Lecithin-containing cosmetic composition
A cosmetic composition with lecithin, trihydric alcohols, and oily components addresses the adhesion and stability issues of lecithin in cosmetics, enabling easy dispersion and stable storage.
Patent Information
- Application Number
- JP2024043394
- Authority / Receiving Office
- JP · JP
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2024-03-19
- Publication Date
- 2025-10-02
AI Technical Summary
Lecithin tends to adhere to itself when added to cosmetics, requiring prolonged stirring and high stirring power or heating to achieve uniform dispersion, and existing compositions with high lecithin concentration have poor fluidity and storage stability.
A cosmetic composition containing lecithin, an organic solvent comprising trihydric or higher alcohols and 1,2-alkanediols, and an oily component, with specific ratios and amounts to ensure easy dispersion and stability.
The composition allows for easy handling and uniform dispersion of lecithin without heating, with high fluidity and excellent storage stability, suitable for commercial distribution.
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Abstract
Description
[Technical Field]
[0001] The present invention relates to a cosmetic composition containing lecithin. [Background technology]
[0002] Lecithin is a general term for a mixture primarily composed of various phospholipids derived from animals or plants. It is widely used in cosmetics as a naturally derived surfactant with no risk of skin irritation. Lecithin is primarily used as an emulsifier, but is also used as a liposome membrane material, a moisturizer, a texture improver, and other applications. When incorporating lecithin into cosmetics as an emulsifier, it is necessary to uniformly disperse the lecithin in water or oil. However, lecithin tends to adhere to itself, and adding a large amount of lecithin at once results in the formation of lumps. Therefore, prolonged stirring and mixing is required to achieve uniform dispersion in water or oil. Dispersion within a short period of time requires the use of a device with high stirring power or high heating during stirring and mixing. Therefore, a composition that can easily incorporate lecithin and reduce such labor is desired. Furthermore, it is highly desirable for cosmetic manufacturers that such compositions be commercially available as raw materials for cosmetics. However, in order to distribute such compositions commercially, the compositions must have excellent long-term storage stability.
[0003] Patent Document 1 describes an invention of a lecithin composition having improved water dispersion properties, which comprises lecithin as the main component, uniformly blended with 1-30% by weight of ethyl alcohol, and at least one of up to 40% by weight of propylene glycol and up to 30% by weight of glycerin. However, the lecithin composition disclosed in Patent Document 1 contains lecithin at a high concentration, and is paste-like and has poor fluidity, making it difficult to handle when added to water. Furthermore, Patent Document 1 does not describe the inclusion of an oily component. [Prior art documents] [Patent documents]
[0004] [Patent Document 1] Japanese Patent Publication No. 56-163746 Summary of the Invention [Problem to be solved by the invention]
[0005] An object of the present invention is to provide a composition that allows lecithin to be easily incorporated into cosmetics and that has excellent storage stability. [Means for solving the problem]
[0006] In view of the above circumstances, the present inventors have conducted extensive research and found that the above-mentioned problems can be solved by a cosmetic composition containing the following components (A) to (C), wherein the content of component (A) is 0.1 to 30 mass %, the content of component (B) is 55 mass % or more, the mass ratio of components (B1) to (B2) is 95:5 to 55:45, and the content of component (C) is 0.01 to 0.4 times the mass of the content of component (A), and have completed the present invention. (A) Lecithin (B) an organic solvent consisting of the following components (B1) and (B2): (B1) One or more alcohols selected from trihydric or higher alcohols having 3 to 6 carbon atoms (B2) One or more selected from ethanol and 1,2-alkanediols having 3 to 6 carbon atoms (C) Oily component [Effects of the Invention]
[0007] The cosmetic composition of the present invention has high fluidity and is easy to handle, and can uniformly disperse lecithin in water or oil in a short time even with weak stirring. Furthermore, since the cosmetic composition of the present invention does not require heating when dispersing in water or oil, it can be used in the production of cosmetics that have a reduced environmental impact, known as cold processes or green processes. Furthermore, the cosmetic composition of the present invention has excellent storage stability and can be distributed commercially. DETAILED DESCRIPTION OF THE INVENTION
[0008] The cosmetic composition of the present invention is characterized by containing the following components (A) to (C). (A) Lecithin (B) an organic solvent consisting of the following components (B1) and (B2): (B1) One or more alcohols selected from trihydric or higher alcohols having 3 to 6 carbon atoms (B2) One or more selected from ethanol and 1,2-alkanediols having 3 to 6 carbon atoms (C) Oily component
[0009] Specific examples of the lecithin used as component (A) in the present invention include lecithins obtained from plants such as soybean, rapeseed, sunflower, safflower, peanut, cottonseed, corn, rice, and barley, as well as egg yolk, and hydrogenated products thereof. Lecithins with different phosphatidylcholine (hereinafter, referred to as PC) contents depending on the degree of purification are commercially available, and lecithins with any PC content can be used in the present invention. Among these, lecithins obtained from soybean or sunflower and hydrogenated products thereof are preferred from the viewpoint of availability.
[0010] The amount of component (A) in the cosmetic composition of the present invention is preferably 0.1 to 30% by mass. Although the effects of the present invention can be achieved even when the amount of component (A) is less than this, it is undesirable because a larger amount of cosmetic composition is required to incorporate the desired amount of lecithin into the cosmetic. From this perspective, the amount of component (A) is more preferably 1% by mass or more, and even more preferably 5% by mass or more. On the other hand, if the amount of component (A) is greater than this, it becomes difficult to sufficiently dissolve component (A) in the cosmetic composition, and the cosmetic composition becomes less fluid, making it difficult to handle. From this perspective, the amount of component (A) is more preferably 28% by mass or less, and even more preferably 25% by mass or less.
[0011] Component (B) used in the present invention is an organic solvent consisting of the following components (B1) and (B2). In the present invention, component (B) is used for the purpose of dissolving component (A), lecithin, in the cosmetic composition. (B1) One or more alcohols selected from trihydric or higher alcohols having 3 to 6 carbon atoms (B2) One or more selected from ethanol and 1,2-alkanediols having 3 to 6 carbon atoms
[0012] Specific examples of the trihydric or higher alcohol having 3 to 6 carbon atoms as component (B1) used in the present invention include glycerin, diglycerin, sorbitol, xylitol, erythritol, mannitol, etc. These may be used alone or in combination of two or more. Of these, from the viewpoint of further exerting the effects of the present invention, glycerin, diglycerin, and erythritol are preferred, and glycerin is most preferred.
[0013] Specific examples of the 1,2-alkanediol having 3 to 6 carbon atoms used in the present invention as component (B2) include 1,2-propanediol, 1,2-butanediol, 1,2-pentanediol, and 1,2-hexanediol. These may be used alone or in combination of two or more. From the viewpoint of further exerting the effects of the present invention, component (B2) is preferably ethanol, 1,2-butanediol, 1,2-pentanediol, or 1,2-hexanediol, with ethanol and 1,2-pentanediol being most preferred.
[0014] The amount of component (B) in the cosmetic composition of the present invention is preferably 55% by mass or more. If the amount of component (B) is less than this, it becomes difficult to sufficiently dissolve component (A) in the cosmetic composition. From this perspective, the amount of component (B) is more preferably 60% by mass or more, and even more preferably 65% by mass or more. On the other hand, there is no particular upper limit to the amount of component (B) in the cosmetic composition from the perspective of achieving the effects of the present invention, and it may be adjusted appropriately based on the amounts of components other than component (B) in the cosmetic composition.
[0015] In the component (B) used in the present invention, the mass ratio of components (B1) to (B2) is preferably 95:5 to 55:45. If the mass ratio of components (B1) to (B2) is outside this range, component (A) cannot be sufficiently dissolved in the cosmetic composition. From this perspective, the mass ratio of components (B1) to (B2) is more preferably 90:10 to 60:40, and even more preferably 85:15 to 65:35.
[0016] The oily component of component (C) used in the present invention is not particularly limited as long as it is a hydrophobic component that is poorly soluble in water, but specific examples include higher alcohols such as myristyl alcohol, cetanol, stearyl alcohol, oleyl alcohol, behenyl alcohol, jojoba alcohol, batyl alcohol, hexyldecanol, isostearyl alcohol, and 2-octyldodecanol; higher fatty acids such as myristic acid, palmitic acid, stearic acid, isostearic acid, behenic acid, 12-hydroxystearic acid, palmitoleic acid, and oleic acid; dodecane, isododecane, hexadecane, isohexadecane, liquid paraffin, heavy liquid isocyanate, and the like. Hydrocarbon oils such as isoparaffin, light liquid isoparaffin, α-olefin oligomer, squalane, and hydrogenated polyisobutene; vegetable oils such as coconut oil, palm oil, palm kernel oil, safflower oil, olive oil, castor oil, avocado oil, sesame oil, tea seed oil, evening primrose oil, wheat germ oil, macadamia nut oil, hazelnut oil, kukui nut oil, rosehip oil, Argania spinosa kernel oil, meadowfoam oil, persic oil, tea tree oil, peppermint oil, camellia oil, corn oil, rapeseed oil, sunflower oil, wheat germ oil, linseed oil, cottonseed oil, soybean oil, peanut oil, rice bran oil, cocoa butter, shea butter, hydrogenated coconut oil, hydrogenated castor oil, jojoba oil, and hydrogenated jojoba oil;Glyceryl triethylhexanoate, glyceryl tricaprylate, glyceryl tricaprate, caprylic / capric triglyceride, glyceryl trioleate, glyceryl triisostearate, trimethylolpropane triethylhexanoate, pentaerythrityl tetraethylhexanoate, 3-methyl-1,5-pentanediol dineopentanoate, 2,4-diethyl-1,5-pentanediol dineopentanoate, cetyl ethylhexanoate, hexyl ethylhexanoate Decyl, Isononyl Isononanoate, Isodecyl Isononanoate, Isotridecyl Isononanoate, Isodecyl Neopentanoate, Isotridecyl Neopentanoate, Isostearyl Neopentanoate, Octyldodecyl Neodecanoate, Isopropyl Myristate, Hexyldecyl Myristate, Octyldodecyl Myristate, Isopropyl Palmitate, Ethylhexyl Palmitate, Cetyl Palmitate, Octyldodecyl Palmitate, Ethyl Oleate, Oleyl Oleate, Olein Ester oils such as octyldodecyl isostearate, isopropyl isostearate, octyldodecyl isostearate, octyldodecyl erucate, isopropyl lanolinate, octyldodecyl lanolinate, dicaprylyl carbonate, diethylhexyl succinate, diisopropyl adipate, diisobutyl adipate, diethyl sebacate, diisopropyl sebacate, diethylhexyl sebacate, and triethyl citrate; silicone oils such as dimethicone, cyclomethicone, and phenyl dimethicone. Dimer acid esters such as dimer dilinoleyl dimer dilinoleate, bis(behenyl / isostearyl / phytosteryl) dimer dilinoleate, di(isostearyl / phytosteryl) dimer dilinoleate, behenyl / phytosteryl dimer dilinoleate, phytosteryl / isostearyl / cetyl / stearyl / behenyl) dimer dilinoleate, hydrogenated castor oil dimer dilinoleate, and diglyceryl isostearate dimer dilinoleate;N-Acyl glutamic acid esters such as dioctyldodecyl N-lauroyl-L-glutamate, diphytosteryl / octyldodecyl N-lauroyl-L-glutamate, dicholesteryl / octyldodecyl N-lauroyl-L-glutamate, dicholesteryl / behenyl / octyldodecyl N-lauroyl-L-glutamate, diphytosteryl / behenyl / octyldodecyl N-lauroyl-L-glutamate; phytosteryl oleate, phytosteryl hydroxystearate, phytosteryl isostearate, phytosteryl lanolinate, macadamia nut oil Examples of suitable sterol esters include phytosteryl fatty acids, phytosteryl sunflower seed oil fatty acids, phytosteryl rice bran oil fatty acids, cholesteryl oleate, cholesteryl hydroxystearate, cholesteryl isostearate, cholesteryl lanolinate, cholesteryl macadamia nut oil fatty acids, cholesteryl sunflower seed oil fatty acids, and cholesteryl rice bran oil fatty acids; malic acid esters such as diisostearyl malate, diethylhexyl malate, dioctyldodecyl malate, and dialkyl (C12,13) malate; and vitamin E compounds such as tocopherol and tocopheryl acetate. These may be used alone or in combination of two or more.
[0017] In the present invention, component (C) is used for the purpose of improving the storage stability of the cosmetic composition of the present invention. In a composition containing only components (A) and (B), precipitation of component (A) occurs over time. However, by incorporating component (C) in addition to components (A) and (B), precipitation of component (A) over time can be suppressed, thereby improving the storage stability of the cosmetic composition. Because component (C) is a hydrophobic component, it is practically insoluble in the organic solvent of component (B), which is a hydrophilic component. Nevertheless, the incorporation of component (C) improves the storage stability of the cosmetic composition of the present invention. This is presumably because, in the cosmetic composition, lecithin, component (A), orients its hydrophobic chains toward and surrounds component (C), a hydrophobic component, forming a certain structure that inhibits precipitation due to reaggregation of component (A). Therefore, it is expected that the oily component of component (C) will exert its effects regardless of its type.
[0018] The amount of component (C) blended into the cosmetic composition of the present invention is preferably 0.01 to 0.4 times by mass relative to the content of component (A). If the amount of component (C) blended is less than this, the effects achieved by blending component (C) described above will not be fully exhibited. From this perspective, the amount of component (C) blended is more preferably 0.02 times by mass or more relative to the content of component (A), and even more preferably 0.03 times by mass or more. On the other hand, if the amount of component (C) blended is greater than this, component (C) will not be sufficiently dissolved in the cosmetic composition. From this perspective, the amount of component (C) blended is more preferably 0.35 times by mass or less relative to the content of component (A), and even more preferably 0.3 times by mass or less.
[0019] The present invention can further include an organic acid as component (D). Component (D) is used in the present invention to suppress changes in the appearance of the cosmetic composition over time and to further improve storage stability. Specific examples of component (D) include acetic acid, propionic acid, butyric acid, valeric acid, caproic acid, benzoic acid, salicylic acid, gallic acid, oxalic acid, malonic acid, succinic acid, glutaric acid, adipic acid, maleic acid, fumaric acid, phthalic acid, glycolic acid, lactic acid, malic acid, tartaric acid, citric acid, gluconic acid, levulinic acid, ketoglutaric acid, glutamic acid, aspartic acid, and phytic acid. These may be used alone or in combination of two or more. Of these, benzoic acid, succinic acid, lactic acid, malic acid, citric acid, glutamic acid, aspartic acid, and phytic acid are preferred, with lactic acid, malic acid, and citric acid being more preferred. The amount of component (D) blended in the cosmetic composition of the present invention is preferably from 0.01 to 1 mass %, more preferably from 0.02 to 0.5 mass %.
[0020] In addition to the above-mentioned components, the cosmetic composition of the present invention may contain components commonly used in cosmetics, such as water, moisturizing agents, surfactants, thickening / gelling agents, antioxidants, whitening agents, antibacterial / preservative agents, chelating agents, pH adjusters, etc., within the scope of not impairing the effects of the present invention. Note that if the cosmetic composition of the present invention contains a large amount of water, the effects of the present invention may be impaired. From this perspective, the water content in the cosmetic composition of the present invention is preferably less than 10% by mass, more preferably less than 5% by mass, and even more preferably less than 1% by mass.
[0021] There are no particular limitations on the method for producing the cosmetic composition of the present invention, and the cosmetic composition of the present invention can be produced by stirring and mixing the components to be blended in the cosmetic composition of the present invention at room temperature or while heating.
[0022] The cosmetic composition of the present invention obtained as described above has high fluidity and is therefore easy to handle when incorporated into cosmetics. Furthermore, lecithin can be uniformly dispersed in water or oil in a short time even with weak stirring power, such as with a magnetic stirrer, without the need for a device with high stirring power, such as a homomixer. Furthermore, the cosmetic composition of the present invention does not require heating when dispersed in water or oil. However, this does not preclude the use of heating the cosmetic composition of the present invention when it is used, and heating may be applied as needed. Furthermore, the cosmetic composition of the present invention has excellent storage stability and can be distributed commercially. In the present invention, "excellent storage stability" means that the cosmetic composition does not undergo significant changes, such as separation or precipitation, that would impair the effects of the present invention after long-term storage at room temperature for one month or more.
[0023] The cosmetic composition of the present invention allows lecithin to be easily blended into cosmetics. Cosmetics blended with the cosmetic composition of the present invention (cosmetics of the present invention) can optionally contain water and additives typically blended into cosmetics, such as oily bases, moisturizers, texture improvers, surfactants, polymers, thickeners, gelling agents, antioxidants, reducing agents, oxidizing agents, antioxidants, whitening agents, vitamins and their derivatives, plant, animal, or microbial extracts, UV absorbers, antibacterial and preservatives, chelating agents, pH adjusters, acids and alkalis, solvents and propellants, antipruritics, exfoliants and dissolving agents, antiperspirants, cooling agents, astringents, enzymes, nucleic acids, anti-inflammatory and anti-inflammatory agents, hair growth agents, blood circulation promoters, and stimulants, hormones, anti-wrinkle and anti-aging agents, irritation soothing agents, cooling agents, warming agents, powders, colorants, coloring agents, dyes and pigments, and fragrances.
