方法によって、プロアントシアニジン(例えば、OPC)と共に抽出され得る。カテキン類とは、ポリヒドロキシフラバン−3−オールの総称である。カテキン類としては、(+)−カテキン(狭義のカテキンと呼ばれる)、(−)−エピカテキン、(+)−ガロカテキン、(−)−エピガロカテキン、エピガロカテキンガレート、エピカテキンガレート、アフゼレキンなどが知られている。 Catechins can be extracted together with proanthocyanidins (for example, OPC) by the extraction method described above. Catechin is a general term for polyhydroxyflavan-3-ol. As catechins, (+)-catechin (referred to as catechin in a narrow sense), (−)-epicatechin, (+)-gallocatechin, (−)-epigallocatechin, epigallocatechin gallate, epicatechin gallate, afzelechin, etc. It has been known.
松樹皮抽出物からは、上述の(+)−カテキンの他、ガロカテキン、アフゼレキン、ならびに(+)−カテキンまたはガロカテキンの3−ガロイル誘導体が単離されている。カテキン類には、発癌抑制作用、活性酸素やフリーラジカルの消去作用、および抗酸化作用などがあることが知られている。また、カテキン類には、血糖の上昇を抑制する抗糖尿病効果があることが知られている。カテキン類は、単独では水溶性が乏しく、その生理活性が低いが、OPCの存在下では、水溶性が増すと同時に活性化する性質がある。従って、カテキン類はOPCと共に存在することで効果的に作用する。 In addition to the above (+)-catechin, gallocatechin, afzelekin, and (+)-catechin or 3-galloyl derivatives of gallocatechin have been isolated from the pine bark extract. Catechins are known to have a carcinogenic inhibitory effect, an active oxygen and free radical scavenging effect, and an antioxidant effect. In addition, catechins are known to have an antidiabetic effect that suppresses an increase in blood sugar. Catechins are poor in water solubility by themselves and have low physiological activity, but in the presence of OPC, catechins have the property of being activated at the same time as water solubility increases. Therefore, catechins work effectively when present together with OPC.
カテキン類は、松樹皮抽出物に、5重量%以上含有されていることが好ましい。また、OPCを20重量%以上、かつ5量体以上のプロアントシアニジンを10重量%以上含有する松樹皮抽出物に、カテキン類が5重量%以上含有されていることがより好ましい。例えば、松樹皮抽出物のカテキン類含有量が5重量%未満の場合、含有量が5重量%以上となるようにカテキン類を添加してもよい。すなわち、カテキン類を5重量%以上含有し、OPCを20重量%以上含有し、かつ5量体以上のプロアントシアニジンを10重量%以上含有する松樹皮抽出物を用いることがさらに好ましい。 The catechins are preferably contained in the pine bark extract at 5% by weight or more. More preferably, the pine bark extract containing 20% by weight or more of OPC and 10% by weight or more of proanthocyanidins having a pentamer or more contains 5% by weight or more of catechins. For example, when the catechin content of the pine bark extract is less than 5% by weight, the catechins may be added so that the content is 5% by weight or more. That is, it is more preferable to use a pine bark extract containing 5% by weight or more of catechins, 20% by weight or more of OPC, and 10% by weight or more of proanthocyanidins of pentamer or more.
(コラーゲンについて)
本発明の外用剤に配合されるコラーゲンは、動物の生体を構成する繊維状の硬質蛋白の総称及び、これを加水分解して得られる可溶性蛋白(コラーゲンペプチド)や、コラーゲン分子をプロテアーゼで処理し、テロペプチド部分を取り除いたアテロコラーゲンを含む概念であり、基源となる動物は陸上動物、水棲動物を問わない。具体的な基源となる動物としては、牛、豚、羊などの陸上動物、魚類などの水棲動物などが好ましい。これらの動物の骨格蛋白を水性担体で抽出したり、プロテアーゼなどで加水分解した後、可溶性部分を抽出したもの等が好ましく例示できる。特に好ましいものは、魚類を基源とし、それを加水分解し、可溶性にしたものである。又、好ましい分子量は、平均分子量が3000〜100000である。このような平均分子量のコラーゲンを得るためには、コラーゲンを加水分解することによって分子サイズを小さくし、所望により限外濾過などにより、分子量分布を調整することが好ましい。なお、この様なコラーゲンは、既に外用剤(例えば、化粧品)として利用可能な市販品が存在するため、それを使用してもよい。
(About collagen)
Collagen blended in the preparation for external use of the present invention is a general term for fibrous hard proteins constituting the living body of animals, soluble protein (collagen peptide) obtained by hydrolyzing this, and collagen molecules treated with protease. The concept includes atelocollagen from which the telopeptide moiety has been removed, and the base animal may be a land animal or aquatic animal. As the specific source animal, terrestrial animals such as cattle, pigs and sheep, and aquatic animals such as fish are preferable. Preferred examples include those obtained by extracting the skeletal proteins of these animals with an aqueous carrier or hydrolyzing with a protease or the like and then extracting the soluble portion. Particularly preferred are those based on fish, hydrolyzed and solubilized. Moreover, as for a preferable molecular weight, an average molecular weight is 3000-100,000. In order to obtain such an average molecular weight collagen, it is preferable to reduce the molecular size by hydrolyzing the collagen, and to adjust the molecular weight distribution by ultrafiltration if desired. In addition, since there exists a commercial item which can be utilized as an external preparation (for example, cosmetics) already, you may use such collagen.
(成長因子について)
本発明の外用剤に配合される成長因子とは、体内において、特定の細胞の増殖や分化を促進する内因性のタンパク質の総称である。本発明の外用剤に配合される成長因子としては、前述の通り、EGF、FGF、TGF、IGF、HGF、EGF様成分を例示することができる。
(About growth factors)
The growth factor blended in the external preparation of the present invention is a general term for endogenous proteins that promote proliferation and differentiation of specific cells in the body. As a growth factor mix | blended with the external preparation of this invention, as mentioned above, EGF, FGF, TGF, IGF, HGF, an EGF-like component can be illustrated.
なお、上述したEGF様成分としては、ツバメの巣に含有されるEGF様成分を例示することができる。このEGF様成分については、外用剤として利用可能なツバメの巣が既に存在するため、このツバメの巣から予めEGF様成分を抽出した後、これを外用剤に配合してもよい。なお、EGF様成分のみを抽出する以外にも、ツバメの巣からエキスを抽出し、そのツバメの巣エキスを外用剤に配合してもよい。 In addition, as an EGF-like component mentioned above, the EGF-like component contained in a swallow's nest can be illustrated. For this EGF-like component, there is already a swallow's nest that can be used as an external preparation. Therefore, after extracting the EGF-like component from this swallow's nest in advance, it may be added to the external preparation. In addition to extracting only the EGF-like component, an extract may be extracted from the swallow's nest and the swallow's nest extract may be blended in the external preparation.
(本発明の外用剤について)
本発明の外用剤は、松樹皮抽出物、コラーゲンおよび成長因子を配合している。
(About the external preparation of this invention)
The external preparation of the present invention contains a pine bark extract, collagen and a growth factor.
また、本発明の外用剤に配合する成長因子の量は特に制限はないが、外用剤総重量に対し、0.0001〜0.5重量%配合していることが好ましい。 Moreover, the amount of the growth factor to be blended in the external preparation of the present invention is not particularly limited, but is preferably 0.0001 to 0.5% by weight based on the total weight of the external preparation.
