JP6242037B2 - Oil-in-water emulsified skin cosmetic - Google Patents
Oil-in-water emulsified skin cosmetic Download PDFInfo
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- JP6242037B2 JP6242037B2 JP2012059687A JP2012059687A JP6242037B2 JP 6242037 B2 JP6242037 B2 JP 6242037B2 JP 2012059687 A JP2012059687 A JP 2012059687A JP 2012059687 A JP2012059687 A JP 2012059687A JP 6242037 B2 JP6242037 B2 JP 6242037B2
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- KDYFGRWQOYBRFD-UHFFFAOYSA-L succinate(2-) Chemical compound [O-]C(=O)CCC([O-])=O KDYFGRWQOYBRFD-UHFFFAOYSA-L 0.000 description 1
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- 239000005720 sucrose Substances 0.000 description 1
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- DZKXJUASMGQEMA-UHFFFAOYSA-N tetradecyl tetradecanoate Chemical compound CCCCCCCCCCCCCCOC(=O)CCCCCCCCCCCCC DZKXJUASMGQEMA-UHFFFAOYSA-N 0.000 description 1
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Images
Landscapes
- Cosmetics (AREA)
Description
本発明は、使用感に優れた皮膚化粧料に関する。さらに詳しくは、肌へののびとなじみが良好で、べたつきがなく、エモリエント感、はり感等の使用感に極めて優れた水中油型乳化皮膚化粧料に関する。 The present invention relates to a skin cosmetic excellent in use feeling. More specifically, the present invention relates to an oil-in-water emulsified skin cosmetic that has good spread and familiarity to the skin, is non-sticky, and is extremely excellent in use feeling such as emollient feeling and stickiness.
従来、化粧料の増粘方法として、キサンタンガム等の多糖類、ポリアクリル酸等の親水性合成高分子、ベントナイト等の粘土鉱物などを増粘剤として用いる方法が知られている。 Conventionally, as a thickening method for cosmetics, a method using a polysaccharide such as xanthan gum, a hydrophilic synthetic polymer such as polyacrylic acid, a clay mineral such as bentonite, or the like as a thickening agent is known.
しかしながら、キサンタンガム等の多糖類を増粘剤として用いた場合、薬剤成分や塩類を同時配合した系での安定性は優れるものの、べたつき感がするなど使用性の面において不具合があった。また、ポリアクリル酸等の親水性合成高分子を用いた場合、べたつき感がなく、さっぱり感が得られ、使用性が良好であるものの、耐塩性、耐イオン性が低いため、薬剤成分や塩類を多配合した場合、系の粘度低下等を引き起こすという不具合があった。さらに、ベントナイト等の粘土鉱物を増粘剤として用いた場合、きしみ感が感じられるなど使用性の点で問題があった。 However, when a polysaccharide such as xanthan gum is used as a thickening agent, although stability in a system in which a drug component and a salt are simultaneously blended is excellent, there is a problem in usability such as a sticky feeling. In addition, when a hydrophilic synthetic polymer such as polyacrylic acid is used, there is no stickiness, a refreshing feeling is obtained, and the usability is good, but since salt resistance and ion resistance are low, drug components and salts When a large amount of is added, there is a problem that the viscosity of the system is lowered. Furthermore, when clay minerals such as bentonite are used as a thickener, there is a problem in terms of usability such as a squeaky feeling.
一方、優れた増粘効果を有する水溶性増粘剤として、疎水変性ポリエーテルウレタン(会合性高分子)からなる増粘剤が開発され(特許文献1)、化粧料に利用されている(特許文献2〜3)。すなわち、特許文献2では、疎水変性ポリエーテルウレタンと、カルボキシビニルポリマー及び/又はキサンタンガムを含む化粧料組成物が開示されており、特許文献3では、疎水変性ポリエーテルウレタンとコラーゲンを含む皮膚外用剤が開示されている。 On the other hand, as a water-soluble thickener having an excellent thickening effect, a thickener made of hydrophobically modified polyether urethane (associative polymer) has been developed (Patent Document 1) and used in cosmetics (patent) Literature 2-3). That is, Patent Document 2 discloses a cosmetic composition containing hydrophobically modified polyether urethane and carboxyvinyl polymer and / or xanthan gum. Patent Document 3 discloses an external preparation for skin containing hydrophobically modified polyether urethane and collagen. Is disclosed.
また、曳糸性のないさっぱりとした使用感触の増粘剤としてゲル化能を有する親水性化合物ゲルを破砕して得たミクロゲルからなる増粘剤が開発され、化粧料に利用されている(特許文献4)。上記ミクロゲル以外にも、水溶性エチレン性不飽和モノマーをラジカル重合して得たミクロゲルが別途開発され、水溶性エチレン性不飽和モノマーのラジカル重合によるミクロゲルと疎水変性ポリエーテルウレタンを含む増粘性組成物及び化粧料が開発されている(特許文献5)。 In addition, a thickener made of a microgel obtained by crushing a hydrophilic compound gel having gelling ability as a thickener with a refreshing feel without spinnability has been developed and used in cosmetics ( Patent Document 4). In addition to the above microgel, a microgel obtained by radical polymerization of a water-soluble ethylenically unsaturated monomer was separately developed, and a thickening composition comprising a microgel obtained by radical polymerization of a water-soluble ethylenically unsaturated monomer and a hydrophobically modified polyether urethane And cosmetics have been developed (Patent Document 5).
しかしながら、上記特許文献2〜5に開示された組成物や化粧料はいずれも、クリーム状基剤など、比較的高粘度の基剤の調製を目的としたものである。上記特許文献2に開示された組成物は、増粘効果、使用感触(しっとりさ、べたつき感のなさ)を有するが、低〜中粘度域での粘度安定性や、みずみずしい使用感触についての検討は行なわれていなかった。また、上記特許文献3に開示された組成物も、増粘効果、使用感触(弾力感)を有するが、低〜中粘度域での粘度安定性や、みずみずしい使用感触についての検討は行なわれていなかった。さらに、上記特許文献4に開示された増粘剤は、増粘効果、みずみずしい使用感触効果を有するが、低〜中粘度域での粘度安定性や、なじみ感についての検討は行なわれていなかった。上記特許文献5に開示された組成物は、増粘効果、新規な感触(新規な弾力感)効果を有するが、低〜中粘度域での粘度安定性等についての検討は行なわれていなかった。 However, all of the compositions and cosmetics disclosed in Patent Documents 2 to 5 are intended to prepare a relatively high viscosity base such as a cream base. The composition disclosed in Patent Document 2 has a thickening effect and a feeling of use (moistness, no sticky feeling), but the viscosity stability in a low to medium viscosity range and a fresh feeling of use are not examined. It was not done. Further, the composition disclosed in Patent Document 3 also has a thickening effect and a feeling of use (elasticity), but studies on viscosity stability in a low to medium viscosity range and a fresh feeling of use have been made. There wasn't. Furthermore, the thickener disclosed in Patent Document 4 has a thickening effect and a fresh feeling to use, but no investigation has been made on the viscosity stability in a low to medium viscosity range and the familiar feeling. . The composition disclosed in Patent Document 5 has a thickening effect and a novel feel (novel elasticity) effect, but has not been studied for viscosity stability in a low to medium viscosity range. .
また、本発明の必須構成成分である成分(a)疎水変性ポリエーテルウレタンと、成分(b)ゲル化能を有する親水性化合物からなるゲルの破砕により得られるミクロゲルとを含有する増粘性組成物は既に知られている(特許文献6)。
当該増粘剤組成物は、使用感触に優れ(みずみずしく、べたつき感がなく、肌なじみがよい)、常温25℃における粘度が50〜50000mPa・sといった低〜中粘度域において粘度を安定に保つことができ、塩型成分を配合した場合であっても粘度の変化を生じない増粘性組成物としては、有用な技術である。
しかしながら、上記構成成分のみでは、塗布時の使用感触(肌へののびがよく、みずみずしく、べたつかない)や塗布直後のエモリエント感は得られるが、塗布直後のはりの向上実感が得られず、したがって、塗布直後のしわ・たるみ改善効果は得られないものであった。
Further, a thickening composition containing component (a) hydrophobically modified polyether urethane, which is an essential constituent of the present invention, and component (b) a microgel obtained by crushing a gel comprising a hydrophilic compound having gelling ability. Is already known (Patent Document 6).
The thickener composition is excellent in use feeling (fresh, non-sticky and has good skin fit), and maintains a stable viscosity in a low to medium viscosity range of 50 to 50000 mPa · s at a room temperature of 25 ° C. This is a useful technique as a thickening composition that does not change in viscosity even when a salt-type component is blended.
However, only the above components can provide a feeling of use at the time of application (extended to the skin, fresh and non-sticky) and an emollient feeling immediately after application, but do not provide an improvement feeling of the beam immediately after application. The effect of improving wrinkles and sagging immediately after application was not obtained.
本願発明者は上述の観点から好ましい使用感触を兼ね備えた新規な皮膚化粧料を製造すべく鋭意研究を重ねた結果、(a)特定の疎水変性ポリエーテルウレタンと、(b)ゲル化能を有する親水性化合物からなるゲルの破砕により得られるミクロゲルと、(c)N−ラウロイル−L−グルタミン酸エステル及び/又はN−ミリストイル−N−メチル−β−アラニンエステルとを特定量配合して水中油型乳化皮膚化粧料を製造すると、肌へののびとなじみが良好で、べたつきがなく、エモリエント感、はり感等の使用感に極めて優れた皮膚化粧料が得られることを見出し、本発明を完成するに至った。 As a result of intensive studies to produce a novel skin cosmetic material that has a preferable use feeling from the above viewpoint, the present inventor has (a) a specific hydrophobically modified polyether urethane and (b) a gelling ability. A microgel obtained by crushing a gel composed of a hydrophilic compound and (c) N-lauroyl-L-glutamic acid ester and / or N-myristoyl-N-methyl-β-alanine ester in a specific amount and an oil-in-water type It has been found that when emulsified skin cosmetics are produced, the skin cosmetics having good spread and familiarity to the skin, no stickiness, and extremely excellent use feeling such as emollient feeling and stickiness can be obtained, and the present invention is completed. It came to.
本発明の目的は、肌へののびとなじみが良好で、べたつきがなく、塗布直後のエモリエント感、エモリエント感の持続性、はり感等の使用感に極めて優れた水中油型乳化皮膚化粧料を提供することである。 An object of the present invention is to provide an oil-in-water emulsified skin cosmetic that has good spreading and familiarity to the skin, is non-sticky, and is extremely excellent in feeling of use such as emollient feeling immediately after application, sustainability of emollient feeling, and feeling of elasticity. Is to provide.