[0024] Examples of oily bases include higher alcohols such as cetanol, myristyl alcohol, oleyl alcohol, lauryl alcohol, cetostearyl alcohol, stearyl alcohol, arachyl alcohol, behenyl alcohol, jojoba alcohol, chimyl alcohol, selachyl alcohol, batyl alcohol, hexyldecanol, isostearyl alcohol, 2-octyldodecanol, and dimer diol; aralkyl alcohols and derivatives such as benzyl alcohol; lauric acid, myristic acid, palmitic acid, stearic acid, isostearic acid, behenic acid, Higher fatty acids such as undecylenic acid, 12-hydroxystearic acid, palmitoleic acid, oleic acid, linoleic acid, linolenic acid, erucic acid, docosahexaenoic acid, eicosapentaenoic acid, isohexadecanoic acid, anteisohenicosanoic acid, long-chain branched fatty acids, long-chain α-hydroxy fatty acids, dimer acids, hydrogenated dimer acids, and their aluminum salts, calcium salts, magnesium salts, zinc salts, potassium salts, sodium salts, and other metal soaps, as well as nitrogen-containing derivatives such as amides; liquid paraffin (mineral oil), heavy liquid isoparaffin, light liquid isoparaffin Hydrocarbons such as olefin, α-olefin oligomer, polyisobutene, hydrogenated polyisobutene, polybutene, squalane, olive-derived squalane, squalene, petrolatum, and solid paraffin; waxes such as candelilla wax, carnauba wax, rice wax, Japan wax, beeswax, montan wax, ozokerite, ceresin, paraffin wax, microcrystalline wax, petrolatum, Fischer-Tropsch wax, polyethylene wax, and ethylene-propylene copolymer; coconut oil, palm oil, palm kernel oil, safflower oil, and olive Vegetable oils and fats such as castor oil, avocado oil, sesame oil, tea oil, evening primrose oil, wheat germ oil, macadamia nut oil, hazelnut oil, kukui nut oil, rosehip oil, meadowfoam oil, persic oil, tea tree oil, peppermint oil, corn oil, rapeseed oil, sunflower oil, wheat germ oil, linseed oil, cottonseed oil, soybean oil, peanut oil, rice bran oil, cocoa butter, shea butter, hydrogenated coconut oil, hydrogenated castor oil, jojoba oil, and hydrogenated jojoba oil; animal oils and fats such as beef tallow, milk fat, horse fat, egg yolk oil, mink oil, and turtle oil; animal waxes such as whale wax, lanolin, and orange roughy oil;Lanolin derivatives such as liquid lanolin, reduced lanolin, adsorbed purified lanolin, acetated lanolin, acetated liquid lanolin, hydroxylanolin, polyoxyethylene lanolin, lanolin fatty acids, hard lanolin fatty acids, lanolin alcohol, acetated lanolin alcohol, and cetyl lanolyl acetate ester; lecithin, phosphatidylcholine, phosphatidylethanolamine, phosphatidylserine, phosphatidylglycerol, phosphatidylinositol, and sphingomyelin. Phospholipids such as soybean phospholipid, phosphatidic acid, cyclic lysophosphatidic acid or its salt, lysolecithin, etc.; phospholipid derivatives such as hydrogenated soybean phospholipid, partially hydrogenated soybean phospholipid, hydrogenated egg yolk phospholipid, partially hydrogenated egg yolk phospholipid, etc.; sterols such as cholesterol, dihydrocholesterol, lanosterol, dihydrolanosterol, phytosterol, cholic acid, etc.; sapogenins; saponins; cholesteryl acetate, cholesteryl nonanoate, cholesteryl stearate, Acyl sarcosine alkyl esters such as cholesteryl isostearate, cholesteryl oleate, N-lauroyl-L-glutamic acid di(cholesteryl / behenyl / octyldodecyl), N-lauroyl-L-glutamic acid di(cholesteryl / octyldodecyl), N-lauroyl-L-glutamic acid di(phytosteryl / behenyl / octyldodecyl), N-lauroyl-L-glutamic acid di(phytosteryl / octyldodecyl), and N-lauroyl sarcosinate isopropyl Sterol esters such as ester, cholesteryl 12-hydroxystearate, cholesteryl macadamiate, phytosteryl macadamiate, phytosteryl sunflower seed oil fatty acid, phytosteryl isostearate, cholesteryl soft lanolinate, cholesteryl hard lanolinate, cholesteryl long-chain branched fatty acid, and cholesteryl long-chain α-hydroxy fatty acid; lipid complexes such as phospholipid-cholesterol complex and phospholipid-phytosterol complex;Octyldodecyl myristate, hexyldecyl myristate, octyldodecyl isostearate, cetyl palmitate, octyldodecyl palmitate, cetyl octanoate, hexyldecyl octanoate, isotridecyl isononanoate, isononyl isononanoate, octyl isononanoate, isotridecyl isononanoate, isodecyl neopentanoate, isotridecyl neopentanoate, isostearyl neopentanoate, octyldodecyl neodecanoate, oleyl oleate, octyldodecyl oleate, octyldodecyl ricinoleate, octyldodecyl lanolinate, dicaprylyl carbonate, hexyldecyl dimethyloctanoate, octyldodecyl erucate, hydrogenated castor oil isostearate, Monoalcohol carboxylic acid esters such as ethyl oleate, avocado oil fatty acid ethyl, isopropyl myristate, isopropyl palmitate, octyl palmitate, isopropyl isostearate, isopropyl lanolinate, methylheptyl laurate, methylheptyl myristate, methylheptyl palmitate, methylheptyl isostearate, diethyl sebacate, diisopropyl sebacate, dioctyl sebacate, diisopropyl adipate, dibutyloctyl sebacate, diisobutyl adipate, dioctyl succinate, and triethyl citrate; oxyacid esters such as cetyl lactate, hydrogenated castor oil monoisostearate, γ-erucalactone, and diisostearyl malate;Glyceryl Trioctanoate, Glyceryl Trioleate, Glyceryl Triisostearate, Glyceryl Diisostearate, Caprylic / Capric Triglyceride, Caprylic / Capric / Myristic / Stearic Triglyceride, Hydrogenated Rosin Triglyceride (Hydrogenated Ester Gum), Rosin Triglyceride (Ester Gum), Glyceryl Behenate Eicosandioate, Trimethylolpropane Trioctanoate, Trimethylolpropane Triisostearate, Neopentyl Glycol Dioctanoate, Dicaprylate Neopentyl glycol dioctanoate, 2-butyl-2-ethyl-1,3-propanediol dioctanoate, propylene glycol dioleate, pentaerythrityl tetraoctanoate, pentaerythrityl hydrogenated rosin, ditrimethylolpropane triethylhexanoate, ditrimethylolpropane isostearate / sebacic acid, pentaerythrityl triethylhexanoate, dipentaerythrityl hydroxystearate / stearic acid / rosin acid, diglyceryl diisostearate, polyglyceryl tetraisostearate Polyol fatty acid esters such as ethylene glycol distearate, 3-methyl-1,5-pentanediol dineopentanoate, 2,4-diethyl-1,5-pentanediol dineopentanoate, polyglyceryl-10 nonaisostearate, polyglyceryl-8 deca(erucate / isostearate / ricinoleate), diglyceryl oligoester of hexyldecanoate / sebacic acid, glycol distearate, alkyl ethers such as dicaprylyl ether, diisopropyl dimer dilinoleate, dimer Derivatives of dimer acid or dimer diol such as diisostearyl dimer dilinoleate, di(isostearyl / phytosteryl) dimer dilinoleate, phytosteryl / behenyl dimer dilinoleate, phytosteryl / isostearyl / cetyl / stearyl / behenyl dimer dilinoleate, dimer dilinoleyl dimer dilinoleate, dimer dilinoleyl diisostearate, dimer dilinoleyl hydrogenated rosin condensate, hydrogenated castor oil dimer dilinoleate, and hydroxyalkyl dimer dilinoleyl ether;Fatty acid alkanolamides such as coconut oil fatty acid monoethanolamide (cocamide MEA), coconut oil fatty acid diethanolamide (cocamide DEA), lauric acid monoethanolamide (lauramide MEA), lauric acid diethanolamide (lauramide DEA), lauric acid monoisopropanolamide (lauramide MIPA), palmitic acid monoethanolamide (palmitamide MEA), palmitic acid diethanolamide (palmitamide DEA), coconut oil fatty acid methylethanolamide (cocamide methyl MEA); dimethicone (dimethylpolysiloxane), highly polymerized dimethicone (highly polymerized dimethylpolysiloxane), cyclomethicone (cyclic dimethylsiloxane, decamethylcyclopentasiloxane), phenyl trimethicone, diphenyl dimethicone, phenyl dimethicone, (aminoethyl aminopropyl methicone / dimethicone) copolymer, dimethiconol, dimethiconol crosspolymer, silicone resin, silicone Preferred examples of silicones include corn gum, amino-modified silicones such as aminopropyl dimethicone and amodimethicone, cation-modified silicones, polyether-modified silicones such as dimethicone copolyol, polyglycerin-modified silicones, sugar-modified silicones, carboxylic acid-modified silicones, phosphate-modified silicones, sulfate-modified silicones, alkyl-modified silicones, fatty acid-modified silicones, alkyl ether-modified silicones, amino acid-modified silicones, peptide-modified silicones, fluorine-modified silicones, cation-modified and polyether-modified silicones, amino-modified and polyether-modified silicones, alkyl-modified and polyether-modified silicones, amidoalkyl-modified silicones, aminoglycol-modified silicones, aminophenyl-modified silicones, and polysiloxane-oxyalkylene copolymers; and fluorine-based oils such as perfluorodecane, perfluorooctane, and perfluoropolyethers.
[0025] Moisturizing agents and texture improvers include polyols and their polymers such as glycerin, 1,3-butylene glycol, propylene glycol, 3-methyl-1,3-butanediol, 1,3-propanediol, 2-methyl-1,3-propanediol, trimethylolpropane, pentaerythritol, erythritane, hexylene glycol, diglycerin, polyglycerin, diethylene glycol, polyethylene glycol, dipropylene glycol, polypropylene glycol, and ethylene glycol-propylene glycol copolymer; glycol alkyl ethers such as diethylene glycol monoethyl ether (ethoxydiglycol), ethylene glycol monoethyl ether, ethylene glycol monobutyl ether, and diethylene glycol dibutyl ether; water-soluble esters such as polyglyceryl-10 (eicosane diacid / tetradecanedioic acid), polyglyceryl-10 tetradecanedioate, and bisethoxydiglycol cyclohexanedicarboxylate; and sugar alcohols such as sorbitol, xylitol, erythritol, mannitol, and maltitol. glucose, fructose, galactose, mannose, threose, xylose, arabinose, fucose, ribose, deoxyribose, maltose, trehalose, glucosyltrehalose, lactose, raffinose, gluconic acid, glucuronic acid, cyclodextrins (α-, β-, γ-cyclodextrin, and modified cyclodextrins such as maltosylated and hydroxyalkylated), β-glucan, chitin, chitosan, heparin and derivatives, pectin, arabinogalactan, dextrin, dextrin Sugars and their derivatives, such as orchid, glycogen, ethyl glucoside, glucosyl ethyl methacrylate polymer or copolymer; hyaluronic acid, sodium hyaluronate; sodium chondroitin sulfate; mucoitin sulfate, caronin sulfate, keratosulfate, dermatan sulfate; Tremella fuciformis extract, Tremella fuciformis polysaccharide; fructans, such as inulin and levan; fucoidan; tuberose polysaccharide, naturally occurring polysaccharides; organic acids, such as citric acid, tartaric acid, and lactic acid, and their salts; urea; 2-pyrrolidone-5-carboxylic acid and its sodium salts, etc.Amino acids and their salts, such as betaine (trimethylglycine), proline, hydroxyproline, arginine, lysine, serine, glycine, alanine, phenylalanine, tyrosine, β-alanine, threonine, glutamic acid, glutamine, asparagine, aspartic acid, cysteine, cystine, methionine, leucine, isoleucine, valine, tryptophan, histidine, taurine, γ-aminobutyric acid, γ-amino-β-hydroxybutyric acid, carnitine, carnosine, and creatine; collagen, fish collagen, atelocollagen, gelatin, elastin, collagen hydrolyzed peptides, hydrolyzed collagen, hydroxypropylammonium chloride hydrolyzed collagen, elastin hydrolyzed peptides, keratin hydrolyzed peptides, hydrolyzed keratin, conchiolin hydrolyzed peptides, hydrolyzed conchiolin, silk proteolytic peptides, hydrolyzed silk, sodium lauroyl hydrolyzed silk, soybean proteolytic peptides, wheat proteolytic peptides , hydrolyzed wheat protein, casein hydrolyzed peptides, acylated peptides and other protein peptides and their derivatives; acylated peptides such as palmitoyl oligopeptide, palmitoyl pentapeptide, palmitoyl tetrapeptide; silylated peptides; lactic acid bacteria culture liquid, yeast extract, eggshell membrane protein, bovine submandibular gland mucin, hypotaurine, sesame lignan glycoside, glutathione, albumin, whey; choline chloride, phosphorylcholine; placenta extract, alastin, collagen, allo Preferred examples of the active ingredient include animal and plant extracts such as laurel extract, witch hazel water, loofah water, chamomile extract, licorice extract, comfrey extract, silk extract, Rosa robur extract, yarrow extract, eucalyptus extract, and melilot extract, and ceramides such as natural ceramides (types 1, 2, 3, 4, 5, and 6), hydroxyceramides, pseudoceramides, sphingosine, sphingomyelin, glycosphingolipids, ceramides, and glycoceramide-containing extracts;
[0026] Preferred surfactants include anionic surfactants, nonionic surfactants, cationic surfactants, amphoteric surfactants, polymer surfactants, etc. The HLB of the surfactant is not particularly limited, and surfactants ranging from a low of about 1 to a high of about 20 can be used, and it is also preferable to combine surfactants with low and high HLB. Preferred examples of surfactants include anionic surfactants such as fatty acid salts (e.g., potassium laurate, potassium myristate, etc.); alkyl sulfate ester salts (e.g., sodium lauryl sulfate, triethanolamine lauryl sulfate, ammonium lauryl sulfate, etc.); polyoxyethylene alkyl sulfates (e.g., sodium laureth sulfate, triethanolamine laureth sulfate, etc.); acyl N-methylamino acid salts (e.g., sodium cocoyl methyl taurate, potassium cocoyl methyl taurate, sodium lauroyl methyl taurate, sodium myristoyl methyl taurate, sodium lauroyl methyl alanine, sodium lauroyl sarcosine, triethanolamine lauroyl sarcosine, sodium lauroyl methyl alanine glutamate); sodium cocoyl glutamate, triethanolamine cocoyl glutamate, sodium lauro ... Acyl amino acid salts such as sodium myristoyl glutamate, sodium stearoyl glutamate, palmitoyl aspartic acid ditriethanolamine, cocoyl alanine triethanolamine, and sodium dilauroyl glutamate lysine; polyoxyethylene alkyl ether acetates such as sodium laureth acetate; succinic acid ester salts such as sodium lauroyl monoethanolamide succinate; fatty acid alkanolamide ether carboxylates; acyl lactylate salts; polyoxyethylene fatty amine sulfates; fatty acid alkanolamide sulfates; fatty acid glyceride sulfates such as sodium hydrogenated coconut oil fatty acid glycerin sulfate; alkyl benzene polyoxyethylene sulfates; olefin sulfonates such as sodium α-olefin sulfonate; alkyl sulfosuccinates such as disodium lauryl sulfosuccinate and dioctyl sodium sulfosuccinate;Alkyl ether sulfosuccinates such as disodium laureth sulfosuccinate, sodium monolauroyl monoethanolamide polyoxyethylene sulfosuccinate, and sodium lauryl polypropylene glycol sulfosuccinate; alkyl benzene sulfonates such as sodium tetradecylbenzene sulfonate and triethanolamine tetradecylbenzene sulfonate; alkyl naphthalene sulfonates; alkane sulfonates; α-sulfofatty acid methyl ester salts; acyl isethionates; alkyl glycidyl ether sulfonates; alkyl sulfoacetates; alkyl ether phosphate ester salts such as sodium laureth phosphate, sodium dilaureth phosphate, sodium trilaureth phosphate, and sodium monoolethphosphate; alkyl phosphate ester salts such as potassium lauryl phosphate; sodium caseinate; alkyl aryl ether phosphates; fatty acid amide ether phosphates; phospholipids such as phosphatidylglycerol, phosphatidylinositol, phosphatidic acid, and cyclic lysophosphatidic acid or their salts; silicones such as carboxylic acid-modified silicones, phosphate-modified silicones, and sulfate-modified silicones. glycerol-based anionic surfactants, etc.; nonionic surfactants include laureths (polyoxyethylene lauryl ethers), ceteths (polyoxyethylene cetyl ethers), steareths (polyoxyethylene stearyl ethers), beheneths (polyoxyethylene behenyl ethers), isosteareths (polyoxyethylene isostearyl ethers), and octyldodeceths (polyoxyethylene octyldodecyl ethers), as well as polyoxyethylene alkyl ethers with various polyoxyethylene addition numbers; polyoxyethylene alkylphenyl ethers; esters; castor oil and hydrogenated castor oil derivatives such as polyoxyethylene hydrogenated castor oil, polyoxyethylene castor oil, polyoxyethylene hydrogenated castor oil monoisostearate, polyoxyethylene hydrogenated castor oil triisostearate, polyoxyethylene hydrogenated castor oil monopyroglutamic acid monoisostearate diester, and polyoxyethylene hydrogenated castor oil maleic acid; polyoxyethylene phytosterols; polyoxyethylene cholesterol; polyoxyethylene cholestanol; polyoxyethylene lanolin; polyoxyethylene reduced lanolin;Polyoxyethylene-polyoxypropylene alkyl ethers such as polyoxyethylene-polyoxypropylene cetyl ether, polyoxyethylene-polyoxypropylene 2-decyltetradecyl ether, polyoxyethylene-polyoxypropylene monobutyl ether, polyoxyethylene-polyoxypropylene hydrogenated lanolin, and polyoxyethylene-polyoxypropylene glycerin ether; polyoxyethylene-polyoxypropylene glycol; polyoxyethylene-polyoxypropylene diglyceryl; ) Glycerin polyoxypropylene glycol; glycerin fatty acid partial esters such as glyceryl stearate, glyceryl isostearate, glyceryl palmitate, glyceryl myristate, glyceryl oleate, glyceryl coconut oil fatty acid, glycerin mono-cottonseed oil fatty acid, glycerin mono-erucate, glycerin sesquioleate, glycerin α,α'-oleic acid pyroglutamate, glycerin monostearate malate, etc.; polyglyceryl-2, 3, 4, 5, 6, and 8 stearate , 10, Polyglyceryl-6 distearate, 10, Polyglyceryl-2 tristearate, Polyglyceryl-10 decaisostearate, Polyglyceryl-2 isostearate, 3, 4, 5, 6, 8, 10, Polyglyceryl-2 diisostearate (diglyceryl diisostearate), 3, 10, Polyglyceryl-2 triisostearate, Polyglyceryl-2 tetraisostearate, Polyglyceryl-10 decaisostearate, Polyglyceryl-2 oleate, 3, Nos. 4, 5, 6, 8, and 10, polyglycerin fatty acid esters such as polyglyceryl-6 dioleate, polyglyceryl-2 trioleate, and polyglyceryl-10 decaoleate; ethylene glycol mono-fatty acid esters such as ethylene glycol monostearate; propylene glycol mono-fatty acid esters such as propylene glycol monostearate; pentaerythritol partial fatty acid esters; sorbitol partial fatty acid esters; maltitol partial fatty acid esters; maltitol ethers;Sorbitan fatty acid esters such as sorbitan monooleate, sorbitan monoisostearate, sorbitan monolaurate, sorbitan monopalmitate, sorbitan monostearate, sorbitan sesquioleate, sorbitan trioleate, diglycerol sorbitan penta-2-ethylhexylate, and diglycerol sorbitan tetra-2-ethylhexylate; sucrose fatty acid esters such as sucrose laurate, sucrose myristate, sucrose palmitate, sucrose dilaurate, sucrose dimyristate, and sucrose dipalmitate. Partial esters of sugar derivatives such as methyl glucoside fatty acid esters and trehalose undecylenate; alkyl glucosides such as caprylyl glucoside; alkyl polyglycosides; glycolipids such as mannosyl erythritol lipid; lanolin alcohol; reduced lanolin; polyoxyethylene fatty acid mono- and diesters such as polyoxyethylene distearate, polyethylene glycol diisostearate, polyoxyethylene monooleate, and polyoxyethylene dioleate; polyoxyethylene propylene glycol fatty acid esters; polyoxyethylene glycol Polyoxyethylene glycerin fatty acid esters such as polyoxyethylene monooleates such as serine monostearate, polyoxyethylene glycerin monoisostearate, and polyoxyethylene glycerin triisostearate; polyoxyethylene sorbitan fatty acid esters such as polyoxyethylene sorbitan monooleate, polyoxyethylene sorbitan monostearate, polyoxyethylene sorbitan monooleate, and polyoxyethylene sorbitan tetraoleate; polyoxyethylene sorbitol fatty acid esters such as polyoxyethylene sorbitol monolaurate, polyoxyethylene sorbitol monooleate, polyoxyethylene sorbitol pentaoleate, and polyoxyethylene sorbitol monostearate; polyoxyethylene methyl glucoside fatty acid esters; polyoxyethylene alkyl ether fatty acid esters; polyoxyethylene animal and vegetable oils and fats such as polyoxyethylene sorbitol beeswax; alkyl glyceryl ethers such as isostearyl glyceryl ether, chimyl alcohol, selachyl alcohol, and batyl alcohol; polyhydric alcohol alkyl ethers;Polyoxyethylene alkylamines; tetrapolyoxyethylene-tetrapolyoxypropylene-ethylenediamine condensates; natural surfactants such as saponin, surfactin, rhamnolipid, sophorolipid, etc.; polyoxyethylene fatty acid amides; coconut oil fatty acid monoethanolamide (cocamide MEA), coconut oil fatty acid diethanolamide (cocamide DEA), lauric acid monoethanolamide (lauramide MEA), lauric acid diethanolamide (lauramide DEA), lauric acid monoisopropanolamide (lauramide MIPA), palmitic acid Fatty acid alkanolamides such as palmitic acid monoethanolamide (Palmitic acid diethanolamide (Palmitic acid DEA), coconut oil fatty acid methylethanolamide (cocamide methyl MEA); alkyl dimethylamine oxides such as lauramine oxide, cocamine oxide, stearamine oxide, and behenamine oxide; alkyl ethoxydimethylamine oxide; polyoxyethylene alkyl mercaptan; polyether-modified silicones such as dimethicone copolyol, polysiloxane-oxyalkylene copolymers, and polyglycerin-modified Silicone-based nonionic surfactants such as silicones and sugar-modified silicones; cationic surfactants include alkyltrimethylammonium chlorides such as behentrimonium chloride, steartrimonium chloride, cetrimonium chloride, and lauryltrimonium chloride; alkyltrimethylammonium bromides such as stearyltrimonium bromide; dialkyldimethylammonium chlorides such as distearyldimonium chloride and dicocodimonium chloride; fatty acid amidoamines and salts thereof such as stearamidopropyldimethylamine and stearamidoethyldiethylamine; alkyl ether amines and salts or quaternary salts thereof such as stearoxypropyldimethylamine; fatty acid amide-type quaternary ammonium salts such as ethyl sulfate of long-chain branched fatty acid (12-31) aminopropylethyldimethylammonium and ethyl sulfate of lanolin fatty acid aminopropylethyldimethylammonium; polyoxyethylene alkylamines and salts or quaternary salts thereof; alkylamine salts; fatty acid amide guanidinium salts; alkyl ether amine ammonium salts; alkyl trialkylene glycol ammonium salts; benzalkonium salts;benzethonium salts; pyridinium salts such as cetylpyridinium chloride; imidazolinium salts; alkylisoquinolinium salts; dialkylmorphonium salts; polyamine fatty acid derivatives; silicone-based cationic surfactants such as amino-modified silicones such as aminopropyl dimethicone and amodimethicone, cation-modified silicones, cation-modified and polyether-modified silicones, and amino-modified and polyether-modified silicones; amphoteric surfactants include N-alkyl-N,N-dimethyl amino acid betaines such as lauryl betaine (lauryl dimethylaminoacetic acid betaine); fatty acid amidoalkyl-N,N-dimethyl amino acid betaines such as cocamidopropyl betaine and lauramidopropyl betaine; imidazoline-type betaines such as sodium cocoamphoacetate and sodium lauroamphoacetate; alkylsulfobetaines such as alkyldimethyltaurine; sulfate-type betaines such as alkyldimethylaminoethanol sulfate esters; phosphate-type betaines such as alkyldimethylaminoethanol phosphate esters; sphingophospholipids such as phosphatidylcholine, phosphatidylethanolamine, phosphatidylserine, and sphingomyelin, phospholipids such as lysolecithin, hydrogenated soybean phospholipid, partially hydrogenated soybean phospholipid, hydrogenated egg yolk phospholipid, partially hydrogenated egg yolk phospholipid, and hydroxide lecithin; silicone-based amphoteric surfactants; and among polymer surfactants, preferred examples include polyvinyl alcohol, sodium alginate, starch derivatives, tragacanth gum, and acrylic acid / alkyl methacrylate copolymers; and various silicone-based surfactants.
[0027] Polymers, thickeners, and gelling agents include guar gum, locust bean gum, queen seed, carrageenan, galactan, gum arabic, tara gum, tamarind, furcellaran, karaya gum, aoi, caragam, tragacanth gum, pectin, pectinic acid and its salts such as sodium salt, alginic acid and its salts such as sodium salt, mannan; starch from rice, corn, potato, wheat, etc.; xanthan gum, dextran, succinoglucan, curdlan, hyaluronic acid and its salts, xanthan gum, pullulan, gellan gum, chitin, chitosan Agar, cassou extract, chondroitin sulfate, casein, collagen, gelatin, albumin; methyl cellulose, ethyl cellulose, hydroxyethyl cellulose, hydroxypropyl cellulose, carboxymethyl cellulose and its sodium salts, methylhydroxypropyl cellulose, carboxylated cellulose nanofiber, carboxymethyl cellulose nanofiber, phosphate esterified cellulose nanofiber, sulfonated cellulose nanofiber, sodium cellulose sulfate, dialkyldimethylammonium sulfate Cellulose and its derivatives such as acid cellulose, crystalline cellulose, and cellulose powder; starch-based polymers such as soluble starch, carboxymethyl starch, methylhydroxypropyl starch, and methyl starch; starch derivatives such as hydroxypropyltrimonium chloride starch and aluminum octenylsuccinate corn starch; alginic acid derivatives such as sodium alginate and propylene glycol alginate; polyvinylpyrrolidone (PVP), polyvinyl alcohol (PVA), vinylpyrrolidone-vinyl alcohol copolymer, polyvinyl methyl ether; polyethylene glycol, polypropylene glycol, polyoxyethylene-polyoxypropylene copolymer; amphoteric methacrylate copolymers such as (methacryloyloxyethyl carboxybetaine / alkyl methacrylate) copolymer and (acrylates / stearyl acrylate / ethylamine oxide methacrylate) copolymer; (dimethicone / vinyl dimethicone) crosspolymer, (alkyl acrylate / diacetone acrylamide) copolymer, (alkyl acrylate / diacetone acrylamide) copolymer AMP;Partially saponified polyvinyl acetate, maleic acid copolymer; vinylpyrrolidone-dialkylaminoalkyl methacrylate copolymer; acrylic resin alkanolamine; polyester, water-dispersible polyester; polyacrylamide; polyacrylic acid ester copolymers such as polyethyl acrylate; carboxyvinyl polymers; polyacrylic acid and its salts such as sodium salt; acrylic acid-methacrylic acid ester copolymer; acrylic acid-alkyl methacrylate copolymer; cationized cellulose such as polyquaternium-10; diallyldimethylammonium chloride-acrylamide copolymer such as polyquaternium-7; acrylic acid-diallyldimethylammonium chloride copolymer such as polyquaternium-22; acrylic acid-diallyldimethylammonium chloride-acrylamide copolymer such as polyquaternium-39; acrylic acid-cationized methacrylic acid ester copolymer; acrylic acid-cationized methacrylic acid amide copolymer; acrylic acid such as polyquaternium-47 Acrylic acid-methyl acrylate-methacrylamidopropyltrimethylammonium chloride copolymer, methacrylic acid choline ester polymer; cationic oligosaccharides, cationic dextran, guar hydroxypropyltrimonium chloride, and other cationic polysaccharides; polyethyleneimine; cationic polymers; 2-methacryloyloxyethyl phosphorylcholine polymers such as polyquaternium-51 and their copolymers with butyl methacrylate copolymers; acrylic resin emulsions, polyethyl acrylate emulsions, polyacrylic alkyl ester emulsions, polyvinyl acetate resin emulsions, natural rubber latex, synthetic latex, and other polymer emulsions; nitrocellulose; polyurethanes and various copolymers; various silicones; various silicone copolymers such as acrylic-silicone graft copolymers; various fluorine-containing polymers; 12-hydroxystearic acid and its salts; dextrin fatty acid esters such as dextrin palmitate and dextrin myristate;Preferred examples include anhydrous silicic acid, fumed silica (ultrafine particle anhydrous silicic acid), aluminum magnesium silicate, sodium magnesium silicate, metal soap, metal dialkyl phosphate, bentonite, hectorite, organically modified clay minerals, sucrose fatty acid esters, and fructooligosaccharide fatty acid esters;
[0028] Preferred antioxidants include tocopherol derivatives such as tocopherol (vitamin E) and tocopherol acetate; BHT, BHA; gallic acid derivatives such as propyl gallate; vitamin C (ascorbic acid) and / or its derivatives; erythorbic acid and its derivatives; sulfites such as sodium sulfite; bisulfites such as sodium bisulfite; thiosulfates such as sodium thiosulfate; metabisulfites; thiotaurine, hypotaurine; thioglycerol, thiourea, thioglycolic acid, and cysteine hydrochloride. Preferred reducing agents include thioglycolic acid, cysteine, and cysteamine. Preferred oxidizing agents include hydrogen peroxide, ammonium persulfate, sodium bromate, and percarbonate. Antioxidants include ascorbic acid, ascorbic acid phosphate salts such as sodium ascorbic acid phosphate and magnesium ascorbic acid phosphate; ascorbic acid fatty acid esters such as ascorbic acid monostearate, ascorbic acid monopalmitate, ascorbic acid dipalmitate, and ascorbic acid tetraisopalmitate; ascorbic acid ethers such as 3-O-ethyl ascorbic acid, 2-O-ethyl ascorbic acid, cetyl ascorbic acid, glyceryl ascorbic acid, and hexylglyceryl ascorbic acid; ascorbic acid glucoside and its fatty acid esters such as ascorbic acid-2-glucoside; ascorbic acid Preferred examples include ascorbic acid derivatives such as acid sulfate and tocopheryl ascorbyl phosphate; vitamin A compounds such as retinol, retinol acetate, retinol palmitate, and hydrogenated retinol; vitamin E compounds such as tocopherol, tocopherol acetate, and tocotrienol; carotenoids such as carotene, lycopene, astaxanthin, and lutein; polyphenols such as phlorotannin, curcumin, anthocyanin, proanthocyanin, catechin, ellagic acid, quercetin, and apple polyphenols; coenzyme Q10, lipoic acid, lactoferrin, sesamin, hesperidin, protoanthocyanidin, lignan, chlorogenic acid, rutin, fullerene, and platinum nanocolloid.
[0029] Examples of whitening agents include hydroquinone glycosides and esters thereof, such as arbutin and α-arbutin; ascorbic acid, ascorbic acid phosphate salts, such as sodium ascorbic acid phosphate and magnesium ascorbic acid phosphate; ascorbic acid fatty acid esters, such as ascorbic acid monostearate, ascorbic acid monopalmitate, ascorbic acid dipalmitate, and ascorbic acid tetraisopalmitate; ascorbic acid esters, such as 3-O-ethyl ascorbic acid, 2-O-ethyl ascorbic acid, cetyl ascorbic acid, glyceryl ascorbic acid, and hexylglyceryl ascorbic acid. ascorbic acid glucosides and their fatty acid esters, such as ascorbic acid 2-glucoside; ascorbic acid derivatives, such as ascorbic acid sulfate and tocopheryl ascorbyl phosphate; tranexamic acid derivatives, such as tranexamic acid, cetyl tranexamate, and tranexamic acid amide; licorice extract-related substances, such as glabridin, glabrene, liquiritin, and isoliquiritin; and plant extracts, such as kojic acid, ellagic acid, ferulic acid and derivatives thereof, placenta extract, glutathione, oryzanol, butylresorcinol, oil-soluble chamomilla extract, oil-soluble licorice extract, Nishikawa willow extract, and saxifrage extract, are preferred.