また、本発明の外用剤に配合する松樹皮抽出物の量は特に制限はないが、成長因子1重量部に対し、0.01〜100重量部配合していることが好ましく、更には、外用剤総重量に対し、0.001〜1重量%配合していることが好ましい。 The amount of the pine bark extract to be blended in the external preparation of the present invention is not particularly limited, but it is preferably 0.01 to 100 parts by weight with respect to 1 part by weight of the growth factor. It is preferable to add 0.001-1% by weight based on the total weight of the agent.
本発明の外用剤には、松樹皮抽出物、コラーゲン、成長因子の他に、外観、使用感および保存安定性をより向上させるために、必要に応じて、当業者が外用剤に通常用いる基剤および添加剤を含有しても良い。更に、本発明の外用剤の有する機能をより増強したり、補填したりする目的で、様々な助剤を添加することも可能である。 In addition to the pine bark extract, collagen, and growth factors, the external preparation of the present invention includes groups usually used by those skilled in the art for external preparations as necessary in order to further improve the appearance, feeling of use and storage stability. Agents and additives may be included. Furthermore, various auxiliary agents can be added for the purpose of enhancing or supplementing the function of the external preparation of the present invention.
なお、上述の基剤としては、グリセロール、エタノール、パラベン、またはブチレングリコールなどが挙げられる。また、上述の添加剤としては、賦形剤(シリコン系ポリマー)、香料、色素、保存剤(パラベンなど)、増粘剤(シリコン系ポリマー、アクリル系ポリマー、カルボキシビニル系ポリマーなど)、キレート剤(EDTAなど)、甘味料(スクラロースなど)、清涼剤(メントールなど)、防腐防黴剤(フェノキシエタノールなど)等が挙げられる。 Examples of the base include glycerol, ethanol, paraben, butylene glycol, and the like. The above-mentioned additives include excipients (silicon-based polymers), fragrances, pigments, preservatives (parabens, etc.), thickeners (silicon-based polymers, acrylic polymers, carboxyvinyl polymers, etc.), chelating agents. (Such as EDTA), sweeteners (such as sucralose), refreshing agents (such as menthol), antiseptic / antifungal agents (such as phenoxyethanol), and the like.
また、上述の助剤としては、例えば、他の薬効成分や他の油剤(リノール酸、リノレン酸、パルミチン酸、DHA、EPAなどの不飽和脂肪酸およびその誘導体や亜麻仁油、ヤシ油、ホホバ油、オリーブ油、スクワラン、スクワレン、馬油、コメヌカ油、ヒマシ油などの動植物より抽出された油およびその誘導体など)、保湿剤(コラーゲンまたはその分解物、カロットエキスなどの含まれるコラーゲン類似ペプチド、大豆ペプチド、アミノ酸、ヒアルロン酸などのムコ多糖類、コンドロイチンなどのアミノ酸、トレハロースなどの糖類、海藻類、アルギン酸、グルコマンナン、ペクチンなどの水溶性食物繊維、リン脂質など)、界面活性剤(レシチンや脂肪酸エステル、アミノ酸誘導体など)、紫外線吸収剤(酸化亜鉛や酸化チタンなど)、吸収促進剤等が挙げられる。 Examples of the auxiliary agent include other medicinal components and other oils (unsaturated fatty acids such as linoleic acid, linolenic acid, palmitic acid, DHA, EPA, and derivatives thereof, linseed oil, coconut oil, jojoba oil, Olive oil, squalane, squalene, horse oil, rice bran oil, castor oil and other oils and derivatives thereof, moisturizers (collagen or its degradation products, collagen-like peptides such as carrot extract, soy peptide, Amino acids, mucopolysaccharides such as hyaluronic acid, amino acids such as chondroitin, saccharides such as trehalose, seaweeds, water-soluble dietary fibers such as alginic acid, glucomannan, pectin, phospholipids, etc.), surfactants (lecithin and fatty acid esters, Amino acid derivatives), UV absorbers (such as zinc oxide and titanium oxide) Absorption enhancers, and the like.
上述の助剤の1つである薬効成分としては、ポリフェノール化合物、ビタミン剤(ビタミン類、ビタミン様作用因子、これらの塩または誘導体など)、抗炎症剤、細胞賦活剤、ホルモン剤などやこれらの効能を有する動植物由来の抽出物が挙げられる。 Medicinal components that are one of the above-mentioned adjuvants include polyphenol compounds, vitamins (vitamins, vitamin-like agents, salts or derivatives thereof), anti-inflammatory agents, cell activators, hormones, etc. The extract derived from animals and plants which has an effect is mentioned.
ポリフェノール化合物としては、例えば、カテコール、ガロカテキン、エピガロカテキン、ガロカテキンガレート、エピガロカテキンガレート、タンニン酸(ガロイル没食子酸)、ハマメリタンニン(1,5−ジガロイルハマメロース)、カフェー酸誘導体、および没食子酸が挙げられる。ポリフェノール化合物には、種々のピロガロールタンニン、カテコールタンニンなども含まれる。 Examples of the polyphenol compound include catechol, gallocatechin, epigallocatechin, gallocatechin gallate, epigallocatechin gallate, tannic acid (galloyl gallic acid), hamamelitannin (1,5-digalloyl hamamelose), caffeic acid derivative , And gallic acid. The polyphenol compound includes various pyrogallol tannins, catechol tannins and the like.
ビタミン剤としては、ビタミンA類(レチノール、レチナール、レチノイン酸、3−デヒドロレチノール、3−デヒドロレチナール、3−デヒドロレチノイン酸など);プロビタミンA類(α−カロテン、β−カロテン、γ−カロテン、クリプトキサンチンなど);ビタミンB群(チアミン(ビタミンB1)、リボフラビン(ビタミンB2)、ピリドキシン、ピリドキサール、ピリドキサミン(以上、ビタミンB6)、コバラミン(ビタミンB12)、ニコチン酸、ニコチンアミド、パントテン酸、ビオチン(ビタミンH)、葉酸(ビタミンM)など);アスコルビン酸(ビタミンC);ビタミンD類(エルゴカルシフェロール(ビタミンD2)、コレカルシフェノール(ビタミンD3)など)、プロビタミンD類(7−デヒドロコレステロール、エルゴステロールなど);ビタミンE類(α−トコフェノール、β−トコフェノール、γ−トコフェノール、δ−トコフェノール、α−トコトリエノール、β−トコトリエノール、γ−トコトリエノール、δ−トコトリエノールなど);ビタミンK類(フィロキノン(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)など)等が挙げられる。立体異性体や光学異性体を有するものについては、いずれの異性体も用いることができ、cis体およびtrans体混合物やセラミ体を用いることもできる。 As vitamin preparations, vitamin A (retinol, retinal, retinoic acid, 3-dehydroretinol, 3-dehydroretinal, 3-dehydroretinoic acid, etc.); provitamin A (α-carotene, β-carotene, γ-carotene) Vitamin B group (thiamin (vitamin B1), riboflavin (vitamin B2), pyridoxine, pyridoxal, pyridoxamine (above, vitamin B6), cobalamin (vitamin B12), nicotinic acid, nicotinamide, pantothenic acid, biotin (Vitamin H), folic acid (Vitamin M), etc .; Ascorbic acid (Vitamin C); Vitamin D (Ergocalciferol (Vitamin D2), Cholecalciphenol (Vitamin D3), etc.), Provitamin D (7-dehydro) Cholestero Vitamin E (α-tocophenol, β-tocophenol, γ-tocophenol, δ-tocophenol, α-tocotrienol, β-tocotrienol, γ-tocotrienol, δ-tocotrienol, etc.); vitamin K (Phylloquinone (vitamin K1), menaquinone (vitamin K2), menadione (vitamin K3), etc.) and the like. Any one having a stereoisomer or an optical isomer can be used, and a cis- and trans-isomer mixture or a ceramic body can also be used.