すなわち、本発明は、水中油型乳化皮膚化粧料全量に対して、下記成分(a)を1.0〜3.0質量%と、成分(b)を0.1〜0.5質量%と、成分(c)を0.005〜2.0質量%とを含有することを特徴とし、さらに成分(a)と成分(b)との含有量の質量比が、成分(a)/成分(b)=5/1〜8/1であり、水中油型乳化皮膚化粧料の粘度が20000〜80000mPa・sであることを特徴とする水中油型乳化皮膚化粧料を提供するものである。
(a)(PEG−240/デシルテトラデセス−20/HDI)コポリマー
(b)ゲル化能を有する親水性化合物からなる平均粒径0.1〜1000μmのミクロゲル
(c)N−ラウロイル−L−グルタミン酸ジ(コレステリル・ベヘニル・オクチルドデシル)、N−ラウロイル−L−グルタミン酸ジ(コレステリル・オクチルドデシル)、N−ラウロイル−L−グルタミン酸ジ(フィトステリル・2−オクチルドデシル)、N−ラウロイル−L−グルタミン酸ジ(フィトステリル・ベヘニル・2−オクチルドデシル)、N−ミリストイル−メチルアラニン(フィトステリル・デシルテトラデシル)からなる群から選択される1種又は2種以上
That is, this invention is 1.0-3.0 mass% of the following component (a), and 0.1-0.5 mass% of component (b) with respect to the oil-in-water type emulsified skin cosmetics whole quantity. The component (c) is contained in an amount of 0.005 to 2.0% by mass, and the mass ratio of the content of the component (a) and the component (b) is component (a) / component ( b) = 5/1 to 8/1, and the viscosity of the oil-in-water emulsified skin cosmetic is 20000 to 80000 mPa · s. The oil-in-water emulsified skin cosmetic is provided.
(A) (PEG-240 / decyltetradeceth-20 / HDI) copolymer (b) Microgel having a mean particle size of 0.1 to 1000 μm comprising a hydrophilic compound having gelling ability (c) N-lauroyl-L- Glutamate di (cholesteryl / behenyl / octyldodecyl), N-lauroyl-L-glutamate di (cholesteryl / octyldodecyl), N-lauroyl-L-glutamate di (phytosteryl / 2-octyldodecyl), N-lauroyl-L-glutamic acid One or more selected from the group consisting of di (phytosteryl, behenyl, 2-octyldodecyl) and N-myristoyl-methylalanine (phytosteryl , decyltetradecyl)
さらに、本発明は、前記ゲル化能を有する親水性化合物が、寒天、カラギーナン、カードラン、ゼラチン、ジェランガム、アルギン酸からなる群から選択される1種又は2種以上であることを特徴とする上記の水中油型乳化皮膚化粧料を提供するものである。 Further, in the present invention, the hydrophilic compound having gelling ability is one or more selected from the group consisting of agar, carrageenan, curdlan, gelatin, gellan gum, and alginic acid. An oil-in-water emulsified skin cosmetic is provided.
本発明の水中油型乳化皮膚化粧料は、肌へののびとなじみが良好で、べたつきがなく、塗布直後のエモリエント感、エモリエント感の持続性、はり感等の使用感に極めて優れた水中油型乳化皮膚化粧料である。 The oil-in-water emulsified skin cosmetic of the present invention has good spreading and familiarity to the skin, is not sticky, and has an excellent feeling of use such as emollient feeling immediately after application, persistence of emollient feeling, feeling of elasticity, etc. Type emulsified skin cosmetic.
以下、本発明について詳述する。 Hereinafter, the present invention will be described in detail.
<成分(a)>
本発明に用いる成分(a)は(PEG−240/デシルテトラデセス−20/HDI)コポリマーであり、会合性増粘剤として作用する。会合性増粘剤とは、親水基部を骨格とし、末端に疎水性部分をもつコポリマーであり、水性媒体中でコポリマーの疎水性部分同士が会合し増粘作用を示すものをいう。このような会合性増粘剤は、図1に示すように水性媒体中でコポリマーの疎水性部分同士が会合し、親水部がループ状、ブリッジ状をなし、増粘作用を示す。
<Component (a)>
Component (a) used in the present invention is a (PEG-240 / decyltetradeceth-20 / HDI) copolymer , which acts as an associative thickener. The associative thickener is a copolymer having a hydrophilic group as a skeleton and having a hydrophobic portion at the terminal, and the hydrophobic portions of the copolymer are associated with each other in an aqueous medium to exhibit a thickening action. Such an associative thickener exhibits a thickening action as shown in FIG. 1, in which the hydrophobic portions of the copolymer are associated with each other in an aqueous medium, and the hydrophilic portion is formed into a loop shape or a bridge shape.
本発明では、成分(a)として、市販品を用いてもよい。市販品としては、例えば「アデカノールGT−700」(旭電化工業(株)製)等が挙げられる。 In this invention, you may use a commercial item as a component (a). As a commercial item, "Adecanol GT-700" (Asahi Denka Kogyo Co., Ltd. product) etc. are mentioned, for example.
成分(a)の配合量は、本発明の水中油型乳化皮膚化粧料全量に対して、1.0〜3.0質量%であり、好ましくは1.5〜2.5質量%である。
1.0質量%未満では、成分(a)の添加効果が認められず、一方、3.0質量%超では、粘度が高くなりすぎ、組成物製造の作用効率が低下したり、使用性の点でべたつきを生じたりすることがあるので好ましくない。
The compounding quantity of a component (a) is 1.0-3.0 mass% with respect to the oil-in-water type emulsion skin cosmetics whole quantity of this invention, Preferably it is 1.5-2.5 mass%.
When the amount is less than 1.0% by mass, the effect of adding the component (a) is not recognized. On the other hand, when the amount exceeds 3.0% by mass, the viscosity becomes too high, and the working efficiency of the composition is reduced. Since stickiness may occur at points, it is not preferable.
<成分(b)>
本発明に用いる成分(b)のゲル化能を有する親水性化合物からなるゲルの破砕により得られるミクロゲルは、ゲル化能を有する親水性化合物を水または水性成分に溶解した後、放置冷却して形成したゲルを粉砕してなる平均粒子径0.1〜1000μmのミクロゲルが好ましく用いられる。平均粒子径は透過電子顕微鏡写真の画像解析による個数平均径などの常法によって測定される。
<Component (b)>
The microgel obtained by crushing the gel composed of the hydrophilic compound having the gelling ability of the component (b) used in the present invention is dissolved in water or an aqueous component and then left to cool. A microgel having an average particle size of 0.1 to 1000 μm obtained by pulverizing the formed gel is preferably used. The average particle diameter is measured by a conventional method such as a number average diameter by image analysis of a transmission electron micrograph.
上記成分(b)のゲル化能を有する親水性化合物としては、ゲル化能を有する水溶性化合物であって、化粧料、医薬品分野で用いられ得るものであれば特に限定されるものでない。具体的には、ゼラチン、コラーゲン等のゲル化能を有する親水性タンパク質や、寒天、カードラン、スクレログルカン、シゾフィラン、ジェランガム、アルギン酸、カラギーナン、マンナン、ペクチン、ヒアルロン酸等の親水性多糖類等が例示される。中でも、ゼラチン、寒天、カードラン、ジェランガム、アルギン酸、カラギーナンは、塩やイオンの影響を受け難く、安定なゲルを調製可能であることから特に好ましく用いられる。ゲル化能を有する親水性化合物は1種または2種以上を用いることができる。 The hydrophilic compound having gelling ability of the component (b) is not particularly limited as long as it is a water-soluble compound having gelling ability and can be used in the cosmetics and pharmaceutical fields. Specifically, hydrophilic proteins having gelling ability such as gelatin and collagen, hydrophilic polysaccharides such as agar, curdlan, scleroglucan, schizophyllan, gellan gum, alginic acid, carrageenan, mannan, pectin, hyaluronic acid, etc. Is exemplified. Among them, gelatin, agar, curdlan, gellan gum, alginic acid, and carrageenan are particularly preferably used because they are hardly affected by salts and ions and can prepare a stable gel. One or two or more hydrophilic compounds having gelling ability can be used.
これらゲル化能を有する親水性化合物を、水または水性成分に溶解した後、放置冷却して固化させ、ゲルを形成する。上記化合物の水または水性成分への溶解は、混合、加熱等によって行うことができる。
ゲル化(固化)は、溶解後、加熱を止めてゲル化温度(固化温度)より低温となるまで放置(静置)することにより行う。
水性成分としては、化粧料、医薬品分野において用いられ得る水性成分であれば特に限定されるものでなく、例えば1,3−ブチレングリコール、プロピレングリコール等のグリコール類や、エタノール、プロパノール等の低級アルコールのほか、一般に化粧料の水相成分として配合される成分(メタリン酸塩、エデト酸塩等のキレート剤や、pH調整剤、防腐剤等)を含有することができる。
These hydrophilic compounds having gelling ability are dissolved in water or an aqueous component and then left to cool and solidify to form a gel. The above compound can be dissolved in water or an aqueous component by mixing, heating, or the like.
Gelation (solidification) is performed by stopping (heating) after dissolution and leaving it to stand at a temperature lower than the gelation temperature (solidification temperature).
The aqueous component is not particularly limited as long as it is an aqueous component that can be used in the cosmetics and pharmaceutical fields. For example, glycols such as 1,3-butylene glycol and propylene glycol, and lower alcohols such as ethanol and propanol. In addition, it is possible to contain components (chelates such as metaphosphate and edetate, pH adjusters, preservatives, etc.) that are generally blended as an aqueous phase component of cosmetics.
なお、ゲル化能を有する親水性化合物としてジェランガムを用いる場合、ゲル強度をより向上させるために、水性成分中に陽イオンを添加するのが好ましい。陽イオンとしては、特に限定されるものでないが、1価または2価の陽イオンが好ましく、具体的には1価の陽イオン(H+)を放出する酸、例えば酢酸、クエン酸等、1価または2価の陽イオン、例えばMg++、Ca++、Na+、K+を放出する塩、例えば、塩化マグネシウム、塩化カルシウム、塩化ナトリウム、塩化カリウム等が挙げられる。 In addition, when using gellan gum as a hydrophilic compound which has gelling ability, in order to improve gel strength more, it is preferable to add a cation in an aqueous component. The cation is not particularly limited, but a monovalent or divalent cation is preferable. Specifically, an acid that releases a monovalent cation (H + ), for example, acetic acid, citric acid, etc. Examples thereof include salts that release a valent or divalent cation such as Mg ++ , Ca ++ , Na + , and K + , such as magnesium chloride, calcium chloride, sodium chloride, and potassium chloride.
上記ゲルのゲル強度は、ゲル自体がその形状を維持でき、また次工程のミクロゲルを得ることができる程度のものであれば特に限定されるものでない。本発明では、ゲル強度がかなり高いものでも使用することができ、例えばゼリー強度が1,000g/cm2(日寒水式測定)若しくはそれ以下程度の高ゼリー強度のものでも用いることができる一方、ゼリー強度30g/cm2程度のかなり弱いゲル強度でもミクロゲルを得ることができる。使用性向上の点からはゼリー強度100g/cm2前後のものが好ましい。 The gel strength of the gel is not particularly limited as long as the gel itself can maintain its shape and can obtain the microgel of the next step. In the present invention, a gel having a considerably high gel strength can be used. For example, a gel having a jelly strength of 1,000 g / cm 2 (day cold water measurement) or a high jelly strength of less than that can be used. A microgel can be obtained even with a very weak gel strength of about 30 g / cm 2 in jelly strength. From the viewpoint of improving usability, a jelly strength of around 100 g / cm 2 is preferable.