[0030] Vitamins and their derivatives include vitamin A such as retinol, retinol acetate, and retinol palmitate; vitamin B such as thiamine hydrochloride, thiamine sulfate, riboflavin, riboflavin acetate, pyridoxine hydrochloride, pyridoxine dioctanoate, pyridoxine dipalmitate, flavin adenine dinucleotide, cyanocobalamin, folic acids, nicotinic acids such as nicotinamide and benzyl nicotinate, and choline; vitamin C such as ascorbic acid and its sodium salts; vitamin D; vitamin E such as α-, β-, γ-, and δ-tocopherol; other vitamins such as pantothenic acid and biotin; and vitamin B such as ascorbic acid phosphate sodium salt and ascorbic acid phosphate magnesium salt. Preferred examples include ascorbic acid phosphate salts, ascorbic acid fatty acid esters such as ascorbic acid tetraisopalmitate, ascorbyl stearate, ascorbyl palmitate, and ascorbyl dipalmitate, ascorbic acid alkyl ethers such as ascorbic acid ethyl ether, ascorbic acid glucoside and its fatty acid esters such as ascorbic acid-2-glucoside, and ascorbic acid derivatives such as tocopheryl ascorbyl phosphate; vitamin derivatives such as tocopherol nicotinate, tocopherol acetate, tocopherol linoleate, tocopherol ferulate, and tocopherol phosphate; tocotrienols; and various other vitamin derivatives.
[0031] Plant, animal and microbial extracts include iris extract, angelica extract, dolabrata extract, asparagus extract, avocado extract, hydrangea extract, almond extract, althaea extract, arnica extract, aloe extract, apricot extract, apricot kernel extract, ginkgo extract, chinko extract, fennel extract, turmeric extract, oolong tea extract, uva-ursi extract, angelica tree extract, echinacea leaf extract, emmeiso extract, scutellaria root extract, phellodendron bark extract, coptis japonica extract, barley extract, ginseng extract, St. John's wort extract, and nettle root. Sow extract, Ononis extract, Dutch mustard extract, orange extract, dried seawater, seaweed extract, oyster leaf extract, oak extract, hydrolyzed elastin, hydrolyzed wheat powder, hydrolyzed silk, Pueraria root extract, chamomilla extract, oil-soluble chamomilla extract, carrot extract, artemisia capillaris extract, oat extract, kalk extract, licorice extract, oil-soluble licorice extract, kiwi extract, ash extract, wood ear extract, cinchona extract, cucumber extract, paulownia leaf extract, guanosine, guava extract, lily of the valley extract, gardenia extract, kumazasa extract, Sophora flavescens extract, walnut extract, chestnut extract, grapefruit extract, clematis extract, black rice extract, brown sugar extract, black vinegar extract, chlorella extract, mulberry extract, gentian extract, geranium extract, black tea extract, yeast extract, magnolia bark extract, coffee extract, burdock extract, rice extract, fermented rice extract, fermented rice bran extract, rice germ oil, comfrey extract, collagen, cowberry extract, Chinese radish extract, Bupleurum Root extract, umbilical cord extract, saffron extract, salvia extract, soapwort extract, bamboo grass extract, hawthorn extract, Chinese holly Kisu, Zanthoxylum extract, Shiitake mushroom extract, Rehmannia root extract, Lithospermum root extract, Perilla extract, Tilia extract, Meadowsweet extract, Jatoba extract, Peony extract, Angelica root extract, Calamus root extract, Birch extract, White wood ear extract, Horsetail extract, Stevia extract, Stevia fermented product, Nishikawa willow extract, Ivy extract, Hawthorn extract, Elderberry extract, Yarrow extract, Peppermint extract, Sage extract, Mallow extract, Cnidium extract, Swertia japonica extract, Sophora japonica extract, Rhubarb extract,Soybean extract, Chinese laurel extract, thyme extract, dandelion extract, lichen extract, tea extract, clove extract, Imperata cylindrica extract, tangerine extract, tea tree oil, sweet tea extract, chili pepper extract, angelica extract, calendula extract, peach kernel extract, spruce extract, Houttuynia cordata extract, tomato extract, natto extract, carrot extract, garlic extract, wild rose extract, hibiscus extract, burdock extract, lotus extract, parsley extract, birch extract, honey, witch hazel extract, parietaria extract, jasmine extract, bisabolol, cypress extract, bifidobacteria extract, loquat extract, coltsfoot extract, butterbur extract, poria cocos extract, butcher's broom extract, grape extract, grape seed extract Preferred examples of extracts include kiss, propolis, loofah extract, safflower extract, peppermint extract, linden extract, peony extract, hop extract, squid extract, pine extract, horse chestnut extract, skunk cabbage extract, soapberry extract, melissa extract, mozuku extract, peach extract, cornflower extract, eucalyptus extract, saxifrage extract, yuzu extract, lily extract, coix seed extract, mugwort extract, lavender extract, green tea extract, eggshell membrane extract, apple extract, rooibos tea extract, lychee extract, lettuce extract, lemon extract, forsythia extract, astragalus extract, rose extract, rosemary extract, Roman chamomile extract, royal jelly extract, and burnet extract.
[0032] Examples of ultraviolet absorbers include benzoic acid-based ultraviolet absorbers such as para-aminobenzoic acid, para-aminobenzoic acid monoglycerin ester, N,N-dipropoxypara-aminobenzoic acid ethyl ester, N,N-diethoxypara-aminobenzoic acid ethyl ester, N,N-dimethylpara-aminobenzoic acid ethyl ester, N,N-dimethylpara-aminobenzoic acid butyl ester, and N,N-dimethylpara-aminobenzoic acid ethyl ester; anthranilic acid-based ultraviolet absorbers such as homomenthyl-N-acetylanthranilate; salicylic acid-based ultraviolet absorbers such as salicylic acid and its sodium salt, amyl salicylate, menthyl salicylate, homomenthyl salicylate, octyl salicylate, phenyl salicylate, benzyl salicylate, and p-isopropanol phenyl salicylate; octyl cinnamate, Cinnamic acid-based UV absorbers such as ethyl 4-isopropyl cinnamate, methyl 2,5-diisopropyl cinnamate, ethyl 2,4-diisopropyl cinnamate, methyl 2,4-diisopropyl cinnamate, propyl p-methoxycinnamate, isopropyl p-methoxycinnamate, isoamyl p-methoxycinnamate, 2-ethylhexyl p-methoxycinnamate (octyl p-methoxycinnamate), 2-ethoxyethyl p-methoxycinnamate (cinoxate), cyclohexyl p-methoxycinnamate, ethyl α-cyano-β-phenylcinnamate, 2-ethylhexyl α-cyano-β-phenylcinnamate (octocurine), glyceryl mono-2-ethylhexanoyl di-paramethoxycinnamate, ferulic acid and its derivatives;Benzophenone-based UV absorbers such as 2,4-dihydroxybenzophenone, 2,2'-dihydroxy-4-methoxybenzophenone, 2,2'-dihydroxy-4,4'-dimethoxybenzophenone, 2,2',4,4'-tetrahydroxybenzophenone, 2-hydroxy-4-methoxybenzophenone (oxybenzone-3), 2-hydroxy-4-methoxy-4'-methylbenzophenone, 2-hydroxy-4-methoxybenzophenone-5-sulfonate, 4-phenylbenzophenone, 2-ethylhexyl-4'-phenyl-benzophenone-2-carboxylate, 2-hydroxy-4-n-octoxybenzophenone, and 4-hydroxy-3-carboxybenzophenone; 3-(4'-methylbenzylidene)-d,l-camphor, 3-benzylidene-d,l-camphor; 2-phenyl-5-methylbenzoxazole; 2,2'-hydroxy-5-methylphenylbenzotriazole; 2-(2'-hydroxy 2-(2'-hydroxy-5'-methylphenylbenzotriazole; Dibenzalazine; Dianisoylmethane; 5-(3,3-dimethyl-2-norbornylidene)-3-pentan-2-one; Dibenzoylmethane derivatives such as 4-t-butylmethoxydibenzoylmethane; Octyltriazone; Urocanic acid derivatives such as urocanic acid and ethyl urocanate; 2-(2'-hydroxy-5'-methylphenyl)benzotriazole Preferred examples thereof include hydantoin derivatives such as 1-(3,4-dimethoxyphenyl)-4,4-dimethyl-1,3-pentanedione, 2-ethylhexyl dimethoxybenzylidene dioxoimidazolidinepropionate, phenylbenzimidazolazole sulfonic acid, terephthalylidene dicamphor sulfonic acid, drometrizole trisiloxane, methyl anthranilate, rutin and its derivatives, and oryzanol and its derivatives;
[0033] Antibacterial and antiseptic agents include parabens (hydroxybenzoic acid esters) such as methylparaben, ethylparaben, propylparaben, and butylparaben; phenoxyethanol; 1,2-alkanediols such as 1,2-pentanediol, 1,2-hexanediol, and 1,2-octanediol; alkyl glyceryl ethers such as 2-ethylhexylglyceryl ether (ethylhexylglycerin); salicylic acid; lanolin fatty acids and their salts; sodium benzoate; isothiazolinone derivatives such as methylchloroisothiazolinone and methylisothiazolinone; imidazolinium urea; dehydroacetic acid and its salts; phenols; halogenated bisphenols such as triclosan, acid amides, and quaternary ammonium salts; trichlorocarbanide, zinc pyrithione, and benzalkonium chloride. Preferred examples of the antibacterial agent include methyl methyl ether, benzethonium chloride, sorbic acid, chlorhexidine, chlorhexidine gluconate, halocarban, hexachlorophene, and hinokitiol; other phenols such as phenol, isopropylphenol, cresol, thymol, parachlorophenol, phenylphenol, and sodium phenylphenol; phenylethyl alcohol, photosensitizers, antibacterial zeolites, and silver ions. However, when used as an antibacterial agent or preservative for the purpose of preservation, from the viewpoint of safety of cosmetics or topical skin preparations, it is more preferred to use phenoxyethanol; 1,2-alkanediols such as 1,2-pentanediol, 1,2-hexanediol, and 1,2-octanediol; and alkyl glyceryl ethers such as 2-ethylhexyl glyceryl ether.
[0034] Preferred examples of the chelating agent include edetates (ethylenediaminetetraacetates) such as EDTA, EDTA2Na, EDTA3Na, and EDTA4Na; hydroxyethylethylenediaminetriacetates such as HEDTA3Na; pentetates (diethylenetriaminepentaacetate); phytic acid; phosphonic acids such as etidronic acid and salts thereof such as sodium salts; sodium oxalate; polyamino acids such as polyaspartic acid and polyglutamic acid; sodium polyphosphate, sodium metaphosphate, phosphoric acid; sodium citrate, citric acid, alanine, dihydroxyethylglycine, gluconic acid, ascorbic acid, succinic acid, and tartaric acid.
[0035] Preferred examples of the pH adjuster, acid, or alkali include citric acid, sodium citrate, lactic acid, sodium lactate, glycolic acid, succinic acid, acetic acid, sodium acetate, malic acid, tartaric acid, fumaric acid, phosphoric acid, hydrochloric acid, sulfuric acid, monoethanolamine, diethanolamine, triethanolamine, isopropanolamine, triisopropanolamine, 2-amino-2-methyl-1,3-propanediol, 2-amino-2-hydroxymethyl-1,3-propanediol, arginine, sodium hydroxide, potassium hydroxide, aqueous ammonia, guanidine carbonate, and ammonium carbonate.
[0036] Solvents and propellants include lower alcohols such as ethanol, 2-propanol (isopropyl alcohol), butanol, and isobutyl alcohol; glycols such as propylene glycol, 1,3-butylene glycol, diethylene glycol, dipropylene glycol, and isopentyl diol; diethylene glycol monoethyl ether (ethoxydiglycol), ethylene glycol monoethyl ether, ethylene glycol monobutyl ether, triethylene glycol monoethyl ether, diethylene glycol diethyl ether, diethylene glycol dibutyl ether, propylene glycol monoethyl ether, and diethylene glycol diethyl ether. Preferred examples of the propellant include glycol ethers such as propylene glycol monoethyl ether; glycol ether esters such as ethylene glycol monoethyl ether acetate, diethylene glycol monoethyl ether acetate, and propylene glycol monoethyl ether acetate; glycol esters such as diethoxyethyl succinate and ethylene glycol disuccinate; benzyl alcohol, benzyloxyethanol, propylene carbonate, dialkyl carbonate, acetone, ethyl acetate, N-methylpyrrolidone; toluene; fluorocarbons, next-generation chlorofluorocarbons; LPG, dimethyl ether, and carbon dioxide gas.
[0037] Examples of antipruritic agents include diphenhydramine hydrochloride, chlorpheniramine maleate, camphor, substance P inhibitors, etc. Examples of keratin exfoliating / dissolving agents include salicylic acid, sulfur, resorcinol, selenium sulfide, pyridoxine, glycolic acid, etc. Examples of antiperspirants include aluminum chlorohydrate, aluminum chloride, zinc oxide, zinc paraphenolsulfonate, etc. Examples of cooling agents include menthol and methyl salicylate, etc. Examples of astringents include citric acid, tartaric acid, lactic acid, aluminum potassium sulfate, tannic acid, caffeine, etc. Examples of enzymes include superoxide dismutase, catalase, lysozyme chloride, lipase, papain, pancreatin, protease, etc. Examples of nucleic acids include ribonucleic acid and salts thereof, deoxyribonucleic acid and salts thereof, and adenosine triphosphate disodium, etc.
[0038] Preferred examples of the anti-inflammatory agent include glycyrrhizinic acid and its derivatives, glycyrrhetinic acid derivatives, salicylic acid and its derivatives, azelaic acid and its derivatives, hinokitiol, guaiazulene, allantoin, indomethacin, zinc oxide, hydrocortisone acetate, prednisone, diphedramine hydrochloride, chlorpheniramine maleate; and plant extracts such as peach leaf extract and mugwort leaf extract. Preferred examples of hair growth agents, blood circulation promoters, and stimulants include plant extracts and tinctures such as Swertia japonica extract, capsicum tincture, ginger tincture, ginger extract, and cantharis tincture; capsaicin, nonylic acid valenylamide, zingerone, ichthammol, tannic acid, borneol, cyclandelate, cinnarizine, tolazoline, acetylcholine, verapamil, cepharanthine, γ-oryzanol, cepharanthine, vitamin E, and derivatives thereof such as tocopherol nicotinate and tocopherol acetate, γ-oryzanol, nicotinic acid, and derivatives thereof such as nicotinamide, nicotinic acid benzyl ester, inositol hexanicotinate, and nicotine alcohol, allantoin, photosensitizer 301, photosensitizer 401, capronium chloride, pentadecanoic acid monoglyceride, flavanonol derivatives, stigmasterol or stigmastanol and their glycosides, and minoxidil. Preferred examples of hormones include estradiol, estrone, ethinylestradiol, cortisone, hydrocortisone, and prednisone.
[0039] Anti-wrinkle and anti-aging agents include ascorbic acid, ascorbic acid phosphate salts such as sodium ascorbic acid phosphate and magnesium ascorbic acid phosphate; ascorbic acid fatty acid esters such as ascorbic acid monostearate, ascorbic acid monopalmitate, ascorbic acid dipalmitate, and ascorbic acid tetraisopalmitate; ascorbic acid ethers such as 3-O-ethyl ascorbic acid, 2-O-ethyl ascorbic acid, cetyl ascorbic acid, glyceryl ascorbic acid, and hexylglyceryl ascorbic acid; ascorbic acid glucoside and its fatty acid esters such as ascorbic acid 2-glucoside; and ascorbic acid derivatives such as ascorbic acid sulfate and tocopheryl ascorbyl phosphate. Preferred examples include vitamin A compounds such as retinol, retinol acetate, retinol palmitate, and hydrogenated retinol; nicotinamide, glutathione, cysteine, crocetin, sericin, geraniol, glycerin glucoside, lactoferrin, proanthocyanin, pantothenic acid, panthenol, soybean saponin, revelastol, isoflavone, coenzyme Q10, chondroitin sulfate, acetylglucosamine, glycerophosphatidylcholine, hydrolyzed hyaluronic acid, collagen peptide, conchiolin hydrolysate, adenosine 5'-monophosphate, phosphatidylinositol, trifluoroisopropyloxopropylaminocarbonylpyrrolidinecarbonylmethylpropylaminocarbonylbenzoylaminoacetic acid Na, and tranexamic acid and derivatives thereof.
[0040] Preferred examples of the irritation alleviator include mannosylerythritol lipid, dimer dilinoleic acid diethylene glycol oligomer ester, diisostearyl malate, N-acyl-L-glutamic acid, trehalose monofatty acid ester, fatty acid amidoamine oxide, alkyldimethylamine oxide, phenylethyl glucoside, lauryl glucoside, ferulic acid glucoside, salicin, cedrol, polyethylene glycol, polypropylene glycol, etc. Preferred examples of the cooling agent include menthol, camphor, menthyl lactate, monomenthyl succinate, menthyl acetate, borneol, cineole, thymol, peppermint oil, peppermint oil, and derivatives thereof. Preferred examples of the warming agent include vanillin and its derivatives, nonanoic acid vanillylamide, shogaol, gingerol, capsicum tincture, capsicum extract, nicotinic acid derivatives such as benzyl nicotinate, methyl nicotinate, phenyl nicotinate, and tocopherol nicotinate, capsaicin, watercress extract, Japanese pepper extract, ginger extract, and canthari extract.