ビタミン様作用因子としては、リノール酸、リノレン酸、アラキドン酸などの必須脂肪酸(ビタミンF類);オロト酸(ビタミンB13)、カルチニン(ビタミンBT)、myo−イノシトール、コリン、ルチン、ヘスペリジン、エリオシトルリンなどのビタミンP類;メチオニンメチルスルホニウム(ビタミンU);パントテニルアルコール等が挙げられる。立体異性体や光学異性体を有するものについては、いずれの異性体も用いることができ、cis体およびtrans体混合物やセラミ体を用いることもできる。 Vitamin-like factors include essential fatty acids (vitamin Fs) such as linoleic acid, linolenic acid, and arachidonic acid; orotic acid (vitamin B13), carnitine (vitamin BT), myo-inositol, choline, rutin, hesperidin, and eriocitrulline Vitamin Ps such as methionine methylsulfonium (vitamin U); pantothenyl alcohol and the like. Any one having a stereoisomer or an optical isomer can be used, and a cis- and trans-isomer mixture or a ceramic body can also be used.
上述のビタミン類またはビタミン様作用因子の塩としては、ナトリウム塩、カリウム塩などのアルカリ金属塩;マグネシウム塩、カルシウム塩などのアルカリ土類金属塩;塩酸塩、硫酸塩、アンモニウム塩などの無機塩;乳酸塩、酢酸塩、トリエタノールアミン塩などの有機塩が挙げられる。上述のビタミン類またはビタミン様作用因子の誘導体としては、アルキルエステル、アルケニルエステル、アリールエステル、燐酸エステル、硫酸エステル、ホスファチジルエステル、グルコシド、ガラクトシド、マルトシド、ラクトシドなどの配糖体等が挙げられる。 Examples of the salts of vitamins or vitamin-like agents described above include alkali metal salts such as sodium salts and potassium salts; alkaline earth metal salts such as magnesium salts and calcium salts; inorganic salts such as hydrochlorides, sulfates and ammonium salts Organic salts such as lactate, acetate and triethanolamine salt; Derivatives of the above-mentioned vitamins or vitamin-like agents include glycosides such as alkyl esters, alkenyl esters, aryl esters, phosphate esters, sulfate esters, phosphatidyl esters, glucosides, galactosides, maltosides, and lactosides.
本発明においては、上述のビタミン類、ビタミン様作用因子、またはこれらの塩もしくは誘導体として動植物や藻類および微生物などより抽出、精製して得られた天然由来のものや、化学的もしくは酵素反応を利用して合成したものを用いることができる。 In the present invention, the above-mentioned vitamins, vitamin-like agents, or salts or derivatives thereof are naturally derived from animals and plants, algae, microorganisms, etc. and purified, or chemical or enzymatic reactions are used. Can be used.
細胞賦活剤としては、酵母抽出物および酵母培養上清、アスパラガス(Asparagus)属植物、アボカド(Pcrsca amcricana Mill.)、アロエ(Aloc)属植物、アンズ(Prunus armeniaca L. var. ansu Maxim.)、イチョウ(Ginkgo biloba L.)、イヌブナ(Fagus japonica Maxim.)、オオニンニク(Allium sativum L.f. pekinense Makino)、オタネニンジン(Panax ginseng C.A.Meyer)、カミツレ(Matricaria chamomilla L.)、キハダ(Phellodendron amurense Rupr.)およびその同属植物、キュウリ(Cucumis sativus L.)、キンセンカ(Calendula arvensis L.)、シイタケ(Lentinus edodes Sing.)、シナサルナシ(キウイ)(Actinidia chinensis Planch.)、スギナ(Equisetum arvense L.)、セイヨウトチノキ(Aesculus hippocastanum L.)、セイヨウニンニク(Allium sativum L.)、センブリ(Swertia japonica Makino)、タマサキツヅラフジ(Stephania cepharantha Hayata)、チシャ(レタス)(Lactuca sativa L.)、トウガラシ(Capsicum annuum L.)、トウキンセンカ(Calendula officinalis L.)、トチノキ(Aesculus turbinata Blume)、ニンジン(Daucus carota L.)、ブクリョウ(マツホド)(Poria cocos Wolf)、ブドウ(Vitis vinifera L.)、ブナ(Fagus crenata Blume)、ヘチマ(Luffa cylindrica M.Roemen)、ベニバナ(Carthamus tinctorius L.)、マンネンロウ(Rosmarinus officinalis L.)、ミカン(Citrus)属植物、ムクロジ(Sapindus mukurossi Gaertn.)、ムラサキ(Lithospermum officinale L. var. erythrorhizon Maxim.)、ユーカリノキ(Eucalyptus)属植物、ユリ(Lilium)属植物の各抽出物、ヒドロキシ脂肪酸およびその誘導体ならびにそれらの塩、核酸およびその関連物質、卵殻膜より抽出されたタンパク質および異性化糖の混合物などが挙げられる。細胞賦活剤は、1種単独でまたは2種以上を組み合わせて用いても良い。 Cell activators include yeast extract and yeast culture supernatant, Asparagus genus plant, Avocado (Pcrska amicricana Mill.), Aloe genus plant, Apricot (Prunus armenica L. var. Ansu Maxim.). Ginkgo biloba L., Fagus japonica Maxim., Allium sativum L. pekinense Makino, Panax ginseng C. A. Ginseng (Panax ginseng C.). (Phellodendron amurense Rupr.) And its related plants, cucumber (Cu umis sativus L.), calendula arvensis L., shiitake mushroom (Lentinus edodes Sing.), actinidia chinensis Planch., sugiena um. Garlic (Allium sativum L.), Sembria (Swartia japonica Makino), Tamazaki cephalantha Hayata, Tachi (Lactuca sativa um), L endula officinalis L., Japanese cypress (Aesculus turbinata Blume), carrot (Daucus carota l L), papaya (Pana cocoa Wolf), grape (Vitis vinifera L.), grape (Vitis vinifera L.) M. Roemen, safflower (Carthamus tinctorius L.), mannenro (Rosmarinus officinalis L.), Citrus genus plant, Sapindus mukurossi Gaertn. ), Murasaki (Lithosperum officinalale L. var. Erythrorhizon Maxim.), Eucalyptus plants, Lilyum plant extracts, hydroxy fatty acids and their derivatives, their salts, nucleic acids and related substances, eggshells Examples thereof include a mixture of protein and isomerized sugar extracted from a membrane. The cell activator may be used alone or in combination of two or more.