上記ゲル化能を有する親水性化合物とともに、さらに使用感を変えるため等の目的から、ゲル化能をもたない増粘性化合物を併用してもよい。ゲル化能をもたない増粘性化合物としては、ポリアクリル酸、ポリエチレングリコール、ポリアクリルアミド、ポリアルキルアクリルアミド/ポリアクリルアミドコポリマー、カルボキシメチルセルロース、カチオン化セルロース、プルロニックをはじめとする親水性合成高分子や、キサンタンガム、サクシノグリカン、グアーガム、ローカストビーンガムをはじめとする親水性天然高分子のほか、ラポナイト、ベントナイト、スメクタイト等の親水性粘土鉱物等の親水性増粘性化合物が例示される。またこれら化合物の塩も用いることができる。これらゲル化能をもたない親水性の増粘性化合物を併用することにより、得られるゲルのゲル強度を自在に調整することができる。ゲル化能をもたない増粘性化合物の配合割合を増加させることによりゲル強度は低下する。ゲル化能をもたない増粘性化合物は1種または2種以上を用いることができる。 In addition to the hydrophilic compound having gelling ability, a thickening compound having no gelling ability may be used in combination for the purpose of changing the feeling of use. Examples of thickening compounds that do not have gelling ability include hydrophilic synthetic polymers such as polyacrylic acid, polyethylene glycol, polyacrylamide, polyalkylacrylamide / polyacrylamide copolymer, carboxymethylcellulose, cationized cellulose, and pluronic, In addition to hydrophilic natural polymers such as xanthan gum, succinoglycan, guar gum and locust bean gum, hydrophilic thickening compounds such as hydrophilic clay minerals such as laponite, bentonite and smectite are exemplified. Moreover, the salt of these compounds can also be used. By using these hydrophilic thickening compounds having no gelling ability, the gel strength of the resulting gel can be freely adjusted. The gel strength is lowered by increasing the blending ratio of the thickening compound having no gelling ability. One or more thickening compounds having no gelling ability can be used.
ゲル化能をもたない親水性の増粘性化合物の配合割合は、特に限定されるものでないが、ゲル化能を有する親水性化合物に対して1〜100重量%程度の割合で配合することができる。 The blending ratio of the hydrophilic thickening compound having no gelling ability is not particularly limited, but it may be blended at a ratio of about 1 to 100% by weight with respect to the hydrophilic compound having gelling ability. it can.
次いで、上記形成されたゲルをホモジナイザー、ディスパー、メカニカルスターラー等により破砕し、目的とするミクロゲルを得る。本発明においてミクロゲルの平均粒子径は0.1〜1,000μmであり、好ましくは1〜300μm程度、より好ましくは10〜200μm程度である。ミクロゲルの平均粒子径が1,000μm超では、指どれが悪くなるなど使用性上問題となる場合があり、一方、0.1μm未満ではゲル製剤としての粘性が保てなくなる場合もある。破砕の度合いは、得られるミクロゲルの平均粒子径が上記本発明での範囲を逸脱しない程度において、目的に応じて調節可能であり、より滑らかな使用性が必要とされる場合には高速攪拌により十分に破砕し、細かな粒子径のミクロゲルとし、一方、ミクロゲル自体の触感を必要とする場合には軽い攪拌により破砕の度合いを弱めてやや大き目の粒子径のミクロゲルとする。なお、平均粒子径は透過電子顕微鏡写真の画像解析による個数平均径などの常法によって測定される。 Subsequently, the formed gel is crushed by a homogenizer, a disper, a mechanical stirrer, or the like to obtain a target microgel. In the present invention, the average particle size of the microgel is 0.1 to 1,000 μm, preferably about 1 to 300 μm, more preferably about 10 to 200 μm. When the average particle size of the microgel is more than 1,000 μm, there are cases where the finger becomes bad, which may cause problems in terms of usability. On the other hand, when it is less than 0.1 μm, the viscosity as a gel preparation may not be maintained. The degree of crushing can be adjusted according to the purpose, so long as the average particle size of the obtained microgel does not deviate from the scope of the present invention. When the microgel is finely crushed and has a fine particle size, and when the feel of the microgel itself is required, the degree of crushing is weakened by light agitation to obtain a slightly larger particle size microgel. The average particle diameter is measured by a conventional method such as a number average diameter by image analysis of a transmission electron micrograph.
成分(b)の配合量は、本発明の水中油型乳化皮膚化粧料全量に対して、0.1〜0.5質量%であり、好ましくは0.2〜0.4質量%である。0.1質量%未満では(b)成分添加効果が認められず、一方、0.5質量%超では、使用性の点でべたつきを生じることがあるので好ましくない。 The compounding quantity of a component (b) is 0.1-0.5 mass% with respect to the oil-in-water type emulsion skin cosmetics whole quantity of this invention, Preferably it is 0.2-0.4 mass%. If the amount is less than 0.1% by mass, the effect of adding the component (b) is not recognized. On the other hand, if it exceeds 0.5% by mass, stickiness may occur in terms of usability.
本発明においては、成分(a)と成分(b)の配合比(質量比)を、成分(a)/成分(b)=5/1〜8/1の範囲とすることが好ましい。
成分(a)が上記比率より多いとみずみずしさが損なわれ、一方、少ないと粘度を安定に保つことができず、好ましくない。
In this invention, it is preferable to make the compounding ratio (mass ratio) of a component (a) and a component (b) into the range of a component (a) / component (b) = 5/1-8/1.
When the component (a) is more than the above ratio, freshness is impaired. On the other hand, when the component (a) is less, the viscosity cannot be kept stable, which is not preferable.
本発明では、上記成分(a)、成分(b)を組み合せることで、肌へののびがよく、みずみずしく、かつなじみがよいという優れた使用感触とともに、成分(a)、成分(b)をそれぞれ単独で用いた場合に比べ、増粘性を飛躍的に増大させることができる。このように、本発明においては、水中油型乳化皮膚化粧料の増粘性を飛躍的に高めることができるため、成分(a)、成分(b)の低配合により、水中油型乳化皮膚化粧料の粘度を安定に保つことができる。 In the present invention, by combining the component (a) and the component (b), the component (a) and the component (b) are combined with an excellent use feeling that the skin spreads well, is fresh and is familiar. Compared to the case where each is used alone, the thickening can be dramatically increased. As described above, in the present invention, since the viscosity increase of the oil-in-water emulsified skin cosmetic can be dramatically increased, the oil-in-water emulsified skin cosmetic is obtained by low blending of the components (a) and (b). The viscosity of can be kept stable.
本発明の水中油型乳化型皮膚化粧料では、粘度20000〜80000mPa・s(BH型粘度計、ローターNo.6、10回転、30℃)が好ましく、より好ましくは、30000〜70000mPa・sである。
粘度20000mPa・s未満では、成分(c)のN−ラウロイル−L−グルタミン酸エステルを配合した際、十分な安定性を保てない。一方、80000mPa・sを超えると、使用時の肌へののび、肌へのなじみが悪くなるからである。
In the oil-in-water emulsified skin cosmetic of the present invention, a viscosity of 20000 to 80000 mPa · s (BH viscometer, rotor No. 6, 10 rotations, 30 ° C.) is preferable, and more preferably 30000 to 70000 mPa · s. .
When the viscosity is less than 20000 mPa · s, sufficient stability cannot be maintained when the N-lauroyl-L-glutamic acid ester of component (c) is blended. On the other hand, if it exceeds 80,000 mPa · s, it will spread to the skin during use, and the familiarity with the skin will worsen.
<成分(c)>
本発明に用いる成分(c)は、N−ラウロイル−L−グルタミン酸エステル及び/又はN−ミリストイル−N−メチル−β−アラニンエステルである。
本発明に用いる成分(c)は、水を抱含して均一なペースト状態となることができ、自重単体の場合の質量と比較し、抱含した水の質量分多くなることができる抱水性を有する油分である。
<Component (c)>
Component (c) used in the present invention is N-lauroyl-L-glutamic acid ester and / or N-myristoyl-N-methyl-β-alanine ester.
The component (c) used in the present invention can contain water and can be in a uniform paste state, and can have a water content that can be increased by the amount of water contained in comparison with the mass in the case of its own weight. It is an oil component having
本発明に用いるN−ラウロイル−L−グルタミン酸エステルとしては、具体的には、N−ラウロイル−L−グルタミン酸ジ(コレステリル・ベヘニル・オクチルドデシル)、N−ラウロイル−L−グルタミン酸ジ(コレステリル・オクチルドデシル)、N−ラウロイル−L−グルタミン酸ジ(フィトステリル・2−オクチルドデシル)、N−ラウロイル−L−グルタミン酸ジ(フィトステリル・ベヘニル・2−オクチルドデシル)が挙げられる。
N−ラウロイル−L−グルタミン酸ジ(コレステリル・オクチルドデシル)の市販品としてはエルデュウCL−202(味の素ヘルシーサプライ株式会社製)が挙げられ、ラウロイル−L−グルタミン酸ジ(オクチルドデシル・コレステリル・ベヘニル)の市販品としてはエルデュウCL−301(味の素ヘルシーサプライ株式会社製)が挙げられ、N−ラウロイル−L−グルタミン酸ジ(フィトステリル・オクチルドデシル)の市販品としてはエルデュウPS−203(味の素ヘルシーサプライ株式会社製)が挙げられ、N−ラウロイル−L−グルタミン酸ジ(オクチルドデシル・フィトステリル・ベヘニル)の市販品としてはエルデュウPS−304(味の素ヘルシーサプライ株式会社製)が挙げられる。
Specific examples of N-lauroyl-L-glutamate used in the present invention include N-lauroyl-L-glutamate di (cholesteryl behenyl octyldodecyl) and N-lauroyl-L-glutamate di (cholesteryl octyldodecyl). ), N-lauroyl-L-glutamate di (phytosteryl 2-octyldodecyl), and N-lauroyl-L-glutamate di (phytosteryl behenyl 2-octyldodecyl).
They include N- lauroyl -L- glutamic acid di Eldew CL-202 (Ajinomoto Healthy Supply Co., Ltd.) as commercial products of (cholesteryl octyldodecyl) is a lauroyl -L- glutamic acid di (octyldodecyl-cholesteryl behenyl) Examples of commercial products include Eldew CL-301 (Ajinomoto Healthy supply Co.), Eldew PS-203 (Ajinomoto Healthy supply Co. as commercially available products of N- lauroyl -L- glutamic acid di (phytosteryl-octyldodecyl) As a commercially available product of N-lauroyl-L-glutamate di (octyldodecyl phytosteryl behenyl), Erdew PS-304 (manufactured by Ajinomoto Healthy Supply Co., Ltd.) can be mentioned.