[0041] Powders include mica, talc, kaolin, sericite, montmorillonite, kaolinite, mica, muscovite, phlogopite, synthetic mica, lepidolite, biotite, vermiculite, magnesium carbonate, calcium carbonate, aluminum silicate, barium silicate, calcium silicate, magnesium silicate, strontium silicate, metal tungstate, magnesium, zeolite, barium sulfate, calcined calcium sulfate, calcium phosphate, fluorapatite, hydroxyapatite, ceramic powder, bentonite, smectite, clay, mud, metal soaps (e.g., zinc myristate, calcium palmitate, aluminum stearate), calcium carbonate, red iron oxide, yellow iron oxide, black iron oxide, ultramarine, Prussian blue, carbon black, titanium oxide, fine and ultrafine titanium oxide particles, zinc oxide, fine and ultrafine zinc oxide particles, alumina, silica, fumed silica (ultrafine silicic anhydride particles), titanium mica Preferred examples include inorganic powders of various sizes and shapes, such as fish scale foil, boron nitride, photochromic pigments, synthetic fluorine-containing phlogopite, fine particle composite powders, gold, and aluminum, and inorganic powders obtained by treating these with silicones such as hydrogen silicone and cyclic hydrogen silicone, or other silanes, or various surface treatment agents such as titanium coupling agents to make them hydrophobic or hydrophilic; organic powders of various sizes and shapes, such as starch, cellulose, nylon powder, polyethylene powder, polymethyl methacrylate powder, polystyrene powder, styrene-acrylic acid copolymer resin powder, polyester powder, benzoguanamine resin powder, polyethylene terephthalate-polymethyl methacrylate laminate powder, polyethylene terephthalate-aluminum-epoxy laminate powder, urethane powder, silicone powder, and Teflon (registered trademark) powder, as well as surface-treated powders and organic-inorganic composite powders.Preferred examples of inorganic salts include sodium chloride-containing salts such as table salt, regular salt, rock salt, sea salt, and natural salt; potassium chloride, aluminum chloride, calcium chloride, magnesium chloride, bittern, zinc chloride, and ammonium chloride; sodium sulfate, aluminum sulfate, aluminum-potassium sulfate (alum), aluminum-ammonium sulfate, barium sulfate, calcium sulfate, potassium sulfate, magnesium sulfate, zinc sulfate, iron sulfate, and copper sulfate; and sodium phosphates such as mono-, di-, and tri-Na phosphate, potassium phosphates, calcium phosphates, and magnesium phosphates.
[0042] Colorants, dyes, and pigments include Brown No. 201, Black No. 401, Purple No. 201, Purple No. 401, Blue No. 1, Blue No. 2, Blue 201, Blue No. 202, Blue No. 203, Blue No. 204, Blue No. 205, Blue No. 403, Blue No. 404, Green No. 3, Green 201, Green 202, Green 204, Green No. 205, Green No. 3, Green 401, and Green 402 No., Red No. 102, Red No. 104-1, Red No. 105-1, Red No. 106, Red No. 2, Red No. 3, Red No. 201, Red No. 202, Red No. 203, Red No. 204, Red No. 205, Red No. 206, Red No. 207, Red No. 208, Red No. 213, Red No. 214, Red No. 215, Red No. 218, Red No. 219, Red No. 220, Red No. 221, Red No. 223 , Red No. 225, Red No. 226, Red No. 227, Red No. 228, Red No. 230-1, Red No. 230-2, Red No. 231, Red No. 232, Red No. 3, Red No. 401, Red No. 40 No. 4, Red No. 405, Red No. 501, Red No. 502, Red No. 503, Red No. 504, Red No. 505, Red No. 506, Orange No. 201, Orange No. 203, Orange No. 204, Orange 20 Legal dyes such as No. 5, Orange 206, Orange 207, Orange 401, Orange 402, Orange 403, Yellow 201, Yellow 202-1, Yellow 202-2, Yellow 203, Yellow 204, Yellow 205, Yellow 4, Yellow 401, Yellow 402, Yellow 403-1, Yellow 404, Yellow 405, Yellow 406, Yellow 407, and Yellow 5; Acid Other acid dyes such as Red 14; basic dyes such as Arianor Sienna Brown, Arianor Madder Red, Arianor Steel Blue, and Arianor Straw Yellow; nitro dyes such as HC Yellow 2, HC Yellow 5, HC Red 3, 4-hydroxypropylamino-3-nitrophenol, N,N'-bis(2-hydroxyethyl)-2-nitro-p-phenylenediamine, HC Blue 2, and Basic Blue 26; disperse dyes; inorganic white pigments such as titanium dioxide and zinc oxide; inorganic red pigments such as iron oxide (red iron oxide) and iron titanate; inorganic brown pigments such as gamma-iron oxide; inorganic yellow pigments such as yellow iron oxide and ochre; inorganic black pigments such as black iron oxide and low-order titanium oxide;Inorganic purple pigments such as mango violet and cobalt violet; inorganic green pigments such as chromium oxide, chromium hydroxide, and cobalt titanate; inorganic blue pigments such as ultramarine and Prussian blue; pearl pigments such as titanium dioxide-coated mica, titanium dioxide-coated bismuth oxychloride, titanium dioxide-coated talc, colored titanium dioxide-coated mica, bismuth oxychloride, and fish scale foil; metal powder pigments such as aluminum powder, copper powder, and gold; anthraquinones such as astaxanthin and alizarin, anthocyanidins, β-carotene, catenal, capsanthin, chalcone, carthamine, and quercetin. Preferred examples include natural pigments and dyes such as naphthoquinones (e.g., cinnamon, crocin, chlorophyll, curcumin, cochineal, and shikonin), bixin, flavones, betacyanidin, henna, hemoglobin, lycopene, riboflavin, and rutin; oxidation dye intermediates and couplers (e.g., p-phenylenediamine, toluene-2,5-diamine, o-, m-, or p-aminophenol, m-phenylenediamine, 5-amino-2-methylphenol, resorcinol, 1-naphthol, 2,6-diaminopyridine, and salts thereof); autoxidation dyes (e.g., indoline); and dihydroxyacetone.
[0043] Fragrance: acetyl cedrene, amyl cinnamaldehyde, allyl amyl glycolate, β-ionone, isoe super, isobutylquinoline, iris oil, iron, indole, ylang-ylang oil, undecanal, undecenal, γ-undecalactone, estragole, eugenol, oakmoss, opoponax resinoid, orange oil, eugenol, aurantiol, galacsolids, carvacrol, L-carvone, camphor, cannon, carrot seed oil, clove oil, methyl cinnamate, geraniol, geranyl nitrile, isobornyl acetate, geranyl acetate, dimethylbenzylcarbinyl acetate, styraryl acetate, cedryl acetate, terpineol acetate, pt-butylcyclohexyl acetate Al, vetiveryl acetate, benzyl acetate, linalyl acetate, isopentyl salicylate, benzyl salicylate, sandalwood oil, santalol, cyclamen aldehyde, cyclopentadecanolide, methyl dihydrojasmonate, dihydromyrcenol, jasmine absolute, jasmine lactone, cis-jasmone, citral, citronenol, citronellal, cinnamon bark oil, 1,8-cineole, cinnamaldehyde, styrax resinoid, cedarwood oil, cedrene, cedrol, celery seed oil, thyme oil, damascone, damascenone, thymol, tuberose absolute, decanal, decalactone, terpineol, gamma-terpinene, tripluran, nerol, nonanal, 2,6-Nonadienol, Nonalactone, Patchouli Alcohol, Vanilla Absolute, Vanillin, Basil Oil, Patchouli Oil, Hydroxycitronellal, Alpha-Pinene, Piperitone, Phenethyl Alcohol, Phenylacetaldehyde, Petitgrain Oil, Hexyl Cinnamaldehyde, cis-3-Hexenol, Balsam of Peru, Vetiver Oil, Vetiverol, Peppermint Oil, Pepper Oil, Heliotropin, Bergamot Oil, Benzyl Benzene Preferred examples of the fragrance include synthetic and natural fragrances such as maltodextrin, borneol, myrrhizoid, musk ketone, methylnonylacetaldehyde, γ-methylionone, menthol, L-menthol, L-menthone, eucalyptus oil, β-ionone, lime oil, lavender oil, D-limonene, linalool, lyral, lilial, lemon oil, rose absolute, rose oxide, rose oil, rosemary oil, and various essential oils, as well as various blended fragrances.
[0044] Preferred examples of water include tap water, purified water, hard water, soft water, natural water, deep sea water, electrolytic alkaline ionized water, electrolytic acidic ionized water, ionized water, and cluster water.
[0045] In addition to these, it is possible to contain known cosmetic ingredients, pharmaceutical ingredients, food ingredients, etc. in known combinations, ratios, and amounts, such as ingredients listed in the Cosmetic Ingredient Standards, Cosmetic Type Ingredient Standards, Japan Cosmetic Industry Association Ingredient Labeling List, INCI Dictionary (The International Cosmetic Ingredient Dictionary and Handbook), Quasi-drug Ingredient Standards, Japanese Pharmacopoeia, Pharmaceutical Additives Standards, Food Additives Official Standards, and ingredients listed in Japanese and foreign patent gazettes and patent publications (including published gazettes and republications) that fall into the International Patent Classification IPC classifications A61K7 and A61K8.
[0046] The type of the cosmetic of the present invention is not particularly limited, but specific examples include hair cosmetics, skin cosmetics, makeup cosmetics, fragrance cosmetics, body cosmetics, external skin preparations, etc. The cosmetic of the present invention can be produced according to a conventional method.
[0047] To explain the types of cosmetics of the present invention in more detail, preferred examples of hair cosmetics include shampoos such as oil shampoo, cream shampoo, conditioning shampoo, anti-dandruff shampoo, hair color shampoo, and rinse-in-one shampoo; hair care agents such as rinse, conditioner, treatment, hair pack, leave-on treatment, hair mist, and hair oil; hair styling products such as hair foam, hair mousse, hair spray, hair wax, hair gel, hair cream, water grease, setting lotion, pomade, and tic; hair dyes such as color lotions, hair color treatments, hair manicures, and oxidation hair dyes; hair tonics, hair liquids, hair blow dryers, split end coats, permanent wave agents, straight perm agents, hair bleach, hair color pre-treatments, hair color after-treatments, perm pre-treatments, perm after-treatments, and hair growth agents.
[0048] Skin cosmetics include lotions such as softening lotion, astringent lotion, cleansing lotion, multi-layered lotion, and liposome lotion, emulsions such as emollient lotion, moisture lotion, milky lotion, nourishing lotion, nourishing milk, skin moisture, moisturizing emulsion, massage lotion, exfoliating smoother, elbow lotion, hand lotion, and body lotion, emollient cream, nourishing cream, nourishing cream, vanishing cream, moisture cream, night cream, massage cream, cleansing cream, makeup cream, base cream, pre-makeup cream, sunscreen cream, suntan cream, hair removal cream, deodorant cream, shaving cream, and keratin cream. Preferred examples include skin care cosmetics such as creams such as softening cream, gels such as moisturizing gels, whitening gels and all-in-one gels, and serums such as moisturizing essences, whitening essences, moisturizing serums and whitening serums; sunscreen cosmetics such as sun protectants, sun protectors, UV care milks and sunscreens; packs and masks such as peel-off packs, powder packs, washing packs, oil packs and cleansing masks; cleansing cosmetics such as cleansing foams, cleansing creams, cleansing milks, cleansing lotions, cleansing gels and cleansing oils; and facial cleansers such as paste facial cleansers, gel facial cleansers, foam facial cleansers, facial cleansing powders, cosmetic soaps, transparent soaps, medicated soaps, liquid soaps and shaving soaps.
[0049] Preferred examples of makeup cosmetics include lipstick, lip gloss, foundation, blush, face powder, concealer, eyeliner, mascara, eye shadow, eyebrow pencil, nail enamel, enamel remover, and nail treatment.
[0050] Preferred examples of the aromatic cosmetics include perfumes, perfumes, parfums, eau de parfum, eau de toilette, eau de cologne, solid perfumes, aromatic powders, perfumed soaps, body lotions, and bath oils.
[0051] Preferred examples of body cosmetics include body cleansers such as body shampoos, deodorant cosmetics such as deodorant lotions, deodorant powders, deodorant sprays and deodorant sticks, bleaches, depilatories, bath additives, and insect repellents such as insect repellent sprays.
[0052] Preferred examples of topical skin preparations include ointments, lotions, creams or gels, patches, liniments, liquid applications, etc. They can also be used as oral cosmetics such as toothpastes and mouthwashes.
[0053] Preferred formulations of the cosmetic of the present invention include emulsion-type cosmetics such as oil-in-water (O / W) type, water-in-oil (W / O) type, W / O / W type, and O / W / O type, oil-based cosmetics, solid cosmetics, liquid cosmetics, paste cosmetics, stick-type cosmetics, volatile oil-type cosmetics, powder cosmetics, jelly-type cosmetics, gel-type cosmetics, paste-type cosmetics, emulsified polymer-type cosmetics, sheet-type cosmetics, mist-type cosmetics, and spray-type cosmetics.
[0054] The present invention will be described in more detail with reference to the following examples, but the present invention is not limited to these examples in any way.
[0055] Compositions comprising components (A) and (B) of the present invention were prepared according to the formulations shown in Table 1, and the initial solubility of the resulting compositions was evaluated. The results are also shown in the lower column of Table 1. <Evaluation method for initial solubility> The components were mixed with stirring at 60°C, and the appearance of the resulting composition was visually observed, and the initial solubility was evaluated according to the following evaluation criteria. Evaluation criteria ◎ Overall uniformity and transparency 〇: Overall uniform, but slightly opaque △: Overall uniform, but opaque × Insoluble matter was generated and the overall appearance was uneven.
[0056] [Table 1]
[0057] The results in Table 1 show that component (B1) alone was unable to completely dissolve component (A), but that the combined use of component (B1) and component (B2) made it possible to dissolve component (A). On the other hand, it was found that increasing the ratio of component (B2) to component (B1) again made it impossible to dissolve component (A).
[0058] Cosmetic compositions of the present invention were prepared according to the formulations shown in Tables 2 to 5. For comparison, a cosmetic composition not containing component (C) (Comparative Example 1) and a cosmetic composition with a content of component (C) outside the range of the present application (Comparative Example 2) were also prepared. The resulting cosmetic compositions were evaluated for initial solubility, storage stability, and dispersibility in water and oil. Initial solubility was evaluated in the same manner as above, and storage stability and dispersibility in water and oil were evaluated using the methods described below. The results obtained are also shown in the lower columns of Tables 2 to 5. <Evaluation method for storage stability> The cosmetic compositions obtained were stored at 25°C for 1 month, and then the appearance was visually observed, and the storage stability was evaluated according to the following evaluation criteria. Evaluation criteria ◎ No change in appearance compared to the original 〇...Transparency has decreased slightly compared to the initial stage △···Transparency has decreased significantly compared to the initial state × Separation or precipitation occurred <Method for evaluating dispersibility in water / oil> A 20 mL beaker was charged with 9.5 g of water or oil and an oval magnetic stirrer bar (20 mm long x 4 mm diameter). While stirring at room temperature (500 rpm), 0.5 g of each cosmetic composition (containing 0.1 g of lecithin) was added using a dropper, and the time until the mixture was uniformly dispersed was measured. Caprylic / capric triglyceride was used as the oil. Furthermore, the cosmetic compositions (Examples 14 to 16) that used hydrogenated lecithin as component (A) were solid at room temperature, so they were heated to a temperature (40 to 50°C) at which they became fluid before being added. When 0.1 g of lecithin was added as is, it took about 17 minutes for it to disperse uniformly in water and about 20 minutes for it to disperse uniformly in oil. Therefore, dispersibility was evaluated according to the following evaluation criteria. Evaluation criteria ◎ It took less than 5 minutes for the mixture to be uniformly dispersed. ○ The time required for uniform dispersion was between 5 and 10 minutes. △: The time required for uniform dispersion was between 10 and 15 minutes. ×: It took more than 15 minutes for the material to be uniformly dispersed.
[0059] [Table 2]
[0060] [Table 3]
[0061] [Table 4]
[0062] [Table 5]
[0063] The results in Tables 2 to 5 demonstrate that the cosmetic compositions of the present invention have excellent storage stability and dispersibility in water and oil. On the other hand, it was confirmed that Comparative Example 1, which did not contain component (C), had insufficient storage stability, and Comparative Example 2, which contained a high amount of component (C), had insufficient initial solubility. Furthermore, the results in Table 3 demonstrate that various oily components can be used as component (C). The results in Table 4 demonstrate that components with various PC contents or hydrogenated components can be used as component (A). The results in Table 5 demonstrate that 1,2-pentanediol can be used as component (B2) instead of ethanol.