リン脂質もまた細胞賦活剤として用いることができる。リン脂質は、保湿効果もあるため有用である。リン脂質としては、ホスファチジルコリン、ホスファチジルエタノールアミン、ホスファチジルセリン、ホスファチジルイノシトール、ホスファチジルグリセロール、ジホスファチジルグリセロール(カルジオリピン)、ホスファチジン酸などのグリセロリン脂質、リゾホスファチジルコリン(リゾレシチン)、リゾホスファチジルエタノールアミン、リゾホスファチジルセリン、リゾホスファチジルイノシトール、リゾホスファチジルグリセロール、リゾホスファチジン酸などのリゾグリセロリン脂質、スフィンゴミエリンなどのスフィンゴリン脂質、及びこれらの水素添加物などが挙げられる。リン脂質は、例えば、大豆、卵黄など動植物から抽出、分離したり、あるいは化学的もしくは酵素的方法により合成することによって得ることができる。 Phospholipids can also be used as cell activators. Phospholipids are useful because they also have a moisturizing effect. Phospholipids include phosphatidylcholine, phosphatidylethanolamine, phosphatidylserine, phosphatidylinositol, phosphatidylglycerol, diphosphatidylglycerol (cardiolipin), glycerophospholipids such as phosphatidic acid, lysophosphatidylcholine (lysolecithin), lysophosphatidylethanolamine, lysophosphatidylserine, Examples thereof include lysoglycerophospholipids such as phosphatidylinositol, lysophosphatidylglycerol, and lysophosphatidic acid, sphingophospholipids such as sphingomyelin, and hydrogenated products thereof. Phospholipids can be obtained, for example, by extraction and separation from animals and plants such as soybeans and egg yolk, or synthesis by chemical or enzymatic methods.
抗炎症剤としては、コルチゾン、ヒドロコルチゾン、プレドニゾロン、メチルプレドニゾロン、デキサメタゾン、ベタメタゾン、トリアムシノロン、トリアムシノロンアセトニド、フルオシノロンアセトニド、フルオシノニド、ベクロメタゾン、これらの塩(リン酸塩、プロピオン酸塩、酢酸塩、コハク酸塩など)などのステロイド性抗炎症剤;サリチル酸、サリチル酸誘導体(アスピリン、サリチルアミド、エテンザミド、サリチル酸メチルなど)、インドール酢酸誘導体(インドメタシン、スリンダクなど)、ピラゾリジンジオン誘導体(フェニルブタゾン、オキシフェンブタゾンなど)、アントラニル酸誘導体(メフェナム酸、フルフェナム酸など)、プロピオン酸誘導体(イブプロフェン、ケトプロフェン、ナプロキセンなど)、フェニル酢酸誘導体(ジクロフェナック、フェンブフェン、ブフェキサマクなど)、ベンゾチアジン誘導体(ピロキシカムなど)などの非ステロイド性抗炎症剤;グリチルリチン酸またはその塩もしくは誘導体(グリチルリチン酸ジカリウム、グリチルリチン酸モノアンモニウムなど);グリチルレチン酸またはその塩もしくは誘導体(グリチルレチン酸ステアリル、ステアリン酸グリチルレチニル、3−サクシニルオキシグリチルレチン酸二ナトリウムなど);アズレン誘導体(グアイアズレン、グアイアズレンスルホン酸エチル、グアイアズレンスルホン酸ナトリウム、カマズレンなど);アラントイン;アロイン;アロエエモジン;シコニンまたはその誘導体(イソブチルシコニン、アセチルシコニン、イソバレリルシコニンなど);ギンセノシド(ギンセノシドRa1、ギンセノシドRa2、ギンセノシドRb1など);ギンセノシド誘導体(20−グルコギンセノシドRfなど);ペオニフロリン;ペオノールおよびその誘導体(ペオノシド、ペオノリド)等が挙げられる。 Anti-inflammatory agents include cortisone, hydrocortisone, prednisolone, methylprednisolone, dexamethasone, betamethasone, triamcinolone, triamcinolone acetonide, fluocinolone acetonide, fluocinonide, beclomethasone, salts thereof (phosphate, propionate, acetate, Steroidal anti-inflammatory agents such as succinate, etc .; salicylic acid, salicylic acid derivatives (such as aspirin, salicylamide, etenzaamide, methyl salicylate), indoleacetic acid derivatives (such as indomethacin, sulindac), pyrazolidinedione derivatives (phenylbutazone, Oxyphenbutazone), anthranilic acid derivatives (mefenamic acid, flufenamic acid, etc.), propionic acid derivatives (ibuprofen, ketoprofen, naproxen, etc.), Non-steroidal anti-inflammatory agents such as nylacetic acid derivatives (such as diclofenac, fenbufen, and bufexamac), benzothiazine derivatives (such as piroxicam); glycyrrhizic acid or salts or derivatives thereof (such as dipotassium glycyrrhizinate, monoammonium glycyrrhizinate); glycyrrhetinic acid or its Salts or derivatives (stearyl glycyrrhetinate, glycyrrhetinyl stearate, disodium 3-succinyloxyglycyrrhetinate, etc.); azulene derivatives (eg, guaiazulene, ethyl guaiazulene sulfonate, sodium guaiazulene sulfonate, camazulene); allantoin; aloin; aloe emodin; shikonin or Derivatives thereof (isobutyl shikonin, acetyl shikonin, isovaleryl shikonin, etc.); Senoshido (Ginsenoside Ra1, Ginsenoside Ra2, etc. ginsenoside Rb1); ginsenosides derivatives (20-glucoside Gin Seno glucoside Rf etc.); paeoniflorin; paeonol and its derivatives (Peonoshido, Peonorido) and the like.
また、抗炎症剤としては、植物抽出物も利用することができる。利用可能なものとしては、例えば、オウゴン(Scutellariae Radix)、カンゾウ(Glycyrrhizae Radix)、クジン(Sophorae Radix)、サイコ(Bupleuri Radix)、シャクヤク(Paeoniae Radix)、ショウマ(Cimicifugae Rhizoma)、タイソウ(Zizyphi Fructus)、チモ(Anemarrhenae Rhizoma)、ボタンピ(Moutan Cortex)、リュウタン(Gentianae Scabrae Radix)、レンギョウ(Forsythiae Fructus)等の抽出物が挙げられる。 Moreover, a plant extract can also be utilized as an anti-inflammatory agent. Examples of the available ones include Ogon (Scutellariae Radix), Licorice (Glycyrrhizae Radix), Kujin (Sophorae Radix), Psycho (Bupurei Radix), Zaku (Paeoniae Radix), Icium (Paeoniae Radiox), And extracts such as Timo (Anemarrhenae Rhizoma), Buttonpi (Moutan Cortex), Ryutan (Gentianae Scabrae Radix), Forsythiae Fructus and the like.
ホルモン剤としては、エストラジオールまたはその誘導体、植物性のホルモン様物質(例えば、ゲネスチンやダイゼンなどのイソフラボン類)が挙げられる。 Examples of the hormone agent include estradiol or a derivative thereof, and a plant hormone-like substance (for example, isoflavones such as genestin and daizen).