また、本発明に用いるN−ミリストイル−N−メチル−β−アラニンエステルとしては、具体的には、N−ミリストイル−メチルアラニン(フィトステリル・デシルテトラデシル)が挙げられる。市販品としては、エルデュウAPS−307(味の素ヘルシーサプライ株式会社製)が挙げられる。 As the N- myristoyl -N- methyl -β- alanine ester used in the present invention, specifically, N- myristoyl - and methyl alanine (phytosteryl-decyltetradecyl) it is. As a commercially available product, El Dew APS-307 (manufactured by Ajinomoto Healthy Supply Co., Ltd.) can be mentioned.
成分(c)のN−ラウロイル−L−グルタミン酸エステル及び/又はN−ミリストイル−N−メチル−β−アラニンエステルの含有量は、水中油型乳化皮膚化粧料全量に対して、0.005〜2.0質量%が好ましい。より好ましくは、0.01〜1.0質量%である。 The content of component (c) N-lauroyl-L-glutamic acid ester and / or N-myristoyl-N-methyl-β-alanine ester is 0.005 to 2 with respect to the total amount of the oil-in-water emulsified skin cosmetic. 0.0 mass% is preferable. More preferably, it is 0.01-1.0 mass%.
<本発明に配合可能な薬剤成分又は塩類>
本発明の水中油型乳化皮膚化粧料は、薬剤成分、塩類を配合しても粘度低下などの変化を生じないという効果もある。薬剤成分や塩類は水溶性、油溶性のいずれも用いることができる。
薬剤成分としては、ビタミン類、抗炎症剤、抗菌剤等が例示される。薬剤成分の具体例としては、ビタミンB、P、水溶性ビタミンA、D等のビタミン類およびその誘導体、パントテニールエチルエーテル、カルシウムパントテネート、グリチルリチン、グリチルリチン酸塩、グリチルレチン、グリチルレチン酸塩、ロ−ヤルゼリー、ポリフェノール、ニコチン酸およびその誘導体(例えばニコチン酸アミド)、レゾルシンおよびその誘導体、イオウ、サリチル酸およびその誘導体、アルコキシサリチル酸およびその塩、L−アスコルビン酸およびその誘導体、トラネキサム酸およびその誘導体グルコシド、尿素、キシリトール、トレハロース、カフェイン等が挙げられる。
また、塩類としては、有機酸塩、アミノ酸塩、無機塩などが挙げられる。有機酸塩としては、クエン酸、乳酸、シュウ酸、スルホン酸等の塩酸塩、金属塩(ナトリウム塩、カリウム塩)、アミン塩などが例示される。アミノ酸塩としては、グリシン、アラニン、プロリン、リジン、アスパラギン酸、グルタミン酸等の塩酸塩、金属塩(ナトリウム塩、カリウム塩)、アミン塩などが例示される。無機塩としては、ナトリウム、カリウム、マグネシウム、カルシウム等の炭酸塩、リン酸塩、硝酸塩、ホウ酸塩、硫酸塩、亜硫酸塩、ハロゲン化合物(塩化ナトリウム、塩化カリウム等)等が挙げられる。
<Drug components or salts that can be blended in the present invention>
The oil-in-water emulsified skin cosmetic of the present invention also has an effect of not causing changes such as a decrease in viscosity even when a drug component and salts are added. The drug component and salts can be either water-soluble or oil-soluble.
Examples of the drug component include vitamins, anti-inflammatory agents, antibacterial agents and the like. Specific examples of the drug component include vitamins B and P, water-soluble vitamins A and D and derivatives thereof, pantotenyl ethyl ether, calcium pantothenate, glycyrrhizin, glycyrrhizinate, glycyrrhetin, glycyrrhetinate, -Yard jelly, polyphenols, nicotinic acid and its derivatives (eg nicotinamide), resorcin and its derivatives, sulfur, salicylic acid and its derivatives, alkoxysalicylic acid and its salts, L-ascorbic acid and its derivatives, tranexamic acid and its derivatives glucoside, Examples include urea, xylitol, trehalose, and caffeine.
Examples of the salts include organic acid salts, amino acid salts, and inorganic salts. Examples of the organic acid salt include hydrochlorides such as citric acid, lactic acid, oxalic acid and sulfonic acid, metal salts (sodium salt, potassium salt), amine salts and the like. Examples of amino acid salts include hydrochlorides such as glycine, alanine, proline, lysine, aspartic acid, and glutamic acid, metal salts (sodium salt, potassium salt), amine salts, and the like. Examples of inorganic salts include carbonates such as sodium, potassium, magnesium, and calcium, phosphates, nitrates, borates, sulfates, sulfites, and halogen compounds (such as sodium chloride and potassium chloride).
本発明の水中油型乳化皮膚化粧料は耐塩性が高く、これら塩類を配合したり、あるいは上記薬剤成分を塩の形で用いたものを配合した場合であっても、同時配合する他成分によって系の安定性が左右されることがなく、また、使用性に優れる。
なお、従来、寒天、カラギーナン、カードラン、ゼラチン等のゲル化能を有する化合物を増粘剤として用いることもあったが、その場合、これら化合物を加熱、溶解し、攪拌しながら徐冷することにより、固化(ゲル化)させることなく粘稠な状態を得ていた(例えば、特開平11−209262号公報、等)。しかしながら、上記従来法に示すようにゲル化能を有する化合物を攪拌しながら徐冷して増粘剤とする場合、系の増粘の程度に限界がある。特に薬剤成分や塩類等を配合した場合、系の粘度低下が生じる。
これに対し、本発明では、これら化合物をいったん完全にゲル化(固化)した後、これを粉砕してミクロゲルとしたものを増粘剤として用いる。このようにして得られる本発明の(b)成分の増粘剤は、従来化粧料に用いられてきた増粘多糖類あるいは合成高分子増粘剤と異なり、分子レベルの絡み合いにより増粘効果を発揮するものではなく、ゲルを粉砕したミクロゲル同士の摩擦によるものである。したがって、高分子溶液に特徴的な曳糸性は全くみられず、非常にさっぱりとした使用感を実現することができる。また、高分子溶液は配合する薬剤、塩等による影響を受けて粘度低下を起こし、配合が制限される場合があるが、本発明の場合そのような心配がなく、化粧料等の処方の幅を広げることができる。
The oil-in-water emulsified skin cosmetic of the present invention has high salt resistance, and even when these salts are blended or when the above-mentioned pharmaceutical ingredients are used in the form of salts, The stability of the system is not affected and the usability is excellent.
In the past, compounds having gelling ability such as agar, carrageenan, curdlan, and gelatin were sometimes used as thickeners. In such cases, these compounds were heated, dissolved, and gradually cooled with stirring. Thus, a viscous state was obtained without solidifying (gelling) (for example, JP-A-11-209262, etc.). However, when the compound having gelling ability is gradually cooled while stirring to obtain a thickener as shown in the conventional method, the degree of thickening of the system is limited. In particular, when a drug component or salt is blended, the viscosity of the system is reduced.
On the other hand, in the present invention, these compounds are once completely gelled (solidified) and then pulverized to form a microgel as a thickener. Unlike the thickening polysaccharides or synthetic polymer thickeners conventionally used in cosmetics, the thickening agent of component (b) of the present invention thus obtained has a thickening effect due to molecular entanglement. This is not due to the friction between the microgels obtained by pulverizing the gel. Therefore, the spinnability characteristic of the polymer solution is not seen at all, and a very refreshing feeling can be realized. In addition, the polymer solution may be affected by the compounding agent, salt, etc., causing a decrease in viscosity and the blending may be limited. However, in the present invention, there is no such concern, and the range of prescriptions for cosmetics, etc. Can be spread.
なお、本発明において薬剤成分や塩類等として水溶性のものを用いる場合、上記ゲル化能を有する親水性成分とともに水あるいは水性成分中に溶解させた後、これを放置冷却し固化させてゲルを形成し、次いで該ゲルを粉砕してミクロゲルとして用いてもよく、あるいは、上記ゲル化能を有する親水性化合物を水あるいは水性成分中に溶解させた後、放置冷却、固化させて形成したゲルを粉砕してミクロゲルとしたものと薬剤成分や塩類等とを混合して用いてもよい。
一方、薬剤成分や塩類等として油溶性のものを用いる場合、上記ゲル化能を有する親水性成分を水あるいは水性成分中に溶解させた後、これを放置冷却し固化させてゲルを形成し、次いで該ゲルを粉砕してミクロゲルとする一方、これとは別に、油溶性薬剤成分や塩類等を他の油性成分とともに水系中で予備乳化しておき、この予備乳化物と上記ミクロゲルとを混合、乳化して用いるのが好ましい。
In the present invention, when a water-soluble drug component or salt is used in the present invention, after dissolving it in water or an aqueous component together with the hydrophilic component having the gelation ability, the gel is allowed to cool and solidify. Then, the gel may be pulverized and used as a microgel. Alternatively, a gel formed by dissolving the hydrophilic compound having the gelation ability in water or an aqueous component and then allowing to cool and solidify. You may mix and use what was grind | pulverized and made into the microgel and a chemical | medical component, salt, etc.
On the other hand, when using an oil-soluble drug component, salt, or the like, after dissolving the hydrophilic component having the gelation ability in water or an aqueous component, this is left to cool and solidify to form a gel. Next, the gel is pulverized into a microgel. Separately, oil-soluble drug components and salts are pre-emulsified together with other oil components in an aqueous system, and the pre-emulsified product and the microgel are mixed. It is preferable to use after emulsification.
<水中油型乳化皮膚化粧料>
本発明の水中油型乳化皮膚化粧料には、上記必須成分の他に、水中油型乳化皮膚化粧料を製造するために必要な界面活性剤(乳化剤)、油分、水を配合する。以下に説明する。
<Oil-in-water emulsified skin cosmetics>
In addition to the above essential components, the oil-in-water emulsified skin cosmetic of the present invention is blended with a surfactant (emulsifier), oil and water necessary for producing an oil-in-water emulsified skin cosmetic. This will be described below.