[0064] Shampoos containing the cosmetic composition of the present invention were prepared according to the formulations shown in Table 6. For comparison, shampoos not containing the cosmetic composition of the present invention were prepared. The skin irritation of the resulting shampoos was evaluated using the method described below. The results are shown in the lower part of Table 6. <Skin irritation evaluation method> 1g of shampoo was applied to the entire back of the hand and rubbed with the palm of the hand 60 times, after which the shampoo on the back of the hand was rinsed off with running water. After removing the water with a towel, the skin irritation was evaluated based on the sensory evaluation criteria below. Evaluation criteria 〇There was no pain △...I felt a slight tingling pain. ×...I felt a stinging pain
[0065] [Table 6]
[0066] The results in Table 6 demonstrate that the cosmetic composition of the present invention has the effect of mitigating irritation caused by surfactants.
[0067] The following cosmetics were prepared. The skin cosmetics have excellent usability and moisturizing properties, and prevent fine wrinkles and rough skin. The hair cosmetics have excellent usability, blending well with hair when applied and imparting a moist, smooth, slippery, and manageable feel to hair when rinsing and after drying. They also suppress fuzzing of the cuticle and mitigate irritation caused by surfactants. The makeup cosmetics have excellent luster, color development, moisturizing, and long-lasting moisturizing properties, are non-sticky, and blend well with and are smooth on the skin.
[0068] Example 23: Lotion Component Amount (mass%) -------------------------------------- Cosmetic composition of Example 4 5.0 1,3-butylene glycol 3.0 Phenoxyethanol 0.4 Purified water (amount to make a total of 100) -------------------------------------- (Preparation method) All ingredients were mixed to form a homogeneous liquid.
[0069] Example 24 Lotion Component Amount (mass%) -------------------------------------- Cosmetic composition of Example 4 20.0 Propylene Glycol 5.0 Phenoxyethanol 0.4 Purified water (amount to make a total of 100) -------------------------------------- (Preparation method) All ingredients were mixed to form a homogeneous liquid.
[0070] Example 25 Lotion Component Amount (mass%) -------------------------------------- Cosmetic composition of Example 13 10.0 Dipropylene Glycol 3.0 Phenoxyethanol 0.4 Purified water (amount to make a total of 100) -------------------------------------- (Preparation method) All ingredients were mixed to form a homogeneous liquid.
[0071] Example 26 Lotion Component Amount (mass%) -------------------------------------- Cosmetic composition of Example 5 0.5 1,3-butylene glycol 3.0 Pentylene glycol 1.0 Phenoxyethanol 0.4 Purified water (amount to make a total of 100) -------------------------------------- (Preparation method) All ingredients were mixed to form a homogeneous liquid.
[0072] Example 27 Lotion Component Amount (mass%) ------------------------------------------ Cosmetic composition of Example 4 2.5 Inulin-SC (Nippon Fine Chemical) 1.0 Sorbitol 3.0 Glycerin 3.0 1,3-butylene glycol 3.0 Dipropylene Glycol 5.0 Glycyrrhizic acid 2K 0.1 Allantoin 0.1 (Acrylates / C10-30 alkyl acrylate) crosspolymer (2%) 2.0 Tremoist-SL (Nippon Fine Chemical) 2.0 Xanthan gum (2% aqueous solution) 1.0 Phenoxyethanol 0.4 Purified water (amount to make a total of 100) ------------------------------------------ (Preparation method) All ingredients were mixed at approximately 40°C to obtain a homogeneous solution (pH approximately 6, viscosity approximately 500 mPa·s).
[0073] Example 28 Lotion Component Amount (mass%) -------------------------------------- Cosmetic composition of Example 4 10.0 Tranexamic acid (Nippon Fine Chemical) 2.0 Glycerin 3.0 Pentylene Glycol 3.0 1,3-butylene glycol 5.0 Arbutin 3.0 3-O-Ethyl ascorbic acid (Nippon Fine Chemical) 1.0 Peony root extract 0.1 Lemon juice 0.1 Aloe Vera Leaf Extract 0.1 Rice bran extract 0.1 Carbomer (2% aqueous solution) 5.0 Tamarind gum (2% aqueous solution) 2.0 Neosolue-Aqulio (Nippon Fine Chemical) 1.0 Citric acid (appropriate amount) Sodium citrate 0.05 EDTA-2Na 0.05 Phenoxyethanol 0.4 Purified water (amount to make a total of 100) -------------------------------------- (Preparation method) All ingredients were mixed at about 40°C to form a homogeneous liquid, and the pH was adjusted to 4.5-5.0 with citric acid.
[0074] Example 29: Lotion Component Amount (mass%) ---------------------------------------- Part A Cosmetic composition of Example 4 0.5 Diglycerin 3.0 Trehalose 0.5 Neosolue-AquaS (Nippon Fine Chemical) 1.0 PEG / PPG / Polybutylene Glycol-8 / 5 / 3 Glycerin 0.5 Glucosylceramide 0.5 Glucosylrutin 0.01 Polyquaternium-51 0.5 Acetyl hexapeptide-8 0.001 Hydrolyzed Collagen 0.05 Hydrolyzed Hyaluronic Acid 0.01 Carbomer 0.05 Arginine 0.05 Phenoxyethanol 0.2 Methylparaben 0.15 Xanthan gum 0.1 Purified water (amount to make a total of 100) Part B Nicotinamide 5.0 Tremoist-TP (Nippon Fine Chemical) 0.01 Inulin-SC (Nippon Fine Chemical) 0.1 Purified water 20.0 ---------------------------------------- (Preparation method) Part A was dissolved uniformly at about 80°C, and part B was added to make a homogeneous solution (pH about 5.6, viscosity about 600 mPa·s).
[0075] Example 30: Lotion Component Amount (mass%) -------------------------------------- Cosmetic composition of Example 2 5.0 Arbutin 3.0 Magnesium Ascorbyl Phosphate 2.0 Heparinoid 1.0 Diglycerin 2.0 1,3-butylene glycol 5.0 Dipropylene Glycol 3.0 Xanthan gum 0.02 Cellulose gum 0.01 Pentylene glycol 1.0 Phenoxyethanol 0.5 Lactic acid appropriate amount Purified water (amount to make a total of 100) -------------------------------------- (Preparation method) All ingredients were mixed at approximately 60°C to form a homogeneous liquid, and the pH was adjusted to 5.0 with lactic acid.
[0076] Example 31 Lotion Component Amount (mass%) ----------------------------------------- Part A PEG-60 Hydrogenated Castor Oil 0.2 Polysorbate 80 0.2 Macadamia nut oil 0.01 Rice bran oil 0.01 Neosolue-Aqulio (Nippon Fine Chemical) 2.0 1,3-butylene glycol 2.0 Propanediol 2.0 Part B Cosmetic composition of Example 4 30.0 Hydrolyzed Collagen 0.01 Rice bran extract 0.01 Placenta extract 0.01 Soybean Seed Extract 0.01 Ethylhexylglycerin 0.3 Xanthan gum (2% aqueous solution) 5.0 Carbomer neutralized with KOH (2% aqueous solution) 2.5 Citric acid (appropriate amount) Sodium citrate 0.05 Purified water (amount to make a total of 100) ----------------------------------------- (Preparation method) After dissolving Part A uniformly at approximately 80°C, Part B was added to make a uniform solution, and the pH was adjusted to approximately 5.0 with citric acid (viscosity approximately 600 mPa·s).
[0077] Example 32 Lotion Component Amount (mass%) --------------------------------------- Part A Cosmetic composition of Example 12 1.0 Neosolue-Aqulio (Nippon Fine Chemical) 1.0 Inositol 1.5 PPG-6-decyltetradeceth-30 0.2 PEG-60 Hydrogenated Castor Oil 0.2 PEG-30 Phytosterol 0.1 Cocoyl Hydrolyzed Collagen K 0.5 Carbomer 0.05 Arginine 0.05 Phenoxyethanol 0.4 Hydroxyethyl cellulose 0.1 Purified water (amount to make a total of 100) Part B Sodium Hyaluronate 0.01 Carrageenan 0.05 Sodium alginate 0.01 Citric acid 0.01 Sodium citrate 0.05 Purified water 10.0 C part Fragrance (appropriate amount) Ethanol 3.0 --------------------------------------- (Preparation method) After dissolving Part A uniformly at approximately 80°C, Parts B and C were added to make a uniform solution (pH approximately 6.5, viscosity approximately 1,500 mPa·s).
[0078] Example 33: Serum Component Amount (mass%) ---------------------------------------- Part A Cosmetic composition of Example 4 20.0 1,3-butylene glycol 3.0 Dipropylene Glycol 3.0 Dimethicone (2cs) 0.1 PEG-10 Dimethicone 0.5 Ethanol 5.0 Betaine 0.2 Neosolue-Aqulio (Nippon Fine Chemical) 1.0 Part B Purified water (amount to make a total of 100) Phenoxyethanol 0.3 C part Tranexamic acid (Nippon Fine Chemical) 2.0 Ascorbyl Glucoside 1.0 Dipotassium glycyrrhizinate 0.1 (Acrylates / C10-30 alkyl acrylate) crosspolymer (2%) 2.0 Xanthan gum (2% aqueous solution) 2.5 Tremoist-SL (Nippon Fine Chemical) 2.0 Purified water 30.0 ---------------------------------------- (Preparation method) Part A was heated to 60°C and stirred uniformly. Part B was heated to 60°C, and Part A was added while stirring with a homomixer (5000 rpm). After cooling to approximately 40°C, Part C was added (pH approximately 6.2, viscosity approximately 4,000 mPa·s).
[0079] Example 34: Serum Component Amount (mass%) ------------------------------------- Part A 1,3-butylene glycol 5.0 Propylene Glycol 5.0 Stearyl Glycyrrhetinate 0.1 Phytopresome Cera-36 (Nippon Fine Chemical) 0.2 Part B Purified water (amount to make a total of 100) C part Cosmetic composition of Example 4 0.5 Phenoxyethanol 0.5 Sodium Hyaluronate 0.01 3-O-Ethyl ascorbic acid (Nippon Fine Chemical) 0.5 Carbomer neutralized with KOH (2% aqueous solution) 2.5 Hydroxyethylcellulose (2% aqueous solution) 2.5 Lemon extract 0.01 Rosemary extract 0.01 Purified water 20.0 ------------------------------------- (Preparation method) Part A was stirred uniformly while being heated at 80°C. Part B was heated to 80°C, and Part A was added while being stirred with a homomixer (5000 rpm). After cooling to about 50°C, Part C was added.
[0080] Example 35 Gel Component Amount (mass%) --------------------------------------- Part A Cosmetic composition of Example 4 10.0 Glycerin 3.0 Polyglycerin 0.2 Methylgluceth-10 1.0 Phenoxyethanol 0.3 Pyridoxine hydrochloride 0.05 Ethylhexylglycerin 0.2 Hydroxyethyl cellulose 0.05 Hydrolyzed Collagen 0.01 Purified water (amount to make a total of 100) Part B (Acrylate dimethyl taurate ammonium / vinyl pyrrolidone copolymer) 0.05 (Acrylates / C10-30 alkyl acrylate) crosspolymer 0.15 Arginine 0.25 Purified water 30.0 ---------------------------------------- (Preparation method) Part A was mixed to make a uniform liquid. Part B was mixed to make a viscous liquid. Part B was added to Part A and mixed to make a uniform mixture.
[0081] Example 36 Gel Component Amount (mass%) ---------------------------------------- Part A Cosmetic composition of Example 4 1.0 Tranexamic acid (Nippon Fine Chemical) 2.0 Stearyl Glycyrrhetinate 0.1 Arbutin (Nippon Fine Chemical) 5.0 Dipropylene Glycol 3.0 1,3-butylene glycol 10.0 Neosolue-AquaS (Nippon Fine Chemical) 2.0 Pentylene Glycol 3.0 Phytic acid 0.3 Phenoxyethanol 0.2 Purified water (amount to make a total of 100) Part B (Acrylates / C10-30 alkyl acrylate) crosspolymer 0.2 (PEG-240 / Decyltetradeceth-20 / HDI) Copolymer 2.0 Cellulose gum 0.05 Purified water 30.0 ---------------------------------------- (Preparation method) Part A was mixed to make a uniform liquid. Part B was mixed to make a viscous liquid. Part B was added to Part A and mixed to make a uniform mixture.
[0082] Example 37 Emulsion Component Amount (mass%) -------------------------------------- Part A 1,3-butylene glycol 12.0 Glycerin 5.0 Diglycerin 1.0 Purified water (amount to make a total of 100) Polyglyceryl-10 Stearate 0.5 Betaine 1.0 Erythritol 0.3 Part B Plandool-H (Nippon Fine Chemical) 1.0 LUSPLAN DD-DA7 (Nippon Fine Chemical) 0.5 Plandool-LG1 (Nippon Fine Chemical) 0.5 Cholesteryl Hydroxystearate 1.0 Sorbitan sesquioleate 0.1 Alcaligenes polysaccharide 0.1 Hydrogenated lecithin 0.7 PEG-240 / Decyltetradeceth-20 / HDI Copolymer 1.0 α-olefin oligomer 1.0 Shea butter 0.5 Dimethylpolysiloxane (100CS) 0.5 Ceramide 3 0.1 Astaxanthin 0.02 Tocopherol 0.01 Cetostearyl Alcohol 1.0 Behenyl alcohol 0.5 C part Cosmetic composition of Example 4 1.0 Methyl parahydroxybenzoate 0.1 Tremoist-TP (Nippon Fine Chemical) 0.01 Acrylic acid / alkyl methacrylate copolymer 0.1 Xanthan gum 0.1 Sodium hydroxide 0.03 Ethanol 5.0 Fragrance 0.2 Purified water 1.0 -------------------------------------- (Preparation method) Parts A and B were dissolved uniformly at approximately 80°C. Part B was added to part A and mixed with stirring at approximately 70°C. After cooling to 40°C, part C was added to make a uniform solution (pH approximately 6, viscosity approximately 4,500 mPa·s).
[0083] Example 38 Emulsion Component Amount (mass%) --------------------------------------- Part A Phytocompo-SP (Nippon Fine Chemical) 10.0 Dipropylene Glycol 3.0 Stearyl glycyrrhetinate 0.3 Pentylene Glycol 3.0 Part B Squalane 2.0 Olive oil 3.0 Plandool-S (Nippon Fine Chemical) 1.0 Plandool-LG2 (Nippon Fine Chemical) 1.0 Plandool-MAS (Nippon Fine Chemical) 1.0 Cetyl alcohol 2.0 Caprylic / Capric Triglyceride 3.0 LUSPLAN PI-DA (Nippon Fine Chemical) 0.02 Diethylhexyl succinate (Nippon Fine Chemical) 1.98 Tocopherol 0.1 C part Purified water (amount to make a total of 100) D part Cosmetic composition of Example 4 10.0 Purified water 20.0 Inulin-SC (Nippon Fine Chemical) 3.0 Nicotinamide 5.0 3-O-Ethyl ascorbic acid (Nippon Fine Chemical) 1.0 Phytic acid 0.1 Carbomer KOH neutralized (2% aqueous solution) 10.0 Gellan gum (2% aqueous solution) 5.0 Phenoxyethanol 0.4 ---------------------------------------- (Preparation method) Parts A, B, and C were each heated to approximately 70°C and uniformly dissolved or dispersed. Part B was added to Part A while stirring using a homodisper, and then Part C was added and mixed with stirring. After further processing twice using a high-pressure emulsifier (100 MPa), Part D was added at approximately 50°C and homogenized.
[0084] Example 39 Emulsion Component Amount (mass%) --------------------------------------- Part A Composite-PC (Nippon Fine Chemical) 1.0 LP70H (Nippon Fine Chemical) 0.1 Glycerin 8.0 1,3-butylene glycol 5.0 Pentylene Glycol 3.0 Part B Mineral Oil 2.0 Olive oil 3.0 LUSPLAN DD-IS (Nippon Fine Chemical) 1.0 Plandool-G (Nippon Fine Chemical) 1.0 Plandool-ISS (Nippon Fine Chemical) 1.0 Behenyl Alcohol 2.0 Caprylic / Capric Triglyceride 3.0 Dimethicone (100cs) 5.0 Tocopherol 0.1 C part Purified water (amount to make a total of 100) Phenoxyethanol 0.1 Trisodium Ascorbyl Palmitate Phosphate 0.1 D part Cosmetic composition of Example 12 20.0 Carbomer KOH neutralized (2% aqueous solution) 10.0 Hydroxyethylcellulose (2% aqueous solution) 5.0 Guar gum (2% aqueous solution) 5.0 ---------------------------------------- (Preparation method) Parts A, B, and C were each heated to approximately 70°C and uniformly dissolved or dispersed. Part B was added to Part A while stirring with a homodisper, and then Part C was added and emulsified. After cooling, Part D was added while stirring.