本発明の外用剤を口腔の粘膜などに適用する場合、必要に応じて、以下に列挙する成分が含有され得る。このような成分としては、例えば、ローヤルゼリー、プロポリス、ビタミン類(A、B1、B2、B6、B12、ナイアシン、C、D、E、K、葉酸、パントテン酸、ビオチン、これらの誘導体など)、ミネラル(鉄、マグネシウム、カルシウム、亜鉛など)、セレン、キチン、キトサン、レシチン、ポリフェノール(フラボノイド、これらの誘導体など)、カロテノイド(リコピン、アスタキサンチン、ゼアキサンチン、ルテインなど)、キサンチン誘導体(カフェインなど)、タンパク質またはペプチド(大豆タンパク、コラーゲン、エラスチン、シルク、これらの分解物など)、ムコ多糖類(ヒアルロン酸、コンドロイチン、デルマタン、ヘパラン、ヘパリン、ケタラン、これらの誘導体など)、アミノ糖(グルコサミン、アセチルグルコサミン、ガラクトサミン、アセチルガラクトサミン、ノイラミン酸、アセチルノイラミン酸、ヘキソサミン、それらの塩など)、アミノ酸(プロリン、グリシン、アルギニン、グルタミン酸など)、オリゴ糖(イソマルトオリゴ糖、環状オリゴ糖など)、リン脂質(ホスファチジルコリン、ホスファチジルセリンなど)、スフィンゴ脂質およびその誘導体(スフィンゴミエリン、セラミドなど)、含硫化合物(アリイン、セパエン、タウリン、グルタチオン、メチルスルホニルメタンなど)、リグナン類(セサミンなど)、真珠粉末、ゴレンシ抽出物、ザクロ種子抽出物、およびこれらを含有する動植物抽出物、根菜類(ショウガなど)などが挙げられる。特に、ムコ多糖類、アミノ糖、カロテノイド、タンパク質またはペプチド(特にコラーゲン、エラスチン、ラミニンおよびこれらの分解物)、アミノ酸、リン脂質、スフィンゴ脂質が好ましく含有され得る。 When applying the external preparation of the present invention to the mucous membrane of the oral cavity, the components listed below may be contained as necessary. Examples of such components include royal jelly, propolis, vitamins (A, B1, B2, B6, B12, niacin, C, D, E, K, folic acid, pantothenic acid, biotin, derivatives thereof, etc.), minerals (Iron, magnesium, calcium, zinc, etc.), selenium, chitin, chitosan, lecithin, polyphenols (flavonoids, derivatives thereof, etc.), carotenoids (lycopene, astaxanthin, zeaxanthin, lutein, etc.), xanthine derivatives (caffeine, etc.), proteins Or peptides (soy protein, collagen, elastin, silk, degradation products thereof), mucopolysaccharides (hyaluronic acid, chondroitin, dermatan, heparan, heparin, ketalan, derivatives thereof, etc.), amino sugars (glucosamine, acetyl group) Cosamine, galactosamine, acetylgalactosamine, neuraminic acid, acetylneuraminic acid, hexosamine, salts thereof, amino acids (proline, glycine, arginine, glutamic acid, etc.), oligosaccharides (isomalto-oligosaccharides, cyclic oligosaccharides, etc.), phospholipids (Phosphatidylcholine, phosphatidylserine, etc.), sphingolipids and their derivatives (sphingomyelin, ceramide, etc.), sulfur-containing compounds (eg, alliin, sepaene, taurine, glutathione, methylsulfonylmethane), lignans (sesamin, etc.), pearl powder, gorenshi Examples thereof include extracts, pomegranate seed extracts, animal and plant extracts containing these, root vegetables (such as ginger), and the like. In particular, mucopolysaccharides, amino sugars, carotenoids, proteins or peptides (particularly collagen, elastin, laminin and their degradation products), amino acids, phospholipids and sphingolipids can be preferably contained.
本発明の外用剤は、経皮投与および経粘膜投与のために、皮膚または粘膜(口腔内粘膜を含む)に適用可能である任意の形態をとり得る。本発明の外用剤の剤形は、例えば、ローション剤、乳剤、ゲル剤、クリーム剤、軟膏剤、粉末剤、顆粒剤、錠剤などにすることができる。本発明の外用剤は、化粧品、医薬品、医薬部外品、トイレタリー用品、口腔用製剤などとして使用できる。これらは、必要に応じて当業者が通常用いる成分を含有し、当業者が通常用いる方法に従って調製され得る。 The external preparation of the present invention can take any form applicable to the skin or mucosa (including oral mucosa) for transdermal administration and transmucosal administration. The dosage form of the external preparation of the present invention can be, for example, a lotion, emulsion, gel, cream, ointment, powder, granule, tablet and the like. The external preparation of the present invention can be used as cosmetics, pharmaceuticals, quasi drugs, toiletries, oral preparations and the like. These contain components usually used by those skilled in the art, if necessary, and can be prepared according to methods usually used by those skilled in the art.
化粧品の場合、例えば、洗浄用化粧料、基礎化粧料、仕上げ化粧料、頭髪用化粧料として利用することもできる。極性水と有効成分とを予め混合した後、当業者が通常用いる成分を添加することによって、有効成分の効果を高めた化粧料を得ることができる。洗浄用化粧料としては、洗顔剤、石鹸、シャンプー、ヘアリンス、トリートメント、ボディシャンプーなどが挙げられる。基礎化粧料としては、化粧水、化粧クリーム、乳液、パックなどが挙げられる。仕上げ用化粧料としては、ファンデーション、白粉、口紅、リップグロス、頬紅、アイシャドーなどが挙げられる。医薬品としては、育毛剤、水性軟膏、油性軟膏、目薬、アイウォッシュ、シップ、ゲルなどが挙げられる。口腔へ適用する口腔用製剤としては、歯磨き剤、マウスウォッシュ、スプレー、トローチなどが挙げられる。 In the case of cosmetics, for example, it can also be used as a cleaning cosmetic, a basic cosmetic, a finishing cosmetic, and a hair cosmetic. After mixing polar water and an active ingredient beforehand, the cosmetics which improved the effect of the active ingredient can be obtained by adding the ingredient normally used by those skilled in the art. Examples of cleansing cosmetics include face wash, soap, shampoo, hair rinse, treatment, body shampoo and the like. Examples of basic cosmetics include lotions, cosmetic creams, milky lotions, packs and the like. Examples of the finishing cosmetic include foundation, white powder, lipstick, lip gloss, blusher, and eye shadow. Examples of the pharmaceutical include hair restorer, aqueous ointment, oily ointment, eye drops, eye wash, ship, gel and the like. Examples of oral preparations to be applied to the oral cavity include dentifrices, mouthwashes, sprays, and troches.
本発明の外用剤は、経皮投与および経粘膜投与のために、皮膚または粘膜(口腔内粘膜を含む)に適用可能である。本発明の外用剤は、上述したような形態とされ、その形態での投与または適用に通常用いられる手順(例えば、塗布、口腔内での溶解など)に従って、個体に投与または適用され得る。 The external preparation of the present invention can be applied to skin or mucosa (including oral mucosa) for transdermal administration and transmucosal administration. The external preparation of the present invention is in the form as described above, and can be administered or applied to an individual according to a procedure usually used for administration or application in that form (for example, application, dissolution in the oral cavity, etc.).
以下、本発明の実施例について説明する。なお、本発明は、実施例に限定して解釈されるものではなく、特許請求の範囲における記載の範囲内で種々の変更が可能である。 Examples of the present invention will be described below. Note that the present invention is not construed as being limited to the examples, and various modifications can be made within the scope of the claims.
(外用剤を使用した肌水分量測定試験)
松樹皮抽出物、コラーゲンおよびEGFを配合した外用剤(本実施例においては、以後、「試験外用剤」と称す)について、比較例と共に、肌の水分量を測定する試験(肌水分量測定試験)を実施し、この試験外用剤の優位性について評価を行った。
(Skin moisture measurement test using external preparation)
Test for measuring the moisture content of the skin with a comparative example (skin moisture content measurement test) for an external preparation containing pine bark extract, collagen and EGF (hereinafter referred to as “test external preparation” in this example) And the superiority of this test external preparation was evaluated.