「界面活性剤(乳化剤)」
製品に応じて任意の界面活性剤を配合する。
例えば、セッケン用素地、ラウリン酸ナトリウム、パルミチン酸ナトリウム等の脂肪酸セッケン、ラウリル硫酸ナトリウム、ラウリル硫酸カリウム等の高級アルキル硫酸エステル塩、POEラウリル硫酸トリエタノールアミン、POEラウリル硫酸ナトリウム等のアルキルエーテル硫酸エステル塩、ラウロイルサルコシンナトリウム等のN−アシルサルコシン酸、N−ミリストイル−N−メチルタウリンナトリウム、ヤシ油脂肪酸メチルタウリッドナトリウム等の高級脂肪酸アミドスルホン酸、POEステアリルエーテルリン酸等のリン酸エステル塩、モノラウロイルモノエタノールアミドPOEスルホコハク酸ナトリウム、ラウリルポリプロピレングリコールスルホコハク酸ナトリウム等のスルホコハク酸塩、リニアドデシルベンゼンスルホン酸ナトリウム、リニアドデシルベンゼンスルホン酸トリエタノールアミン等のアルキルベンゼンスルホン酸塩、N−ステアロイルグルタミン酸ジナトリウム、N−ステアロイルグルタミン酸モノナトリウム等のN−アシルグルタミン酸塩、硬化ヤシ油脂肪酸グリセリン硫酸ナトリウム等の高級脂肪酸エステル硫酸エステル塩、ロート油等の硫酸化油、POEアルキルエーテルカルボン酸、POEアルキルアリルエーテルカルボン酸塩、高級脂肪酸エステルスルホン酸塩、二級アルコール硫酸エステル塩、高級脂肪酸アルキロールアミド硫酸エステル塩、ラウロイルモノエタノールアミドコハク酸ナトリウム、カゼインナトリウム等のアニオン系界面活性剤;塩化ステアリルトリメチルアンモニウム、塩化ラウリルトリメチルアンモニウム等のアルキルトリメチルアンモニウム塩、塩化ジステアリルジメチルアンモニウム塩等のジアルキルジメチルアンモニウム塩、塩化セチルピリジニウム等のアルキルピリジニウム塩、アルキル四級アンモニウム塩、アルキルジメチルベンジルアンモニウム塩、アルキルイソキノリニウム塩、ジアルキルモリホニウム塩、POEアルキルアミン、アルキルアミン塩、ポリアミン脂肪酸誘導体、アミルアルコール脂肪酸誘導体、塩化ベンザルコニウム等のカチオン系界面活性剤;2−ココイル−2−イミダゾリニウムヒドロキシド−1−カルボキシエチロキシ二ナトリウム塩等のイミダゾリン系両性界面活性剤、アミドベタイン、スルホベタイン等のベタイン系界面活性剤等の両性界面活性剤;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、ソルビタントリオレエート等のソルビタン脂肪酸エステル類、モノ綿実油脂肪酸グリセリン、モノステアリン酸グリセリン、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リンゴ酸塩等のグリセリンポリグリセリン脂肪酸類、モノステアリン酸プロピレングリコール等のプロピレングリコール脂肪酸エステル類、硬化ヒマシ油誘導体、グリセリンアルキルエーテル、POE・メチルポリシロキサン共重合体等の親油性非イオン性界面活性剤;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等のPOEソルビタン脂肪酸エステル類、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ソルビットモノステアレート等のPOEソルビット脂肪酸エステル類、POEグリセリンモノオレエート、POEグリセリンジステアレート等のPOEグリセリン脂肪酸エステル類、POEモノオレエート、POEジステアレート、POEモノジオレエート等のPOE脂肪酸エステル類、POEラウリルエーテル、POEオレイルエーテル、POEコレスタノールエステル等のPOEアルキルエーテル類、POEオクチルフェニルエーテル、POEノニルフェニルエーテル等のPOEアルキルフェニルエーテル類、POE・ポリオキシプロピレン(以下、POPという。)モノブチルエーテル、POE・POPセチルエーテル、POE・POPグリセリンエーテル等のPOE・POPアルキルエーテル類、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硬化ヒマシ油マレイン酸等のPOEヒマシ油硬化ヒマシ油誘導体、POEソルビットミツロウ等のPOEミツロウ・ラノリン誘導体、ヤシ油脂肪酸ジエタノールアミド、脂肪酸イソプロパノールアミド等のアルカノールアミド、POEプロピレングリコール脂肪酸エステル、POE脂肪酸アミド、POEアルキルアミン、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等の親水性非イオン性界面活性剤等を挙げることができる。
本発明に特に好ましい界面活性剤としては、POEアルキルエーテル類、POE脂肪酸エステル類の非イオン性界面活性剤が挙げられる。
"Surfactant (emulsifier)"
An optional surfactant is added depending on the product.
For example, soap base, fatty acid soap such as sodium laurate and sodium palmitate, higher alkyl sulfate such as sodium lauryl sulfate and potassium lauryl sulfate, alkyl ether sulfate such as POE lauryl sulfate triethanolamine and sodium POE lauryl sulfate Salts, N-acyl sarcosine acids such as sodium lauroyl sarcosine, N-myristoyl-N-methyl taurate sodium, higher fatty acid amide sulfonic acids such as coconut oil fatty acid methyl tauride sodium, phosphate ester salts such as POE stearyl ether phosphoric acid, Sulfosuccinates such as monolauroyl monoethanolamide POE sodium sulfosuccinate, sodium lauryl polypropylene glycol sulfosuccinate, linear dodecylbenzenesulfur Higher grades such as sodium benzoate, alkylbenzene sulfonates such as linear dodecyl benzene sulfonate triethanolamine, N-acyl glutamate such as N-stearoyl glutamate monosodium, monosodium N-stearoyl glutamate, hydrogenated coconut oil fatty acid sodium glycerol sulfate Fatty acid ester sulfate, sulfated oil such as funnel oil, POE alkyl ether carboxylic acid, POE alkyl allyl ether carboxylate, higher fatty acid ester sulfonate, secondary alcohol sulfate, higher fatty acid alkylolamide sulfate , Anionic surfactants such as sodium lauroyl monoethanolamide succinate, sodium caseinate; stearyltrimethylammonium chloride, lauryltrimethylammonium chloride Alkyltrimethylammonium salts, dialkyldimethylammonium salts such as distearyldimethylammonium chloride, alkylpyridinium salts such as cetylpyridinium chloride, alkyl quaternary ammonium salts, alkyldimethylbenzylammonium salts, alkylisoquinolinium salts, dialkylmorpholines Cationic surfactants such as nium salts, POE alkylamines, alkylamine salts, polyamine fatty acid derivatives, amyl alcohol fatty acid derivatives, benzalkonium chloride; 2-cocoyl-2-imidazolinium hydroxide-1-carboxyethyloxydi Amphoteric surfactants such as sodium salts and other imidazoline-based amphoteric surfactants, and betaine-based surfactants such as amide betaine and sulfobetaine; sorbitan monooleate, sorbitan monoisoste Sorbitan fatty acid esters such as allate, sorbitan monolaurate, sorbitan monopalmitate, sorbitan trioleate, glycerin polyglycerin fatty acid such as mono cottonseed oil fatty acid glycerin, glyceryl monostearate, glyceryl sesquioleate, glyceryl monostearate malate , Lipophilic nonionic surfactants such as propylene glycol fatty acid esters such as propylene glycol monostearate, hydrogenated castor oil derivatives, glycerin alkyl ether, POE / methylpolysiloxane copolymer; POE sorbitan monooleate, POE POE sorbitan fatty acid esters such as sorbitan monostearate, POE sorbite monolaurate, POE sorbite monooleate, POE sorbite monostearate POE sorbite fatty acid esters such as POE glycerin monooleate, POE glycerin fatty acid esters such as POE glycerol distearate, POE monooleate, POE distearate, POE fatty acid esters such as POE monodiolate, POE lauryl ether, POE oleyl ether POE alkyl ethers such as POE cholestanol ester, POE alkyl phenyl ethers such as POE octyl phenyl ether and POE nonyl phenyl ether, POE / polyoxypropylene (hereinafter referred to as POP). ) POE / POP alkyl ethers such as monobutyl ether, POE / POP cetyl ether, POE / POP glycerin ether, POE castor oil, POE hydrogenated castor oil, POE hydrogenated castor oil monoisostearate, POE hydrogenated castor oil maleic acid, etc. POE castor oil hardened castor oil derivative, POE beeswax / lanolin derivative such as POE sorbite beeswax, alkanolamide such as coconut oil fatty acid diethanolamide, fatty acid isopropanolamide, POE propylene glycol fatty acid ester, POE fatty acid amide, POE alkylamine, sucrose fatty acid Examples thereof include hydrophilic nonionic surfactants such as esters and alkylethoxydimethylamine oxide.
Particularly preferred surfactants for the present invention include nonionic surfactants such as POE alkyl ethers and POE fatty acid esters.
界面活性剤の配合量はその種類によって適宜決定されるが、好ましくは、水中油型乳化皮膚化粧料全量に対して0.5〜3.0質量%である。 Although the compounding quantity of surfactant is suitably determined by the kind, Preferably it is 0.5-3.0 mass% with respect to oil-in-water type emulsified skin cosmetics whole quantity.