[0085] Example 40 Emulsion Component Amount (mass%) -------------------------------------- Part A Cosmetic composition of Example 4 5.0 Phytocompo-SC (Nippon Fine Chemical) 10.0 Diglycerin 2.0 Propanediol 3.0 Part B Hydrogenated Polyisobutene 2.0 Jojoba Seed Oil 3.0 Plandool-DP (Nippon Fine Chemical) 1.0 LUSPLAN DD-DHR (Nippon Fine Chemicals) 0.5 Cetyl ethylhexanoate 2.0 Hydrogenated rapeseed oil alcohol 2.0 Macadamia nut oil 0.5 Stearyl glycyrrhetinate 0.3 Soybean oil 0.8 Ascorbyl Tetrahexyldecanoate 2.0 Ethylhexylglycerin 1.0 Glyceryl Caprylate 1.0 Tocopherol 0.1 C part Purified water (amount to make a total of 100) Tranexamic acid (Nippon Fine Chemical) 1.0 Sorbitol 5.0 D part (Acrylates / C10-30 alkyl acrylate) crosspolymer (2%) 10.0 Sodium alginate (2% aqueous solution) 5.0 -------------------------------------- (Preparation method) Parts A, B, and C were each heated to approximately 70°C and uniformly dissolved or dispersed. Part B was added to Part A while stirring with a homodisper, and then Part C was added and emulsified. After cooling, Part D was added while stirring.
[0086] Example 41 Skin Care Cream Component Amount (mass%) -------------------------------------- Part A Neosolue-Aqulio (Nippon Fine Chemical) 1.0 1,3-Propanediol 5.0 1,3-butylene glycol 10.0 Purified water (amount to make a total of 100) Methylgluceth-10 2.0 Sodium citrate 0.06 Sodium hydrogen phosphate 0.03 EDTA-2Na 0.05 Methylparaben 0.1 Phenoxyethanol 0.3 L-theanine 0.5 Part B Cosmetic composition of Example 4 5.0 PEG-20 Sorbitan Stearate 1.0 PEG-60 Hydrogenated Castor Oil 0.5 Sorbitan sesquistearate 0.2 Cetostearyl Alcohol 2.0 Behenyl Alcohol 1.0 Beeswax 1.0 Plandool-LG2 (Nippon Fine Chemical) 1.5 Oleyl oleate 0.5 Ethyl oleate 1.5 Vaseline 1.5 Hydrogenated polyisobutene 0.5 Plandool-MAS (Nippon Fine Chemicals) 0.5 Jojoba oil 2.0 Tocopherol 0.02 C part (Acrylates / C10-30 alkyl acrylate) crosspolymer 0.05 Gellan gum 0.01 Tremoist-TP (Nippon Fine Chemical) 0.01 Sodium hydroxide 0.05 Hydrolyzed Hyaluronic Acid 0.01 -------------------------------------- (Preparation method) Parts A and B were mixed uniformly. Part B was added to Part A and emulsified by stirring for 3 minutes at approximately 70°C using a homomixer (3000 rpm). After cooling to approximately 50°C, Part C was added and the mixture was homogenized (pH approximately 6, viscosity approximately 12,000 mPa·s).
[0087] Example 42 Skin Care Cream Component Amount (mass%) --------------------------------------- Part A Ascorbyl Glucoside 1.0 Glycerin 5.0 Dipropylene Glycol 3.0 Sorbitol 3.0 Pentylene Glycol 2.0 EDTA-2Na 0.1 Sodium lactate 0.05 Purified water (amount to make a total of 100) Part B Plandool-LG3 (Nippon Fine Chemical) 1.0 Plandool-SUN (Nippon Fine Chemical) 1.0 Plandool-H (Nippon Fine Chemical) 1.0 Glyceryl stearate 1.0 Behenyl Alcohol 3.0 Stearyl Alcohol 3.0 Polysorbate 20 1.0 Polysorbate 80 1.0 Sorbitan oleate 0.5 Tocopheryl nicotinate 0.1 Hydrogenated Retinol 0.1 Retinol Palmitate 0.01 Pyridoxine trishexyldecanoate 0.05 Bisglyceryl ascorbate 0.3 Hexyl 3-glyceryl ascorbate 0.3 C part Cosmetic composition of Example 4 0.5 Carbomer KOH neutralized (2% aqueous solution) 5.0 (Acrylates / C10-30 alkyl acrylate) crosspolymer (2%) 5.0 Panthenol 0.5 Stearyl glycyrrhetinate 0.3 Nicotinamide 0.1 Tremoist-SL (Nippon Fine Chemical) 5.0 -------------------------------------- (Preparation method) Parts A and B were mixed uniformly. Part B was added to Part A, and the mixture was emulsified by stirring for 3 minutes at approximately 70°C using a homomixer (3000 rpm). After cooling to approximately 50°C, Part C was added and the mixture was homogenized.
[0088] Example 43 Skin Care Cream Component Amount (mass%) ------------------------------------- Part A Cosmetic composition of Example 11 10.0 Squalane 10.0 Stearic Acid 1.0 Plandool-ISS (Nippon Fine Chemical) 1.0 Macadamia nut oil 3.0 Hydrogenated rapeseed oil alcohol 2.0 Olive oil fatty acid cetearyl 1.0 Sorbitan olive oil fatty acids 0.8 Polyglyceryl-10 Oleate 1.0 Part B Acrylic acid / alkyl methacrylate copolymer 0.1 Potassium hydroxide 0.07 (Ammonium acryloyldimethyltaurate / Beheneth-25 Methacrylate Crosspolymer 0.2 Tremoist-SL (Nippon Fine Chemical) 1.0 Purified water 10.0 Hydrolyzed poly-γ-glutamic acid K 0.1 Sodium Polyglutamate 0.1 Oligopeptide-24 0.05 C part Glycerin 9.0 Propanediol 10.0 PEG-8 5.0 Methylparaben 0.1 Phenoxyethanol 0.3 Purified water (amount to make a total of 100) ------------------------------------- (Preparation method) Parts A and C were heated to approximately 70°C and dissolved or dispersed uniformly. Part B was mixed in to form a viscous liquid. Part A was added to Part C while stirring with a homomixer to emulsify it, and after cooling to approximately 50°C, Part B was added and the mixture was homogenized.
[0089] Example 44 Skin Care Cream Component Amount (mass%) ------------------------------------- Part A Plandool-DiSM (Nippon Fine Chemical) 2.0 Plandool-LG1 (Nippon Fine Chemical) 1.0 Plandool-LG4 (Nippon Fine Chemical) 1.0 Paraffin Wax 3.0 Shea Butter 3.0 Squalane 8.0 Cetyl alcohol 1.8 PCSH70 (Nippon Fine Chemical) 1.0 Hydrogenated Cocoglycerides 0.8 Glyceryl stearate 1.0 Behenyl Alcohol 1.5 Sorbitan stearate 1.0 Methyl glucose sesquistearate 1.5 Part B Cosmetic composition of Example 18 10.0 Xanthan gum 0.1 Hydroxyethyl cellulose 0.1 Crystalline cellulose powder 0.3 Stearoxyhydroxypropylmethylcellulose 0.1 Purified water 20.0 C part Glycerin 8.0 Dipropylene Glycol 5.0 Sorbitol 2.0 Phenoxyethanol 0.4 Purified water (amount to make a total of 100) ------------------------------------- (Preparation method) Parts A and C were heated to approximately 70°C and uniformly dissolved or dispersed. Part B was mixed in to form a viscous liquid. Part A was added to Part C while stirring with a homomixer to emulsify it, and after cooling to approximately 50°C, Part B was added and homogenized, and the pH was adjusted to 5.5 with citric acid.
[0090] Example 45 Skin Care Cream Component Amount (mass%) ----------------------------------- Part A Glycerin 5.0 1,3-butylene glycol 6.0 Phytocompo-PP (Nippon Fine Chemical) 2.5 Pentylene Glycol 2.0 Part B Olive Fruit Oil 3.0 1.5 tablespoons olive oil Shea butter 1.0 Neosolue-DiSM (Nippon Fine Chemical) 3.0 Sucrose stearate 0.8 Cetearyl Glucoside 1.2 Behenyl Alcohol 1.5 Ascorbyl Tetrahexyldecanoate 7.0 Isopropyl Lauroyl Sarcosinate 2.0 Hydrogenated Cocoglycerides 3.0 Cetyl alcohol 2.5 Sorbitan stearate 0.8 C part Cosmetic composition of Example 5 20.0 Xanthan gum 0.05 Tremoist-SL (Nippon Fine Chemical) 1.0 Tuberose polysaccharide 0.01 Water-soluble collagen 0.05 Hydrolyzed Collagen 0.5 Sodium pyrosulfite 0.03 Arbutin (Nippon Fine Chemical) 1.0 Tranexamic acid (Nippon Fine Chemical) 1.0 D part Neosolue-Aqulio (Nippon Fine Chemical) 1.0 Propanediol 3.0 Methylparaben 0.1 Purified water (amount to make a total of 100) ------------------------------------- (Preparation method) Parts A, B, and D were each heated to approximately 70°C and uniformly dissolved or dispersed. Part C was added to form a viscous liquid. Part B was added to Part A while stirring with a homodisper, and then Part D was added and emulsified. After cooling to approximately 50°C, Part C was added and the mixture was homogenized.
[0091] Example 46 Cleansing Lotion Component Amount (mass%) --------------------------------- Cosmetic composition of Example 4 0.5 Neosolue-Aqulio (Nippon Fine Chemical) 1.0 Dipropylene Glycol 5.0 Glycerin 3.0 PEG-6 (Caprylic / Capric) Glyceryl 6.0 Citric acid 0.01 Sodium citrate 0.04 EDTA-2Na 0.05 Phenoxyethanol 0.4 Purified water (amount to make a total of 100) --------------------------------- (Preparation method) The ingredients were mixed together until uniform.
[0092] Example 47 Cleansing Liquid Component Amount (mass%) --------------------------------- Cosmetic composition of Example 4 10.0 Neosolue-Aqulio (Nippon Fine Chemical) 5.0 Dipropylene glycol 30.0 1,3-butylene glycol 2.0 PEG-20 Glyceryl Triisostearate 20.0 PEG-20 Glyceryl Isostearate 8.0 Citric acid 0.2 Sodium citrate 0.1 EDTA-2Na 0.1 Phenoxyethanol 0.4 Purified water (amount to make a total of 100) --------------------------------- (Preparation method) The ingredients were mixed together until uniform.
[0093] Example 48 Cleansing Oil Component Amount (mass%) --------------------------------- Part A Cosmetic composition of Example 5 1.0 PEG-15 Glyceryl Isostearate 29.0 Dipropylene glycol 20.0 PEG-20 Glyceryl Triisostearate 7.0 Sorbitan sesquiisostearate 3.2 Part B Neosolue-DE (Nippon Fine Chemicals) 8.0 Neosolue-Aqulio (Nippon Fine Chemical) 2.0 Plandool-S (Nippon Fine Chemical) 1.0 Plandool-LG2 (Nippon Fine Chemical) 1.0 Diethylhexyl sebacate (Nippon Fine Chemical) - total amount equals 100 Tocopherol 0.05 Meadowfoam oil 0.01 Lavender oil 0.01 Orange peel oil 0.01 --------------------------------- (Preparation method) Parts A and B were mixed uniformly. Part B was gradually added to Part A while stirring, and mixed until uniform.
[0094] Example 49 Cleansing Cream Component Amount (mass%) --------------------------------- Part A Cosmetic composition of Example 4 5.0 Neosolue-DE (Nippon Fine Chemicals) 5.0 Glycerin 3.0 Plandool-LG2 (Nippon Fine Chemical) 1.0 Neosolue-Aqulio (Nippon Fine Chemical) 1.0 Ceresin 6.0 Mineral oil 28.0 PEG-12 Isostearate 3.0 Sorbitan Sesquioleate 1.5 Polyoxyethylene sorbitan oleate 0.3 Microcrystalline Wax 2.0 Tocopherol 0.05 Propylparaben 0.05 Part B Dipropylene Glycol 5.0 Methylparaben 0.2 Disodium edetate 0.02 Phenoxyethanol 0.2 Purified water (amount to make a total of 100) --------------------------------- (Preparation method) Parts A and B were each heated to approximately 80°C and dissolved. Part B was gradually added to part A while stirring to emulsify, and then cooled.
[0095] Example 50 Facial cleanser Component Amount (mass%) ---------------------------------- Part A Cosmetic composition of Example 4 10.0 Potassium stearate 10.0 Potassium palmitate 10.0 Potassium myristate 10.0 Potassium Laurate 4.0 Isopropyl Lauroyl Sarcosinate 0.8 PEG1500 10.0 Glycerin 15.0 Glyceryl Monostearate 1.0 POE(20) Sorbitan Monostearate 2.0 Part B Polyquaternium-7 0.5 Polyquaternium-39 0.5 Methylparaben 0.1 Purified water (amount to make a total of 100) ---------------------------------- (Preparation method) Part A was heated to about 80° C. and dissolved. Part B was heated to about 80° C. Part B was gradually added to Part A while stirring, and then cooled.
[0096] Example 51 Facial cleanser Component Amount (mass%) --------------------------------- Part A (Coconut Fatty Acid / Hydrogenated Beef Fatty Acid) Sodium Glutamate 30.0 Cocoyl glycine potassium 5.0 Plandool-LG2 (Nippon Fine Chemical) 0.2 Lauric acid diethanolamide 3.0 Tocopherol 0.1 PEG-8 5.0 PEG-32 10.0 Glycerin 14.0 Propylparaben 0.1 Part B Methylparaben 0.2 Polyquaternium-51 1.0 Microcrystalline cellulose 0.3 Polyquaternium-7 0.8 Purified water (amount to make a total of 100) C part Cosmetic composition of Example 18 0.5 Tremoist-TP (Nippon Fine Chemical) 0.02 Purified water 10.0 --------------------------------- (Preparation method) Part A was heated to about 80°C and dissolved. Part B was heated to about 80°C. Part B was gradually added to Part A while stirring, then cooled to about 40°C, and Part C was added and mixed uniformly.
[0097] Example 52 Body Shampoo Component Amount (mass%) --------------------------------- Cosmetic composition of Example 4 0.5 Coconut fatty acid potassium, myristate potassium 10.0 Sodium Methyl Cocoyl Taurate 1.5 Cocamide DEA 5.0 EDTA-2Na 0.1 Concentrated glycerin 10.0 Cocamidopropyl Betaine 5.0 Phenoxyethanol 0.4 Purified water (amount to make a total of 100) --------------------------------- (Preparation method) All ingredients were heated to about 80°C and mixed uniformly with stirring.
[0098] Example 53 Body Shampoo Component Amount (mass%) --------------------------------- Part A Sodium Methyl Cocoyl Taurate 10.0 Lauroyl Hydrolyzed Silk Sodium 6.0 Sodium Lauroyl Methylalanine 10.0 Sodium Cocoamphoacetate (30%) 4.0 Cocamidopropyl Betaine (30%) 10.0 Sodium Olefin (C14-16) Sulfonate 5.0 Polyquaternium-10 1.3 Guar Hydroxypropyltrimonium Chloride 0.8 Sodium acetyl hyaluronate 0.02 Cocamide DEA 3.0 Glycerin 5.0 Methylparaben 0.2 Purified water (amount to make a total of 100) Part B Cosmetic composition of Example 4 30.0 Tremoist-TP (Nippon Fine Chemical) 0.02 Purified water 10.0 --------------------------------- (Preparation method) Part A was heated to about 80°C and dissolved uniformly. After cooling to about 40°C, part B was added and mixed uniformly.
[0099] Example 54 Mist Lotion Component Amount (mass%) ------------------------------------ Part A Cosmetic composition of Example 4 5.0 Purified water (amount to make a total of 100) Ethanol 9.0 BisPEG-18 methyl ether dimethyl silane 5.0 Pentylene glycol 1.0 Phenoxyethanol 0.2 Citric acid 0.03 Sodium citrate 0.02 Inulin-SC (Nippon Fine Chemical) 1.0 Part B Neosolue-AquaS (Nippon Fine Chemical) 1.0 C part Acrylates copolymer 0.2 ------------------------------------- (Preparation method) After dissolving Part A uniformly, Part B heated to 60°C was added and mixed uniformly. Part C was then added and mixed uniformly, and the mixture was cooled.
[0100] Example 55 Lotion Component Amount (mass%) -------------------------------------- Part A Neosolue-DiSM (Nippon Fine Chemical) 0.2 PEG-40 Hydrogenated Castor Oil 0.3 Polyglyceryl-10 Laurate 0.2 Part B Glycerin 2.0 1,3-butylene glycol 5.0 Pentylene Glycol 2.0 C part Purified water (amount to make a total of 100) Phenoxyethanol 0.3 Inulin-SC (Nippon Fine Chemical) 1.0 D part Cosmetic composition of Example 4 20.0 Citric acid 0.01 Sodium citrate 0.09 Tremoist-SL (Nippon Fine Chemical) 1.0 (Acryloyldimethyltaurate ammonium / VP) copolymer 1.0 EDTA-2Na 0.1 -------------------------------------- (Preparation method) Part A was heated to 80°C and dissolved uniformly, and then part B, which had been heated to 80°C, was added and mixed. Then, part C, which had been heated to 80°C, was slowly added, and after cooling to approximately 40°C, part D was added and mixed uniformly.