肌水分量測定試験を実施する前に、まず、表1に示す試験外用剤および比較例1〜4の計5種類の溶液を調製した。具体的には、試験外用剤として、松樹皮抽出物の粉末(商品名:フラバンジェノール、東洋新薬製(「フラバンジェノール」は株式会社東洋新薬の登録商標))、加水分解したコラーゲンの粉末、EGFの粉末および純水を混合した。このとき、試験外用剤全体に対して、フラバンジェノール(登録商標)を0.01重量%配合し、コラーゲンを0.1重量%配合し、EGFを0.0001重量%配合すると共に、残部を純水とした溶液を調製した。 Before carrying out the skin moisture content measurement test, first, five types of solutions including test external preparations and Comparative Examples 1 to 4 shown in Table 1 were prepared. Specifically, pine bark extract powder (trade name: Flavangenol, manufactured by Toyo Shinyaku Co., Ltd. ("Flavengenol" is a registered trademark of Toyo Shinyaku Co., Ltd.)), hydrolyzed collagen powder , EGF powder and pure water were mixed. At this time, 0.01% by weight of Flavangenol (registered trademark), 0.1% by weight of collagen, 0.0001% by weight of EGF, 0.0001% by weight of EGF, and the remainder A solution in pure water was prepared.
また、比較例1として、フラバンジェノール(登録商標)の粉末、加水分解したコラーゲンの粉末および純水を混合した。このとき、混合溶液全体に対して、フラバンジェノール(登録商標)を0.01重量%配合し、コラーゲンを0.1重量%配合すると共に、残部を純水とした溶液を調製した。また、比較例2として、フラバンジェノール(登録商標)の粉末、EGFの粉末および純水を混合した。このとき、混合溶液全体に対して、フラバンジェノール(登録商標)を0.01重量%配合し、EGFを0.0001重量%配合すると共に、残部を純水とした溶液を調製した。更に、比較例3として、加水分解したコラーゲンの粉末、EGFの粉末および純水を混合した。このとき、混合溶液全体に対して、コラーゲンを0.1重量%配合し、EGFを0.0001重量%配合すると共に、残部を純水とした溶液を調製した。なお、比較例4としては、純水のみを用いた。 As Comparative Example 1, Flavangenol (registered trademark) powder, hydrolyzed collagen powder and pure water were mixed. At this time, 0.01% by weight of Flavangenol (registered trademark) was blended with 0.1% by weight of collagen with respect to the entire mixed solution, and a solution was prepared with the remainder being pure water. Further, as Comparative Example 2, Flavangenol (registered trademark) powder, EGF powder and pure water were mixed. At this time, 0.01% by weight of Flavangenol (registered trademark) was blended with 0.0001% by weight of EGF with respect to the whole mixed solution, and a solution was prepared with the balance being pure water. Furthermore, as Comparative Example 3, hydrolyzed collagen powder, EGF powder and pure water were mixed. At this time, 0.1% by weight of collagen and 0.0001% by weight of EGF were blended with respect to the entire mixed solution, and a solution was prepared with the balance being pure water. As Comparative Example 4, only pure water was used.
(表1)
(Table 1)
肌水分量測定試験は次の順序で実施した。まず、被験者2名の両腕の前腕部分を石鹸で洗浄し、タオルドライを行った。その後、被験者を安静な状態にした上で、室内にて15分間の馴化を行った。馴化中に、4cm×4cmの枠を合計5つ、両前腕部分に黒マジックで記載した。15分間の馴化終了後、枠内の水分量を測定装置を用いて測定した。 The skin moisture content measurement test was carried out in the following order. First, the forearm portions of both arms of two subjects were washed with soap and towel-dried. Thereafter, the subject was rested and acclimated for 15 minutes indoors. During acclimatization, a total of five 4 cm × 4 cm frames were written in black magic on both forearms. After 15 minutes of acclimatization, the amount of water in the frame was measured using a measuring device.
次に、試験外用剤および比較例1〜4の計5つの各溶液60μLを、それぞれ別々の枠内に滴下し、各溶液が枠内で均一に拡がるよう指にて塗り広げた。そして、被験者を室内にて安静な状態にした上で、塗布5分後と塗布30分後に、各枠内の水分量を測定装置を用いて測定した。なお、枠内の水分量の測定には、アイ・ビイ・エス株式会社製の表皮角層水分量測定装置:SKICON−200EXを用いた。また、室内環境は、温度26〜28℃、湿度40〜50%とした。 Next, 60 μL of a total of 5 solutions of the test external preparation and Comparative Examples 1 to 4 were dropped into separate frames, and spread with fingers so that each solution spread uniformly within the frame. And after making a test subject into a resting state indoors, after 5 minutes of application | coating and 30 minutes after application | coating, the moisture content in each frame was measured using the measuring apparatus. The moisture content in the frame was measured using a skin horn layer moisture content measuring device: SKICON-200EX manufactured by IBS Co., Ltd. The indoor environment was set to a temperature of 26 to 28 ° C. and a humidity of 40 to 50%.
各枠内の水分量の測定後、塗布5分後における水分量の変化度および塗布30分後における水分量の変化度を、次の式1を用いて算出した。 After measuring the moisture content in each frame, the degree of change in moisture content after 5 minutes of application and the degree of change in moisture content after 30 minutes of application were calculated using the following formula 1.
(式1)
水分量の変化度=溶液塗布後における水分量の測定値/溶液塗布前における水分量の測定値
(Formula 1)
Change in water content = measured value of water content after solution application / measured value of water content before solution application
なお、式1から分かるように、水分量の変化度が、1未満であれば、塗布後の水分量は塗布前の水分量未満であることを示し、1以上であれば、塗布後の水分量は塗布前の水分量以上であることを示している。特に、塗布後の水分量が塗布前の水分量よりも多いほど、即ち、溶液の保湿性が高いほど、式1では、水分量の変化度が1より大きくなる結果を示す。 As can be seen from Equation 1, if the degree of change in the amount of water is less than 1, it indicates that the amount of water after application is less than the amount of water before application. The amount indicates that it is equal to or greater than the amount of water before coating. In particular, the higher the amount of water after application than the amount of water before application, that is, the higher the moisture retention of the solution, the greater the degree of change in the amount of water than 1 in Equation 1.
溶液塗布5分後および溶液塗布30分後における水分量の変化度(各被験者の平均値)を表2に示す。 Table 2 shows the degree of change in water content (average value of each subject) after 5 minutes of solution application and 30 minutes of solution application.
(表2)
(Table 2)
表2に示す通り、溶液塗布5分後の水分量の変化度(平均値)については、比較例1〜4の値が、1.33〜1.44に留まるのに対し、試験外用剤の値は、1.81となっており、比較例1〜4と比べて、高い保湿性を示していることが分かる。 As shown in Table 2, for the degree of change (average value) in the amount of water 5 minutes after solution application, the values of Comparative Examples 1 to 4 remain at 1.33 to 1.44, whereas The value is 1.81, which indicates that the moisture retention is higher than those of Comparative Examples 1 to 4.
また、溶液塗布30分後の水分量の変化度(平均値)についても、表2に示す通り、比較例1〜4の値が、1.08〜1.15に留まるのに対し、試験外用剤の値は、1.29となっており、比較例1〜4と比べて、高い保湿性を持続できることが分かる。 Further, as to the degree of change (average value) in the amount of water after 30 minutes of application of the solution, as shown in Table 2, the values of Comparative Examples 1 to 4 remain at 1.08 to 1.15, whereas for external use in the test The value of the agent is 1.29, which indicates that high moisture retention can be maintained as compared with Comparative Examples 1 to 4.