「油分」
製品に応じて任意の油分が配合される。例えば、アボカド油、ツバキ油、タートル油、マカデミアナッツ油、トウモロコシ油、ミンク油、オリーブ油、ナタネ油、卵黄油、ゴマ油、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、月見草油、エノ油、大豆油、落花生油、茶実油、カヤ油、コメヌカ油、シナギリ油、日本キリ油、ホホバ油、胚芽油、トリグリセリン、トリオクタン酸グリセリン、トリイソパルミチン酸グリセリン等の液体油脂;
カカオ脂、ヤシ油、馬脂、硬化ヤシ油、パーム油、牛脂、羊脂、硬化牛脂、パーム核油、豚脂、モクロウ核油、硬化油、モクロウ、硬化ヒマシ油等の固型油脂;
ミツロウ、キャンデリラロウ、カルナバロウ、ラノリン、酢酸ラノリン、液状ラノリン、サトウキビロウ、ラノリン脂肪酸イソプロピル、ラウリン酸ヘキシル、還元ラノリン、ホホバロウ、硬質ラノリン、ポリオキシエチレン(以下、POEという。)ラノリンアルコールエーテル、POEラノリンアルコールアセテート、ラノリン脂肪酸ポリエチレングリコール、POE水素添加ラノリンアルコールエーテル等のロウ類;
流動パラフィン、オゾケライト、スクワレン、パラフィン、セレシン、スクワラン、ワセリン、マイクロクリスタリンワックス等の炭化水素;
ミリスチン酸イソプロピル、オクタン酸セチル、ミリスチン酸オクチルドデシル、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、酢酸ラノリン、ステアリン酸イソセチル、イソステアレン酸イソセチル、12−ヒドロキシステアリル酸コレステリル、ジ2−エチルヘキシル酸エチレングリコール、ジペンタエリスリトール脂肪酸エステル、モノイソステアリン酸N−アルキルグリコール、ジカプリン酸ネオペンチルグリコール、リンゴ酸ジイソステアリル、ジ2−ヘプチルウンデカン酸グリセリン、トリ2−エチルヘキシル酸トリメチロールプロパン、トリイソステアリン酸トリメチロールプロパン、テトラ2−エチルヘキシル酸ペンタエリスリトール、トリ2−エチルヘキシル酸グリセリン、トリイソステアリン酸トリメチロールプロパン、セチル−2−エチルヘキサノエート、2−エチルヘキシルパルミテート、トリミリスチン酸グリセリン、トリ2−ヘプチルウンデカン酸グリセライド、ヒマシ油脂肪酸メチルエステル、オレイン酸オイル、アセトグリセライド、パルミチン酸−2−ヘプチルウンデシル、アジピン酸ジイソプロピル、N−ラウロイル−L−グルタミン酸−2−オクチルドデシルエステル、アジピン酸ジ2−ヘプチルウンデシル、セバシン酸ジ2−エチルヘキシル、ミリスチン酸−2−ヘキシルデシル、パルミチン酸−2−ヘキシルデシル、アジピン酸−2−ヘキシルデシル、セバシン酸ジイソプロピル、コハク酸−2−エチルヘキシル等のエステル油;
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、ラノリン脂肪酸、イソステアリン酸、リノール酸、リノレイン酸、エイコサペンタエン酸等の高級脂肪酸;
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、モノステアリルグリセリンエーテル(バチルアルコール)、2−デシルテトラデシノール、ラノリンアルコール、コレステロール、フィトステロール、ヘキシルドデカノール、イソステアリルアルコール、オクチルドデカノール等の直鎖若しくは分岐高級アルコール;
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シリコーン油;
パーフルオロヘキサン、トリパーフルオロ−n−ブチルアミン等のパーフルオロカーボンないしパーフルオロポリエーテル等を挙げることができる。
本発明に特に好ましい油分としては、高級アルコール、エステル油、シリコーン油が挙げられる。
"Oil"
Any oil is blended depending on the product. For example, avocado oil, camellia oil, turtle oil, macadamia nut oil, corn oil, mink oil, olive oil, rapeseed oil, egg yolk oil, sesame oil, persic oil, wheat germ oil, sasanqua oil, castor oil, flaxseed oil, safflower oil, Cottonseed oil, evening primrose oil, eno oil, soybean oil, peanut oil, tea seed oil, kaya oil, rice bran oil, cinnagiri oil, Japanese kiri oil, jojoba oil, germ oil, triglycerin, trioctanoic acid glycerin, triisopalmitic acid glycerin, etc. Liquid oils and fats;
Solid fats such as cocoa butter, palm oil, horse fat, hydrogenated palm oil, palm oil, beef tallow, sheep fat, hydrogenated beef tallow, palm kernel oil, pork tallow, owl kernel oil, hydrogenated oil, molasses, hydrogenated castor oil;
Beeswax, candelilla wax, carnauba wax, lanolin, lanolin acetate, liquid lanolin, sugar cane wax, lanolin fatty acid isopropyl, hexyl laurate, reduced lanolin, jojoba wax, hard lanolin, polyoxyethylene (hereinafter referred to as POE) lanolin alcohol ether, POE Waxes such as lanolin alcohol acetate, lanolin fatty acid polyethylene glycol, POE hydrogenated lanolin alcohol ether;
Hydrocarbons such as liquid paraffin, ozokerite, squalene, paraffin, ceresin, squalane, petrolatum, microcrystalline wax;
Isopropyl myristate, cetyl octanoate, octyldodecyl myristate, isopropyl palmitate, butyl stearate, hexyl laurate, myristyl myristate, decyl oleate, hexyl decyl dimethyloctanoate, cetyl lactate, myristyl lactate, lanolin acetate, stearic acid Isocetyl, isocetyl isostearate, cholesteryl 12-hydroxystearylate, ethylene glycol di-2-ethylhexylate, dipentaerythritol fatty acid ester, N-alkyl glycol monoisostearate, neopentyl glycol dicaprate, diisostearyl malate, di-2- Glyceryl heptyl undecanoate, trimethylolpropane tri-2-ethylhexylate, trimethylolpropane triisostearate Pentaerythritol tetra-2-ethylhexylate, glyceryl tri-2-ethylhexylate, trimethylolpropane triisostearate, cetyl-2-ethylhexanoate, 2-ethylhexyl palmitate, glyceryl trimyristate, glyceride tri-2-heptylundecanoate, Castor oil fatty acid methyl ester, oleic oil, acetoglyceride, palmitate-2-heptylundecyl, adipic acid diisopropyl, N-lauroyl-L-glutamic acid-2-octyldodecyl ester, adipic acid di-2-heptylundecyl, sebacine Di-2-ethylhexyl acid, 2-hexyldecyl myristate, 2-hexyldecyl palmitate, 2-hexyldecyl adipate, diisopropyl sebacate, succinic acid - esters of ethylhexyl oil;
Higher fatty acids such as lauric acid, myristic acid, palmitic acid, stearic acid, behenic acid, oleic acid, 12-hydroxystearic acid, undecylenic acid, lanolin fatty acid, isostearic acid, linoleic acid, linolenic acid, eicosapentaenoic acid;
Lauryl alcohol, cetyl alcohol, stearyl alcohol, behenyl alcohol, myristyl alcohol, oleyl alcohol, cetostearyl alcohol, monostearyl glycerin ether (batyl alcohol), 2-decyltetradecinol, lanolin alcohol, cholesterol, phytosterol, hexyldodecanol, isostearyl Linear or branched higher alcohols such as alcohol and octyldodecanol;
Silicone oils such as dimethylpolysiloxane and methylphenylpolysiloxane;
Examples thereof include perfluorocarbons such as perfluorohexane and triperfluoro-n-butylamine, and perfluoropolyethers.
Particularly preferred oils for the present invention include higher alcohols, ester oils, and silicone oils.
油分の配合量は、乳液やクリーム等の製品の種類によって適宜決定されるが、好ましくは、水中油型乳化皮膚化粧料全量に対して5.0〜30.0質量%である。 The amount of oil is appropriately determined depending on the type of product such as emulsion or cream, but is preferably 5.0 to 30.0 mass% with respect to the total amount of the oil-in-water emulsified skin cosmetic.
「水」
水はイオン交換水や精製水が好ましく使用される。その配合量は製品の種類によって適宜決定されるが、好ましくは、水中油型乳化皮膚化粧料全量に対して40.0〜80.0質量%である。
"water"
As the water, ion-exchanged water or purified water is preferably used. The blending amount is appropriately determined depending on the type of the product, but is preferably 40.0 to 80.0% by mass with respect to the total amount of the oil-in-water emulsified skin cosmetic.
本発明の水中油型乳化皮膚化粧料には上記必須成分の他に、通常、化粧料に用いられる成分、例えば、粉末、色素、アルコール、キレート剤、シリコーン類、酸化防止剤(抗酸化剤)、紫外線吸収剤、保湿剤、香料、防腐剤、中和剤、pH調整剤等必要に応じて本発明の効果を損なわない範囲内で適宜配合して、常法により製造することができる。 In addition to the above essential components, the oil-in-water emulsified skin cosmetic of the present invention usually includes components used in cosmetics, such as powders, pigments, alcohols, chelating agents, silicones, antioxidants (antioxidants). , Ultraviolet absorbers, moisturizers, fragrances, preservatives, neutralizers, pH adjusters, and the like, if necessary, can be appropriately blended within the range not impairing the effects of the present invention, and can be produced by conventional methods.
以下に実施例を挙げて本発明をさらに具体的に説明するが、本発明はこれによってなんら限定されるものではない。配合量は特記しない限りすべて質量%である。
なお、本実施例においては、(a)成分及び(b)成分は下記化合物を用いた。
また、水中油型乳化皮膚化粧料の粘度は、BH型粘度計、ローターNo.6、10回転、30℃で測定した。
Hereinafter, the present invention will be described more specifically with reference to examples. However, the present invention is not limited thereto. Unless otherwise specified, all the amounts are mass%.
In this example, the following compounds were used as the component (a) and the component (b).
In addition, the viscosity of the oil-in-water emulsified skin cosmetic is BH viscometer, rotor No. It was measured at 6, 10 rotations and 30 ° C.
〔(a)成分〕(PEG−240/デシルテトラデセス−20/HDI)コポリマー
アデカノールGT−700(旭電化工業(株)製)を用いた。
〔(b)成分〕寒天ミクロゲル
寒天2質量%水分散液を90℃に加熱し完全に溶解したことを確認した後、静置して流動しないゲル状組成物を得た。このゲルをホモジナイザーにより粉砕して得た寒天ミクロゲル(平均粒子径約50μm)を用いた。
〔(b)成分〕ジェランガムミクロゲル
ジェランガム1質量%水分散液を80℃に加熱し完全に溶解したことを確認した後、塩化ナトリウム2.8質量%水溶液を添加し均一に攪拌し、静置して流動しないゲル状組成物を得た。このゲルをホモジナイザーにより破砕して得たジェランガムミクロゲル(平均粒子径約50μm)を用いた。
[Component (a)] (PEG-240 / decyltetradeces-20 / HDI) copolymer Adecanol GT-700 (Asahi Denka Kogyo Co., Ltd.) was used.
[Component (b)] Agar Microgel Agar 2% by weight aqueous dispersion was heated to 90 ° C. and completely dissolved, and then allowed to stand to obtain a gel composition that did not flow. An agar microgel (average particle size of about 50 μm) obtained by pulverizing this gel with a homogenizer was used.
[Component (b)] Gellan gum microgel 1% by weight aqueous dispersion of gellan gum was heated to 80 ° C. and completely dissolved, and then 2.8% by weight aqueous solution of sodium chloride was added and stirred uniformly and allowed to stand. Thus, a gel composition that does not flow was obtained. A gellan gum microgel (average particle size of about 50 μm) obtained by crushing this gel with a homogenizer was used.
[使用性評価]
下記処方に示す水中油型乳化型皮膚化粧料を調製し、得られた水中油型乳化型皮膚化粧料について、後述の各方法により、使用性(肌へののび、肌へのなじみ、べたつきのなさ、塗布直後のエモリエント感、塗布12時間後のエモリエント感、塗布直後のはり感、連用1ヶ月間後のはり感)評価した。
[Usability evaluation]
The oil-in-water emulsified skin cosmetic shown in the following formulation was prepared, and the obtained oil-in-water emulsified skin cosmetic was subjected to usability (swelling on skin, familiarity with skin, stickiness) by the methods described below. Evaluation, emollient feeling immediately after application, emollient feeling after 12 hours of application, a feeling of stickiness immediately after application, a feeling of stickiness after one month of continuous use).
[使用性(肌へののび)]
女性専門パネル(10名)による実使用試験を行い、肌へののびについて、それぞれ下記の評価基準により評価してもらった。
(評価基準)
◎:10名全員が、のびが軽く、なめらかであると判定した。
○:7〜9名が、のびが軽く、なめらかであると判定した。
△:3〜6名が、のびが軽く、なめらかであると判定した。
×:0〜2名が、のびが軽く、なめらかであると判定した。
[Usability (spread on skin)]
An actual use test was conducted by a panel dedicated to women (10 persons), and the skin extension was evaluated according to the following evaluation criteria.
(Evaluation criteria)
A: All 10 persons judged that the spread was light and smooth.
○: 7 to 9 persons judged that the spread was light and smooth.
(Triangle | delta): Three to six persons judged that the spread was light and smooth.
X: 0 to 2 persons were judged to be light and smooth.