このように、松樹皮抽出物、コラーゲンおよびEGFを配合した外用剤(試験外用剤)は、比較例1,3と比べて、具体的には、松樹皮抽出物およびコラーゲンを配合した溶液や、コラーゲンおよびEGFを配合した溶液と比べて、高い保湿性を持続することができる。この結果から、松樹皮抽出物、コラーゲンおよびEGFを配合した外用剤(試験外用剤)は、肌の保湿性を向上させる成分としてコラーゲンのみを配合した外用剤と比べて、肌の保湿性をより向上させることができる。 Thus, the external preparation (test external preparation) containing pine bark extract, collagen and EGF, compared to Comparative Examples 1 and 3, specifically, a solution containing pine bark extract and collagen, Compared with a solution containing collagen and EGF, high moisture retention can be maintained. From this result, external preparation (external preparation for test) containing pine bark extract, collagen and EGF has better skin moisturizing properties than external preparation containing only collagen as a component to improve skin moisture retention. Can be improved.
(実施例2:クリーム剤の製造)
以下の成分を配合して、クリームを調製した。
〈クリームの成分〉 配合量(重量%)
流動パラフィン 8.00
ジメチコン 5.00
ベヘニルアルコール 4.50
オクチルドデカノール 1.00
スクワラン 2.00
リンゴ酸ジイソステアリル 3.00
パルチミン酸イソプロピル 2.00
ステアリン酸グリセリル 4.00
加水分解コラーゲン(分子量:100000) 0.01
松樹皮抽出物 0.001
ツバメの巣エキス 0.10
グリセリン 5.00
1,3ブチレングリコール 4.00
キサンタンガム 0.30
メチルパラベン 0.30
純水 残部
(Example 2: Production of cream)
The following ingredients were blended to prepare a cream.
<Cream ingredients> Blending amount (% by weight)
Liquid paraffin 8.00
Dimethicone 5.00
Behenyl alcohol 4.50
Octyldodecanol 1.00
Squalane 2.00
Diisostearyl malate 3.00
Isopropyl palmitate 2.00
Glyceryl stearate 4.00
Hydrolyzed collagen (molecular weight: 100,000) 0.01
Pine bark extract 0.001
Swallow's nest extract 0.10
Glycerin 5.00
1,3 butylene glycol 4.00
Xanthan gum 0.30
Methylparaben 0.30
Pure water balance
上述の実施例2により、松樹皮抽出物、コラーゲンおよびツバメの巣エキス(EGF様成分)を配合したクリームの製造が可能であることが分かる。 From Example 2 described above, it can be seen that a cream containing a pine bark extract, collagen and swallow's nest extract (EGF-like component) can be produced.
(実施例3:化粧水の製造)
以下の成分を配合して、化粧水を調製した。
〈化粧水の成分〉 配合量(重量%)
PEG−60水添ヒマシ油 1.50
スクワラン 0.10
エタノール 8.00
加水分解コラーゲン(分子量:7000) 0.10
松樹皮抽出物 0.0001
FGF 0.0001
メチルパラベン 0.10
1,3ブチレングリコール 8.00
PEG−30 3.00
グリセリン 5.00
純水 残部
なお、FGFとは、Fibroblast Growth Factor、即ち、線維芽細胞成長(増殖)因子を示している。
(Example 3: Production of lotion)
The following ingredients were blended to prepare a lotion.
<Ingredients for lotion> Blending amount (% by weight)
PEG-60 hydrogenated castor oil 1.50
Squalane 0.10
Ethanol 8.00
Hydrolyzed collagen (molecular weight: 7000) 0.10
Pine bark extract 0.0001
FGF 0.0001
Methylparaben 0.10
1,3 butylene glycol 8.00
PEG-30 3.00
Glycerin 5.00
Pure water remainder FGF represents Fibroblast Growth Factor, that is, a fibroblast growth (proliferation) factor.
上述の実施例3より、松樹皮抽出物、コラーゲンおよびFGFを配合した化粧水の製造が可能であることが分かる。 From Example 3 described above, it can be seen that a lotion containing pine bark extract, collagen and FGF can be produced.
(実施例4:ボディローションの製造)
以下の成分を配合して、ボディローションを調製した。
〈ボディローションの成分〉 配合量(重量%)
PEG−60水添ヒマシ油 0.20
ホホバ油 0.05
エタノール 10.00
加水分解コラーゲン(分子量:3000) 0.10
松樹皮抽出物 0.03
TGF 0.001
メチルパラベン 0.10
1,3ブチレングリコール 3.00
PEG−30 1.00
グリセリン 1.00
純水 残部
なお、TGFとは、Transforming Growth Factor、即ち、トランスフォーミング成長因子を示している。
(Example 4: Production of body lotion)
A body lotion was prepared by blending the following ingredients.
<Body lotion ingredients> Formulation amount (wt%)
PEG-60 hydrogenated castor oil 0.20
Jojoba oil 0.05
Ethanol 10.00
Hydrolyzed collagen (molecular weight: 3000) 0.10
Pine bark extract 0.03
TGF 0.001
Methylparaben 0.10
1,3 butylene glycol 3.00
PEG-30 1.00
Glycerin 1.00
Purified water balance TGF indicates transforming growth factor, ie, transforming growth factor.
上述の実施例4より、松樹皮抽出物、コラーゲンおよびTGFを配合したボディローションの製造が可能であることが分かる。 From Example 4 described above, it can be seen that a body lotion containing pine bark extract, collagen and TGF can be produced.
(実施例5:洗顔パウダーの製造)
以下の成分を配合して、洗顔パウダーを調製した。
〈洗顔パウダーの成分〉 配合量(重量%)
ラウロイルグルタミン酸Na 25.00
ココイルグルタミン酸Na 13.00
シリカ 15.00
マルチトール 20.00
アルギン酸Na 2.00
加水分解コラーゲン(分子量:10000) 0.50
松樹皮抽出物 0.10
IGF 0.10
コーンスターチ 24.10
メチルパラベン 0.20
なお、IGFとは、Insulin−like Growth Factor、即ち、インスリン様成長因子を示している。
(Example 5: Production of face washing powder)
The following ingredients were blended to prepare a face washing powder.
<Ingredients of face washing powder> Blending amount (% by weight)
Lauroyl glutamate Na 25.00
Cocoyl glutamate Na 13.00
Silica 15.00
Maltitol 20.00
Alginate Na 2.00
Hydrolyzed collagen (molecular weight: 10,000) 0.50
Pine bark extract 0.10
IGF 0.10
Corn starch 24.10
Methylparaben 0.20
In addition, IGF has shown Insulin-like Growth Factor, ie, an insulin-like growth factor.
上述の実施例5により、松樹皮抽出物、コラーゲンおよびIGFを配合した洗顔パウダーの製造が可能であることが分かる。 From Example 5 described above, it can be seen that it is possible to produce a facial cleansing powder containing pine bark extract, collagen and IGF.
(実施例6:ファンデーションの製造)
以下の成分を配合して、ファンデーションを調製した。
〈ファンデーションの成分〉 配合量(重量%)
ラウロイルリジン 2.85
(タルク・ケイフッ化K)焼成物 45.00
タルク 12.00
酸化チタン 5.00
ポリメタクリル酸メチル 11.00
カオリン 5.00
シリカ 2.00
酸化亜鉛 10.00
黄酸化鉄 0.30
ベンガラ 0.20
黒酸化鉄 0.05
加水分解コラーゲン(分子量:3000) 1.00
松樹皮抽出物 1.00
HGF 0.50
メチルパラベン 0.10
ジメチコン 4.00
なお、HGFとは、Hepatocyte Growth Factor、即ち、肝細胞成長(増殖)因子を示している。
(Example 6: Production of foundation)
The following ingredients were blended to prepare a foundation.
<Foundation ingredients> Blending amount (% by weight)
Lauroyllysine 2.85
(Talc / silicic fluoride K) calcined product 45.00
Talc 12.00
Titanium oxide 5.00
Polymethyl methacrylate 11.00
Kaolin 5.00
Silica 2.00
Zinc oxide 10.00
Yellow iron oxide 0.30
Bengala 0.20
Black iron oxide 0.05
Hydrolyzed collagen (molecular weight: 3000) 1.00
Pine bark extract 1.00
HGF 0.50
Methylparaben 0.10
Dimethicone 4.00
In addition, HGF has shown hepatocyte growth factor, ie, hepatocyte growth (proliferation) factor.
上述の実施例6により、松樹皮抽出物、コラーゲンおよびHGFを配合したファンデーションの製造が可能であることが分かる。 From Example 6 described above, it can be seen that a foundation containing pine bark extract, collagen and HGF can be produced.
(実施例7:石鹸の製造)
以下の成分を配合して、石鹸を調製した。
〈石鹸の成分〉 配合量(重量%)
カリ石鹸素地 75.00
ミリスチン酸 1.50
パルミチン酸 1.00
ラウリン酸 1.00
塩化Na 0.50
グリセリン 2.00
加水分解コラーゲン(分子量:30000) 0.50
松樹皮抽出物 0.50
EGF 0.001
FGF 0.001
IGF 0.001
TGF 0.001
HGF 0.001
エチドロン酸4Na 0.05
純水 残部
(Example 7: Production of soap)
A soap was prepared by blending the following ingredients.
<Soap ingredients> Blending amount (% by weight)
Potash soap base 75.00
Myristic acid 1.50
Palmitic acid 1.00
Lauric acid 1.00
Na chloride 0.50
Glycerin 2.00
Hydrolyzed collagen (molecular weight: 30000) 0.50
Pine bark extract 0.50
EGF 0.001
FGF 0.001
IGF 0.001
TGF 0.001
HGF 0.001
Etidronic acid 4Na 0.05
Pure water balance
上述の実施例7により、松樹皮抽出物、コラーゲン、EGF、FGF、IGF、TGFおよびHGFを配合した石鹸の製造が可能であることが分かる。 From Example 7 described above, it can be seen that a soap containing pine bark extract, collagen, EGF, FGF, IGF, TGF and HGF can be produced.
このように、実施例1〜7によれば、成長因子については、外用剤総重量に対し、0.0001〜0.5重量%配合していることが分かる。また、松樹皮抽出物については、成長因子1重量部に対し、0.01〜100重量部を配合していることが分かる。加えて、松樹皮抽出物については、外用剤総重量に対し、0.001〜1重量%配合していることが分かる。 Thus, according to Examples 1-7, about growth factor, it turns out that 0.0001-0.5 weight% is mix | blended with respect to the external preparation total weight. Moreover, about a pine bark extract, it turns out that 0.01-100 weight part is mix | blended with respect to 1 weight part of growth factors. In addition, it can be seen that the pine bark extract is blended in an amount of 0.001 to 1% by weight based on the total weight of the external preparation.
以上、実施例に基づき本発明を説明したが、本発明は上述した実施例に何ら限定されるものではなく、本発明の趣旨を逸脱しない範囲内で種々の改良変更が可能であることは容易に推察できるものである。 The present invention has been described above based on the embodiments. However, the present invention is not limited to the above-described embodiments, and various modifications and changes can be easily made without departing from the spirit of the present invention. Can be inferred.
上述した肌水分量測定試験(実施例1)においては、試験外用剤に配合される成長因子としてEGFを用いたが、成長因子として、実施例2に示すように、ツバメの巣に含有されるEGF様成分を用いた場合においても、実施例1における試験外用剤と同様の結果となることは容易に推察できる。これは、ツバメの巣に含有されるEGF様成分が、体内においてEGFと同様の作用を奏することによる。 In the skin moisture content measurement test (Example 1) described above, EGF was used as a growth factor to be blended with the test external preparation, but as a growth factor, it is contained in the swallow's nest as shown in Example 2. Even when an EGF-like component is used, it can be easily inferred that the same result as that of the test external preparation in Example 1 is obtained. This is because the EGF-like component contained in the swallow's nest exhibits the same action as EGF in the body.
本発明の外用剤は、松樹皮抽出物、コラーゲンおよび成長因子(特に、EGFまたはEGF様成分)を配合しているので、肌の保湿性を向上させる成分としてコラーゲンのみを配合した外用剤と比較して、肌の保湿性をより向上させることができる。よって、肌の保湿性をより向上させることが必要な産業分野での利用が可能である。 Since the external preparation of the present invention contains a pine bark extract, collagen and a growth factor (especially EGF or EGF-like component), it is compared with an external preparation containing only collagen as a component for improving the moisture retention of the skin. And the moisture retention of skin can be improved more. Therefore, it can be used in industrial fields where it is necessary to further improve the moisture retention of the skin.
Claims (6)
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KR101469797B1 (en) * | 2014-07-22 | 2014-12-12 | 엔프라니 주식회사 | Cosmetic composition for anti-aging containing swallow's nest extract made by using colloidal gold solution as a solvent |
JP2015086160A (en) * | 2013-10-30 | 2015-05-07 | 株式会社東洋新薬 | Moisturizing agent, rough and dry skin improving agent, horny layer moisture content increasing agent, blood flow improving agent, and improving agent of skin dullness, dark circles, or gloss |
JP2016130230A (en) * | 2015-01-15 | 2016-07-21 | 株式会社東洋新薬 | SKIN BARRIER FUNCTION IMPROVING AGENT, INTERCELLULAR ADHESION STRUCTURE FORMATION PROMOTER, TIGHT JUNCTION FORMATION PROMOTER, TRPV4 ACTIVATOR, INTRACELLULAR Ca CONCENTRATION INCREASING ENHANCER, AND SEBUM PRODUCTION PROMOTER |
JP2018024625A (en) * | 2016-08-12 | 2018-02-15 | 株式会社東洋新薬 | Silk peptide-containing composition |
WO2024241430A1 (en) * | 2023-05-22 | 2024-11-28 | プレミアアンチエイジング株式会社 | External preparation for skin |
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JP2015086160A (en) * | 2013-10-30 | 2015-05-07 | 株式会社東洋新薬 | Moisturizing agent, rough and dry skin improving agent, horny layer moisture content increasing agent, blood flow improving agent, and improving agent of skin dullness, dark circles, or gloss |
KR101469797B1 (en) * | 2014-07-22 | 2014-12-12 | 엔프라니 주식회사 | Cosmetic composition for anti-aging containing swallow's nest extract made by using colloidal gold solution as a solvent |
JP2016130230A (en) * | 2015-01-15 | 2016-07-21 | 株式会社東洋新薬 | SKIN BARRIER FUNCTION IMPROVING AGENT, INTERCELLULAR ADHESION STRUCTURE FORMATION PROMOTER, TIGHT JUNCTION FORMATION PROMOTER, TRPV4 ACTIVATOR, INTRACELLULAR Ca CONCENTRATION INCREASING ENHANCER, AND SEBUM PRODUCTION PROMOTER |
JP2018024625A (en) * | 2016-08-12 | 2018-02-15 | 株式会社東洋新薬 | Silk peptide-containing composition |
WO2024241430A1 (en) * | 2023-05-22 | 2024-11-28 | プレミアアンチエイジング株式会社 | External preparation for skin |
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