[使用性(肌へのなじみ)]
女性専門パネル(10名)による実使用試験を行い、肌へのなじみについて、それぞれ下記の評価基準により評価してもらった。
(評価基準)
◎:10名全員が、肌へのなじみがあると判定した。
○:7〜9名が、肌へのなじみがあると判定した。
△:3〜6名が、肌へのなじみがあると判定した。
×:0〜2名が、肌へのなじみがあると判定した。
[Usability (familiarity with skin)]
An actual use test was conducted by a panel dedicated to women (10 persons), and the familiarity with the skin was evaluated according to the following evaluation criteria.
(Evaluation criteria)
A: All 10 people determined that they were familiar with the skin.
○: Seven to nine people determined that they were familiar with the skin.
(Triangle | delta): Three to six persons determined with having familiarity with skin.
X: 0 to 2 persons determined that they were familiar with the skin.
[使用性(べたつき)]
女性専門パネル(10名)による実使用試験を行い、べたつきについて、それぞれ下記の評価基準により評価してもらった。
(評価基準)
◎:10名全員が、べたつきがなく、しっとりしたと判定した。
○:7〜9名が、べたつきがなく、しっとりしたと判定した。
△:3〜6名が、べたつきがなく、しっとりしたと判定した。
×:0〜2名が、べたつきがなく、しっとりした判定した。
[Usability (stickiness)]
An actual use test was conducted by a panel dedicated to women (10 persons), and the stickiness was evaluated according to the following evaluation criteria.
(Evaluation criteria)
A: All 10 people judged that there was no stickiness and was moist.
○: 7 to 9 people judged that there was no stickiness and was moist.
(Triangle | delta): It determined that 3-6 persons did not have stickiness and were moist.
X: 0 to 2 persons were judged to be moist without stickiness.
[使用性(塗布直後および塗布12時間後のエモリエント感)]
女性専門パネル(10名)による実使用試験を行い、塗布直後および塗布12時間後にエモリエント感について、それぞれ下記の評価基準により評価してもらった。
(評価基準)
◎:10名全員が、エモリエント感があると判定した。
○:7〜9名が、エモリエント感があると判定した。
△:3〜6名が、エモリエント感があると判定した。
×:0〜2名が、エモリエント感があると判定した。
[Usability (emollient feeling immediately after application and 12 hours after application)]
An actual use test was conducted by a female professional panel (10 persons), and the emollient feeling was evaluated immediately after application and 12 hours after application according to the following evaluation criteria.
(Evaluation criteria)
(Double-circle): All 10 persons determined that there was an emollient feeling.
○: Seven to nine people determined that there was an emollient feeling.
(Triangle | delta): Three to six persons determined with emollient feeling.
X: 0-2 persons judged having emollient feeling.
[使用性(塗布直後および連用1ヶ月後のはり感)]
◎:10名全員が、はり感があると判定した。
○:7〜9名が、はり感があると判定した。
△:3〜6名が、はり感があると判定した。
×:0〜2名が、はり感があると判定した。
[Usability (A feeling of sticking immediately after application and one month after continuous use)]
A: All 10 people judged that there was a feeling of stickiness.
○: Seven to nine people determined that there was a feeling of stickiness.
(Triangle | delta): Three to six persons determined that there was a feeling of stickiness.
X: 0 to 2 persons judged to have a feeling of elasticity.
[使用性(塗布直後および連用1ヶ月後のしわ・たるみ改善効果)]
◎:10名全員が、しわ・たるみ改善効果があると判定した。
○:7〜9名が、しわ・たるみ改善効果があると判定した。
△:3〜6名が、しわ・たるみ改善効果があると判定した。
×:0〜2名が、しわ・たるみ改善効果があると判定した。
[Usability (wrinkle / sag improvement effect immediately after application and one month after continuous use)]
A: All 10 persons judged to have an effect of improving wrinkles and sagging.
○: 7 to 9 persons judged to have an effect of improving wrinkles and sagging.
(Triangle | delta): Three to six persons determined that there was a wrinkle and sagging improvement effect.
X: 0 to 2 persons judged to have a wrinkle / sag improvement effect.
「表1」に示す水中油型乳化皮膚化粧料(ジェルクリーム)を、次に示す方法により調整した。
<製法>
一部の(1)、(2)、一部の(4)、(8)、(9)、(15)、(16)、(17)、(20)、(21)を90℃で均一に混合溶解し、一昼夜常温で放置する。翌日、このゲルをホモミキサーで粉砕する。次いで、残部の(1)、(7)、(18)と、残部の(4)、(13)、(10)、(12)、(14)、(19)、(22)とを、順次、先に粉砕したゲルに添加する。これに、(5)、(11)、(23)を添加してホミミキサーで乳化する。最後に、(3)、(6)の混合物を95℃に加熱して均一としたものを先の乳化物に添加して、脱気して目的の水中油型乳化皮膚化粧料を得る。
The oil-in-water emulsified skin cosmetic (gel cream) shown in “Table 1” was prepared by the following method.
<Production method>
Some (1), (2), some (4), (8), (9), (15), (16), (17), (20), (21) are uniform at 90 ° C And dissolve at room temperature overnight. The next day, the gel is crushed with a homomixer. Next, the remaining (1), (7), (18) and the remaining (4), (13), (10), (12), (14), (19), (22) are sequentially Add to the previously crushed gel. (5), (11), and (23) are added to this and emulsified with a homomixer. Finally, the mixture obtained by heating the mixture of (3) and (6) to 95 ° C. to make it uniform is added to the previous emulsion and deaerated to obtain the desired oil-in-water emulsion skin cosmetic.
(*2)商品名:エルデュウPS−203、味の素ヘルシーサプライ株式会社製
上記「表1」の結果から、本願発明の実施例1は、肌へののび、肌へのなじみ、べたつきのなさ、塗布直後のエモリエント感、塗布12時間後のエモリエント感、塗布直後のはり感、連用1ヶ月後のはり感の全ての使用感に優れることが分かる。
これに対し、本願発明の必須成分である成分(A)〜(C)のいずれかを欠いた比較例1〜3は、上記の使用感のいずれかを欠いたものとなり、実施例のように全ての使用感を発揮することが出来ないことが分かる。
From the results of the above-mentioned “Table 1”, Example 1 of the present invention shows that the skin spreads, fits to the skin, does not feel sticky, emollient immediately after application, emollient feeling after 12 hours of application, and feel after application. , It can be seen that all the feeling of use after 1 month of continuous use is excellent.
On the other hand, Comparative Examples 1 to 3 lacking any of the components (A) to (C), which are essential components of the present invention, lack any of the above feelings of use, as in the Examples. It can be seen that not all of the feeling of use can be demonstrated.
本発明に関し、さらに実施例を下記に示す。実施例2〜5の水中油型乳化皮膚化粧料は、いずれも実施例1と同様に本願発明の効果に優れた皮膚化粧料である。 Further examples relating to the present invention are given below. The oil-in-water emulsified skin cosmetics of Examples 2 to 5 are all skin cosmetics that are excellent in the effects of the present invention as in Example 1.
[実施例2]ジェルクリーム(オールインワンタイプ)
配合成分 配合量(質量%)
(1)イオン交換水 残 余
(2)グリセリン 8.0
(3)ジプロピレングリコール 6.0
(4)サン酸オクチル 2.0
(5)成分(a)(PEG−240/デシルテトラデセス−20/HDI)
コポリマー 1.5
(6)タルク/二酸化チタン/酸化アルミニウム/二酸化ケイ素 0.5
(7)塩化ナトリウム 1.0
(8)成分(b)寒天ミクロゲル 0.8
(9)緑茶エキス 0.1
(10)成分(c)N−ラウロイル−L−グルタミン酸
ジ(オクチルドデシル・フィトステリル・ベヘニル) 1.2
商品名:エルデュウPS−304、
(味の素ヘルシーサプライ株式会社製)
(11)ポリオキシエチレン硬化ヒマシ油(60EO) 1.0
(12)メタリン酸Na 0.01
(13)フェノキシエタノール 0.5
(14)エタノール 5.0
(15)香料 適 量
<製法>
表1の実施例1と同様の方法により製造した。粘度は64000mPa・sであった。
[Example 2] Gel cream (all-in-one type)
Compounding ingredients Compounding amount (% by mass)
(1) Ion-exchanged water remainder (2) Glycerin 8.0
(3) Dipropylene glycol 6.0
(4) Octyl sanate 2.0
(5) Component (a) (PEG-240 / decyltetradeceth-20 / HDI)
Copolymer 1.5
(6) Talc / Titanium dioxide / Aluminum oxide / Silicon dioxide 0.5
(7) Sodium chloride 1.0
(8) Component (b) Agar Microgel 0.8
(9) Green tea extract 0.1
(10) Component (c) N-lauroyl-L-glutamic acid di (octyldodecyl phytosteryl behenyl) 1.2
Product name: El Dew PS-304,
(Ajinomoto Healthy Supply Co., Ltd.)
(11) Polyoxyethylene hydrogenated castor oil (60EO) 1.0
(12) Na metaphosphate 0.01
(13) Phenoxyethanol 0.5
(14) Ethanol 5.0
(15) Perfume appropriate amount <Production method>
It was produced by the same method as in Example 1 in Table 1. The viscosity was 64000 mPa · s.
[実施例3]美白美容液
配合成分 配合量(質量%)
(1)イオン交換水 残 余
(2)ジメチコン(1.5mPa・s) 3.0
(3)グリセリン 2.0
(4)1,3−ブチレングリコール 5.0
(5)ポリエチレングリコール1500 3.0
(6)ポリエチレングリコール20000 3.0
(7)オクタン酸セチル 3.0
(8)クエン酸 0.01
(9)クエン酸ナトリウム 0.1
(10)ヘキサメタリン酸ナトリウム 0.1
(11)グリチルリチン酸ジカリウム 0.1
(12)アスコルビン酸グルコシド 2.0
(13)酢酸トコフェロール 0.1
(14)ユキノシタエキス 0.1
(15)成分(c)N−ラウロイル−L−グルタミン酸
ジ(コレステリル・ベヘニル・オクチルドデシル) 1.5
商品名:エルデュウCL−202
(味の素ヘルシーサプライ株式会社製)
(16)エデト酸塩 0.01
(17)キサンタンガム 0.1
(18)ステアリン酸PEG−40 0.5
(19)成分(a)(PEG−240/デシルテトラデセス−20/
HDI)コポリマー 1.0
(20)成分(b)ジェランガムミクロゲル 2.0
(21)フェノキシエタノール 0.5
(22)パラベン 0.15
<製法>
表1の実施例1と同様の方法により製造した。粘度は38000mPa・sであった。
[Example 3] Whitening beauty serum compounding component Compounding amount (mass%)
(1) Ion-exchanged water remainder (2) Dimethicone (1.5 mPa · s) 3.0
(3) Glycerin 2.0
(4) 1,3-butylene glycol 5.0
(5) Polyethylene glycol 1500 3.0
(6) Polyethylene glycol 20000 3.0
(7) Cetyl octanoate 3.0
(8) Citric acid 0.01
(9) Sodium citrate 0.1
(10) Sodium hexametaphosphate 0.1
(11) Dipotassium glycyrrhizinate 0.1
(12) Ascorbic acid glucoside 2.0
(13) Tocopherol acetate 0.1
(14) Yukinoshita extract 0.1
(15) Component (c) N-lauroyl-L-glutamic acid di (cholesteryl / behenyl / octyldodecyl) 1.5
Product name: El Deu CL-202
(Ajinomoto Healthy Supply Co., Ltd.)
(16) Edetate 0.01
(17) Xanthan gum 0.1
(18) PEG-40 stearate 0.5
(19) Component (a) (PEG-240 / decyltetradeceth-20 /
HDI) Copolymer 1.0
(20) Component (b) Gellan gum microgel 2.0
(21) Phenoxyethanol 0.5
(22) Paraben 0.15
<Production method>
It was produced by the same method as in Example 1 in Table 1. The viscosity was 38000 mPa · s.
[実施例4]抗老化美容液
配合成分 配合量(質量%)
(1)イオン交換水 残 余
(2)ジメチコン(5mPa・s) 3.0
(3)グリセリン 2.0
(4)1,3−ブチレングリコール 5.0
(5)エリスリトール 3.0
(6)ポリエチレングリコール20000 3.0
(7)ピバリン酸イソデシル 3.0
(8)クエン酸 0.01
(9)クエン酸ナトリウム 0.1
(10)ヘキサメタリン酸ナトリウム 0.1
(11)グリチルリチン酸ジカリウム 0.1
(12)カルノシン 3.0
(13)酢酸トコフェロール 0.1
(14)チオタウリン 0.1
(15)成分(c)N−ラウロイル−L−グルタミン酸
ジ(フィトステリル・オクチルドデシル) 1.5
商品名:エルデュウPS−203
(味の素ヘルシーサプライ株式会社製)
(16)エデト酸塩 0.01
(17)アクリル酸/アクリル酸アルキル(C10−30)コポリマー
0.05
(18)アセンヤクエキス 0.01
(19)成分(a)(PEG−240/デシルテトラデセス−20/
HDI)コポリマー 1.0
(20)成分(b)ジェランガム 2.0
(21)フェノキシエタノール 0.5
(22)パラベン 0.15
<製法>
表1の実施例1と同様の方法により製造した。粘度は45000mPa・sであった。
[Example 4] Ingredients for blending anti-aging serum (Mass%)
(1) Ion-exchanged water remainder (2) Dimethicone (5 mPa · s) 3.0
(3) Glycerin 2.0
(4) 1,3-butylene glycol 5.0
(5) Erythritol 3.0
(6) Polyethylene glycol 20000 3.0
(7) Isodecyl pivalate 3.0
(8) Citric acid 0.01
(9) Sodium citrate 0.1
(10) Sodium hexametaphosphate 0.1
(11) Dipotassium glycyrrhizinate 0.1
(12) Carnosine 3.0
(13) Tocopherol acetate 0.1
(14) Thiotaurine 0.1
(15) Component (c) N-lauroyl-L-glutamic acid di (phytosteryl octyldodecyl) 1.5
Product Name: El Dew PS-203
(Ajinomoto Healthy Supply Co., Ltd.)
(16) Edetate 0.01
(17) Acrylic acid / alkyl acrylate (C10-30) copolymer
0.05
(18) Asenyaku extract 0.01
(19) Component (a) (PEG-240 / decyltetradeceth-20 /
HDI) Copolymer 1.0
(20) Component (b) Gellan gum 2.0
(21) Phenoxyethanol 0.5
(22) Paraben 0.15
<Production method>
It was produced by the same method as in Example 1 in Table 1. The viscosity was 45000 mPa · s.
[実施例5]美白美容液
配合成分 配合量(質量%)
(1)イオン交換水 残 余
(2)ジメチコン(2mPa・s) 2.0
(3)イソドデカン 2.0
(4)グリセリン 2.0
(5)1,3−ブチレングリコール 5.0
(6)キシリトール 3.0
(7)ポリエチレングリコール20000 3.0
(8)ピバリン酸イソデシル 3.0
(9)クエン酸 0.01
(10)クエン酸ナトリウム 0.1
(11)ヘキサメタリン酸ナトリウム 0.1
(12)グリチルリチン酸ジカリウム 0.1
(13)4−メトキシサリチル酸カリウム 1.0
(14)酢酸トコフェロール 0.1
(15)トラネキサム酸 2.0
(16)成分(c)N−ミリストイル−メチルアラニン
(フィトステリル・デシルテトラデシル) 1.5
商品名:エルデュウAPS−307
(味の素ヘルシーサプライ株式会社製)
(17)エデト酸塩 0.01
(18)アクリル酸/アクリル酸アルキル(C10−30)コポリマー
0.05
(19)ビャクレンカエキス 0.01
(20)成分(a)(PEG−240/デシルテトラデセス−20/
HDI)コポリマー 1.0
(21)成分(b)ジェランガム 2.0
(22)フェノキシエタノール 0.5
(23)パラベン 0.15
<製法>
表1の実施例1と同様の方法により製造した。粘度は25000mPa・sであった。
[Example 5] Whitening beauty serum compounding component Compounding amount (mass%)
(1) Ion-exchanged water remainder (2) Dimethicone (2 mPa · s) 2.0
(3) Isododecane 2.0
(4) Glycerin 2.0
(5) 1,3-butylene glycol 5.0
(6) Xylitol 3.0
(7) Polyethylene glycol 20000 3.0
(8) Isodecyl pivalate 3.0
(9) Citric acid 0.01
(10) Sodium citrate 0.1
(11) Sodium hexametaphosphate 0.1
(12) Dipotassium glycyrrhizinate 0.1
(13) Potassium 4-methoxysalicylate 1.0
(14) Tocopherol acetate 0.1
(15) Tranexamic acid 2.0
(16) the component (c) N-myristoyl - methylalanine (phytosteryl-decyltetradecyl) 1.5
Product Name: El Dew APS-307
(Ajinomoto Healthy Supply Co., Ltd.)
(17) Edetate 0.01
(18) Acrylic acid / alkyl acrylate (C10-30) copolymer
0.05
(19) Byaclenca extract 0.01
(20) Component (a) (PEG-240 / decyltetradeceth-20 /
HDI) Copolymer 1.0
(21) Component (b) Gellan gum 2.0
(22) Phenoxyethanol 0.5
(23) Paraben 0.15
<Production method>
It was produced by the same method as in Example 1 in Table 1. The viscosity was 25000 mPa · s.
本発明によれば、肌へののびとなじみが良好で、べたつきがなく、エモリエント感、はり感等の使用感に極めて優れた水中油型乳化皮膚化粧料を提供出来る。 According to the present invention, it is possible to provide an oil-in-water emulsified skin cosmetic that has good spreading and familiarity to the skin, is not sticky, and is extremely excellent in use feeling such as emollient feeling and stickiness.
Claims (2)
(a)(PEG−240/デシルテトラデセス−20/HDI)コポリマー
(b)ゲル化能を有する親水性化合物からなる平均粒径0.1〜1000μmのミクロゲル
(c)N−ラウロイル−L−グルタミン酸ジ(コレステリル・ベヘニル・オクチルドデシル)、N−ラウロイル−L−グルタミン酸ジ(コレステリル・オクチルドデシル)、N−ラウロイル−L−グルタミン酸ジ(フィトステリル・2−オクチルドデシル)、N−ラウロイル−L−グルタミン酸ジ(フィトステリル・ベヘニル・2−オクチルドデシル)、N−ミリストイル−メチルアラニン(フィトステリル・デシルテトラデシル)からなる群から選択される1種又は2種以上 With respect to the total amount of the oil-in-water emulsified skin cosmetic, 1.0 to 3.0% by mass of the following component (a), 0.1 to 0.5% by mass of component (b), and component (c) It is characterized by containing 0.005-2.0 mass%, and also mass ratio of content of a component (a) and a component (b) is a component (a) / component (b) = 5/1. The oil-in-water emulsified skin cosmetic is characterized by having a viscosity of ˜8 / 1 and the viscosity of the oil-in-water emulsified skin cosmetic is 20000 to 80000 mPa · s.
(A) (PEG-240 / decyltetradeceth-20 / HDI) copolymer (b) Microgel having a mean particle size of 0.1 to 1000 μm comprising a hydrophilic compound having gelling ability (c) N-lauroyl-L- Glutamate di (cholesteryl / behenyl / octyldodecyl), N-lauroyl-L-glutamate di (cholesteryl / octyldodecyl), N-lauroyl-L-glutamate di (phytosteryl / 2-octyldodecyl), N-lauroyl-L-glutamic acid One or more selected from the group consisting of di (phytosteryl, behenyl, 2-octyldodecyl) and N-myristoyl-methylalanine (phytosteryl , decyltetradecyl)
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JP6295158B2 (en) * | 2013-10-01 | 2018-03-14 | 花王株式会社 | Oil-in-water emulsified cosmetic |
JP2015091771A (en) * | 2013-10-01 | 2015-05-14 | 花王株式会社 | Oil-in-water emulsion cosmetic |
JP2015091783A (en) * | 2013-10-04 | 2015-05-14 | 御木本製薬株式会社 | External preparation for skin |
JP6108464B2 (en) * | 2013-12-13 | 2017-04-05 | 玉理化学株式会社 | Pretreatment agent for foamy oxidative hair |
EP3124013A4 (en) * | 2014-03-28 | 2017-11-08 | Kosé Corporation | Cosmetic |
JP6804187B2 (en) * | 2015-10-30 | 2020-12-23 | 株式会社コーセー | Oil-in-water emulsified composition |
JP7061062B2 (en) * | 2016-04-28 | 2022-04-27 | 株式会社 資生堂 | Underwater oil type solid cosmetics |
KR102692643B1 (en) * | 2017-11-10 | 2024-08-06 | (주)아모레퍼시픽 | Cosmetic composition of bigel type |
JP2018138600A (en) * | 2018-05-14 | 2018-09-06 | 株式会社 資生堂 | Foamy aqueous cosmetic |
JP2020063213A (en) * | 2018-10-18 | 2020-04-23 | 株式会社ノエビア | Oil-in-water emulsion composition |
JP7144846B2 (en) * | 2018-12-04 | 2022-09-30 | 株式会社ダリヤ | Skin cosmetics |
JP7433893B2 (en) * | 2019-12-25 | 2024-02-20 | 株式会社 資生堂 | Oil-in-water emulsion composition |
TW202203892A (en) * | 2020-03-31 | 2022-02-01 | 日商高絲股份有限公司 | water-based composition |
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JP3729789B2 (en) * | 2002-03-26 | 2005-12-21 | 株式会社コーセー | Oil-in-water emulsified cosmetic |
JP2007217338A (en) * | 2006-02-16 | 2007-08-30 | Noevir Co Ltd | Oil-in-water type emulsion composition |
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