[0101] Example 56 Emulsion Component Amount (mass%) -------------------------------------- Part A Cosmetic composition of Example 7 1.0 Ethylhexyl palmitate (Nippon Fine Chemical) 5.0 Squalane 8.0 Diethylhexyl sebacate (Nippon Fine Chemical) 5.0 Macadamia nut oil 8.0 Plandool-SUN (Nippon Fine Chemical) 1.0 Plandool-LG4 (Nippon Fine Chemical) 1.0 LUSPLAN PI-DA (Nippon Fine Chemical) 0.1 Lauryl carbamate inulin 0.3 Hydroxypropyl starch phosphate 0.2 Polyglyceryl-4 Laurate 2.0 Polyglyceryl-6 Laurate 3.0 Hydrogenated Retinol 0.01 Tocopherol 0.05 Part B Geranium globulus extract 0.1 Aminocaproic acid 0.2 Glycerin 5.0 BG 3.0 Inulin-SC (Nippon Fine Chemical) 1.0 Tremoist-SL (Nippon Fine Chemical) 1.0 Cellulose gum 0.2 Methylparaben 0.1 Phenoxyethanol 0.2 Purified water (amount to make a total of 100) -------------------------------------- (Preparation method) Parts A and B were dissolved uniformly. Part B was gradually added to Part A while stirring it at room temperature with a homomixer (2000 rpm) to emulsify it.
[0102] Example 57 Emulsion Component Amount (mass%) -------------------------------------- Part A Cosmetic composition of Example 21 10.0 Isopropyl myristate (Nippon Fine Chemical) 3.0 Squalane 2.0 Jojoba seed oil 1.5 Carnauba Wax 2.4 Phytocompo-C (Nippon Fine Chemical) 1.0 Plandool-G (Nippon Fine Chemical) 0.3 Plandool-SUN (Nippon Fine Chemical) 0.3 Part B Okra Seed Extract 0.1 Methylgluceth-10 1.5 Glycerin 5.0 1,3-butylene glycol 3.0 Inulin-SC (Nippon Fine Chemical) 1.0 Xanthan gum 0.05 Silicate (Na / Mg) 1.5 Phenoxyethanol 0.4 Purified water (amount to make a total of 100) -------------------------------------- (Preparation method) Parts A and B were each heated to approximately 80°C and dissolved. Part A was gradually added to Part B while stirring with a paddle mixer at approximately 60°C, and after emulsification, the mixture was cooled while stirring.
[0103] Example 58 W / O Cream Component Amount (mass%) -------------------------------------- Part A Cosmetic composition of Example 4 5.0 Caprylic / capric triglyceride (Nippon Fine Chemical) 5.0 Sugar Squalane 8.0 Dodecane 11.0 Diethylhexyl succinate (Nippon Fine Chemical) 5.0 Jojoba oil 5.0 Radish seed oil Plandool-MAS (Nippon Fine Chemical) 1.0 Plandool-G (Nippon Fine Chemical) 1.0 LUSPLAN DD-DA7 (Nippon Fine Chemical) 0.1 Hydrogenated lysolecithin 0.2 Inulin stearate 1.0 Dextrin palmitate 0.7 Disteardimonium Hectorite 0.8 Oil-soluble licorice extract 0.05 Pentaglyceryl Polyricinoleate 2.5 Polyglyceryl-4 Oleate 3.0 Polyglyceryl-6 Laurate 3.0 Ascorbyl Tetrahexyldecanoate 2.0 Trisodium Ascorbyl Palmitate Phosphate 1.1 Fermented soybean extract 0.1 Pyridoxine Dipalmitate 1.0 Stearyl glycyrrhetinate 0.05 Menthol 0.1 Biotin 0.1 Tocopherol 0.05 Part B Diglycerin 4.0 Glyceryl Ascorbate 1.0 Folic acid 0.1 1,3-butylene glycol 3.0 NaCl 0.5 Inulin-SC (Nippon Fine Chemical) 1.0 Tremoist-SL (Nippon Fine Chemical) 1.0 Pyridoxine 0.5 Cyanocobalamin 0.05 Ethylhexylglycerin 0.8 Phenoxyethanol 0.4 Purified water (amount to make a total of 100) -------------------------------------- (Preparation method) Parts A and B were each uniformly dissolved. Part B was added to part A, and the mixture was stirred at about 70°C with a homomixer (3000 rpm) for 3 minutes to emulsify, and then cooled to room temperature while stirring slowly.
[0104] Example 59 Serum Component Amount (mass%) -------------------------------------- Part A Neosolue-Aqulio (Nippon Fine Chemical) 1.0 PEG-40 Stearate 0.8 PEG-20 Hydrogenated Castor Oil 0.2 Propylene Glycol 5.0 1,3-butylene glycol 7.0 Purified water (amount to make a total of 100) Glycerin 5.0 Ascorbic Acid 1.0 Aminocaproic acid 0.1 Allantoin 0.1 Isopropylmethylphenol 0.05 Glycyrrhizic acid 0.1 Glycyrrhizic acid 2K 0.05 Salicylic acid 0.1 Urea 1.0 Sodium hydrogen phosphate 0.1 Sodium dihydrogen phosphate 0.3 Calcium pantothenate 0.1 Panthenyl ethyl 0.2 Pyridoxine hydrochloride 1.0 Cyanocobalamin 0.001 Biotin 0.01 Trisodium Ascorbyl Palmitate Phosphate 0.1 EDTA-2Na 0.03 Methylparaben 0.08 Ethanol 4.0 Menthol 0.02 Part B Cosmetic composition of Example 18 5.0 Caprylic / Capric Triglyceride 5.0 Isononyl isononanoate 2.0 Tocotrienol 0.02 Diglyceryl stearate 1.5 Glyceryl stearate 1.0 Pyridoxine Tripalmitate 1.0 Pyridoxine Dipalmitate 1.0 Retinol Palmitate 0.005 Eucalyptus oil 0.2 Peppermint oil 0.4 Tocopheryl acetate 0.02 Stearyl glycyrrhetinate 0.05 Stearyl Alcohol 1.0 C part Carbomer 0.01 (Acrylates / C10-30 alkyl acrylate) crosspolymer 0.01 Xanthan gum 0.05 Sodium hydroxide 0.01 -------------------------------------- (Preparation method) Parts A and B were mixed uniformly. Part B was added to Part A, and the mixture was emulsified by stirring at approximately 70°C. After cooling to approximately 50°C, Part C was added and the mixture was homogenized.
[0105] Example 60: Non-silicone shampoo Component Amount (mass%) --------------------------------- Cosmetic composition of Example 4 5.0 Plandool-LG2 (Nippon Fine Chemical) 0.03 Neosolue-AquaS (Nippon Fine Chemical) 0.1 Sodium Laureth-4 Carboxylate (28%) 10.0 Laureth-6 Carboxylic Acid 4.0 Cocamidopropyl Betaine (30%) 10.0 Sodium Lauroyl Methylalanine (30%) 5.0 Cocamidomethyl MEA 3.0 PEG-7 Glyceryl Cocoate 5.0 Sodium hydroxide 1% solution 0.5 Polyquaternium-10 0.8 Glycol distearate 0.5 Polyquaternium-7 0.5 EDTA-2Na 0.05 Methylparaben 0.2 Phenoxyethanol 0.4 Purified water (amount to make a total of 100) --------------------------------- (Preparation method) All components were mixed uniformly with stirring at about 70°C using a propeller (500 rpm) (pH about 6.5).
[0106] Example 61 Shampoo Component Amount (mass%) ---------------------------------- Cosmetic composition of Example 4 0.5 Cocoyl glutamate potassium 2.2 Sodium cocoyl glutamate 0.7 Sodium Lauroyl Methylalanine (30%) 10.0 Lauryl Betaine (35%) 20.0 Cocamidomethyl MEA 6.0 Polyglyceryl-10 Laurate 2.0 Pentylene Glycol 2.0 Polyquaternium-10 0.5 Phytic acid 0.4 Citric acid 0.1 Phenoxyethanol 0.4 Purified water (amount to make a total of 100) ---------------------------------- (Preparation method) All ingredients were heated to 70°C, stirred and mixed uniformly, and then cooled (pH approximately 6.0, viscosity approximately 2,000 mPa·s).
[0107] Example 62 Shampoo Component Amount (mass%) ---------------------------------- Part A Cosmetic composition of Example 4 0.5 Neosolue-DiSM (Nippon Fine Chemical) 0.5 PPG-3 Caprylyl Ether 0.2 Ammonium Laureth Sulfate 5.0 Sodium laureth sulfate (25%) 10.0 Sodium Laureth-6 Acetate (24%) 5.0 Lauryl Hydroxysultaine (30%) 10.0 Potassium laurate 1.0 Glycol distearate 0.5 Toluenesulfonic acid 0.3 Stearoxypropyldimethylamine 0.5 PPG-17 0.3 Dimethicone (6cs) 0.1 PEG-9 Dimethicone 0.1 Amodimethicone 0.1 Diethylhexyl sebacate (Nippon Fine Chemical) 0.5 Neopentyl glycol diethylhexanoate 0.4 Lanolin Fatty Acids 0.3 Isodecyl glyceryl ether 0.4 Cocamide MEA 1.0 Laureth-4 0.3 Laureth-16 0.2 Steareth-6 0.2 Phenoxyethanol 0.3 Part B Methylparaben 0.2 Sodium benzoate 0.3 Purified water (amount to make a total of 100) C part NanoRepair-CMC (Nippon Fine Chemical) 5.0 Polyquaternium-10 0.2 Guar Hydroxypropyltrimonium Chloride 0.1 Tremoist-SL (Nippon Fine Chemical) 3.0 Purified water 6.7 ---------------------------------- (Preparation method) Part A was mixed uniformly at about 80°C. Part B was mixed uniformly at about 60°C. Part B was gradually added to Part A while stirring with a propeller (500 rpm) and mixed uniformly. After cooling to about 50°C, Part C was added and mixed uniformly.
[0108] Example 63 Shampoo Component Amount (mass%) ---------------------------------- Part A Cosmetic composition of Example 5 10.0 Sodium laureth sulfate (25%) 20.0 Isostearamidopropyl betaine (30%) 10.0 Sodium olefin (C14-16) sulfonate (36%) 10.0 Cocamidopropyl Betaine (30%) 10.0 Cocamidomethyl MEA 3.0 Glycerin 3.0 Polyquaternium-10 0.5 Polyquaternium-52 0.3 Arginine 0.01 Aspartic acid 0.01 Glycine 0.01 Alanine 0.01 Isoleucine 0.01 Threonine 0.01 Proline 0.01 Methylparaben 0.1 Phenoxyethanol 0.6 Purified water (amount to make a total of 100) Part B 1,3-butylene glycol 3.0 Hydrolyzed keratin (wool) 0.5 Scutellaria root extract 0.01 Peach Leaf Extract 0.01 Rosemary Leaf Extract 0.01 Citric acid (appropriate amount) Purified water 10.0 ---------------------------------- (Preparation method) Part A was mixed uniformly at about 60° C. Part B was then added and mixed uniformly, after which the pH was adjusted to 5.5 with citric acid.
[0109] Example 64 Shampoo Component Amount (mass%) ---------------------------------- Cosmetic composition of Example 4 0.5 Sodium Lauroyl Sarcosinate (30%) 24.0 Cocamidopropyl Betaine (30%) 20.0 Polyglyceryl-10 Laurate 2.0 Decyl glucoside (40%) 2.0 Pentylene Glycol 2.0 Polyquaternium-10 0.5 Etidronic acid 0.1 Phenoxyethanol 0.4 Purified water (amount to make a total of 100) ---------------------------------- (Preparation method) All ingredients were heated to 70°C, stirred with a propeller (300 rpm), mixed uniformly, and then cooled (pH approximately 6.0, viscosity approximately 300 mPa·s).
[0110] Example 65 Shampoo Component Amount (mass%) ---------------------------------- Cosmetic composition of Example 13 5.0 Potassium Cocoyl Glutamate 5.0 Cocoyl glycine potassium 2.0 Sodium Lauroyl Aspartate 3.0 Lauryl Betaine (35%) 10.0 Lauryl Hydroxysultaine 3.0 Cocamidomethyl MEA 6.0 Glycerin 5.0 Dipropylene Glycol 3.0 Inulin-SC (Nippon Fine Chemical) 1.0 Neosolue-Aqulio (Nippon Fine Chemical) 0.05 Glyceryl Caprylate 1.0 Polyquaternium-7 0.5 Polyquaternium-10 0.5 Phytic acid 0.2 Citric acid 0.1 Purified water (amount to make a total of 100) --------------------------------- (Preparation method) All ingredients were heated to 70°C, stirred and mixed uniformly, and then cooled.
[0111] Example 66 Shampoo Component Amount (mass%) ----------------------------------- Part A Cosmetic composition of Example 4 10.0 Sodium laureth sulfate (25%) 20.0 Sodium methyl cocoyl taurate (30%) 10.0 Cocamidopropyl Betaine (30%) 10.0 Lauramidopropyl Hydroxysultaine (30%) 5.0 Lauryl Betaine (30%) 2.0 Sodium chloride 0.1 Glycyrrhizic acid 2K 0.1 Cocamide MEA 3.0 Neosolue-Aqulio (Nippon Fine Chemical) 0.1 Malic acid 0.1 Sodium citrate 0.05 EDTA-2Na 0.1 Purified water (amount to make a total of 100) Part B 1,3-butylene glycol 1.0 Dipropylene Glycol 1.0 Menthol 0.1 Camphor 0.1 Purified water 10.0 ---------------------------------- (Preparation method) After Part A was mixed uniformly, Part B was further added and mixed uniformly.
[0112] Example 67 Hair Color Shampoo Component Amount (mass%) ----------------------------------- Cosmetic composition of Example 4 0.5 Sodium methyl cocoyl taurate (30%) 15.0 Sodium olefin (C14-16) sulfonate (36%) 13.0 Sodium Cocoamphoacetate (30%) 8.0 PPG-12-PEG-50 Lanolin 2.5 Cocoyl glutamic acid (30%) 7.0 Polyquaternium-10 1.0 Lauramidopropyl Hydroxysultaine / Water 4.0 PEG-20 Hydrogenated Castor Oil 2.0 Etidronic acid 0.2 Propylene glycol 0.2 Benzyl alcohol 2.0 Isopentyldiol 0.5 Phenoxyethanol 0.6 Purified water (amount to make a total of 100) ----------------------------------- (Preparation method) All ingredients were heated to 80°C, stirred and mixed uniformly, and then cooled.
[0113] Example 68 Shampoo Component Amount (mass%) ------------------------------------ Part A Sodium Lauroyl Methylalanine (30%) 13.0 Cocamidopropyl Betaine (30%) 20.0 TEA-Cocoyl Glutamate (30%) 5.0 Cocamide DEA 1.0 Glycerin 1.0 Glyceryl Caprylate 0.4 Glyceryl Undecylenate 0.1 Neosolue-Aqua (Nippon Fine Chemical) 1.0 Sorbitol 1.6 Miconazole nitrate 0.75 Glycol distearate 1.5 Polyquaternium-7 0.3 Part B Sodium chloride 0.20 Purified water (amount to make a total of 100) C part Cosmetic composition of Example 4 5.0 Swertia japonica extract 3.0 Polyquaternium-10 0.2 Guar Hydroxypropyltrimonium Chloride 0.1 Polyquaternium-47 0.1 Piroctone Olamine 0.1 NanoRepair-EL (Nippon Fine Chemical) 5.0 Purified water 9.7 ------------------------------------ (Preparation method) Parts A and B were heated to approximately 80°C and dissolved uniformly. Part B was gradually added to part A, and the mixture was stirred and mixed uniformly. Part C was added at approximately 60°C and the mixture was cooled.
[0114] Example 69 Shampoo Bar Component Amount (mass%) ------------------------------------- Cosmetic composition of Example 4 10.0 Glycerin 5.0 Ethanol 10.0 Purified water 20.0 Cetearyl Alcohol 5.0 Polyquaternium-10 4.0 LUSPLAN SR-DM4 (Nippon Fine Chemical) 2.0 Plandool-LG2 (Nippon Fine Chemical) 0.5 Sodium cocoyl isethionate (amount totaling 100) ------------------------------------- (Preparation method) All ingredients were mixed at approximately 80°C to form a homogeneous liquid, which was then poured into a mold and allowed to solidify (hardness approximately 600gf).
[0115] Example 70 Hair growth agent Component Amount (mass%) ------------------------------------ Part A Phytopresome Cera-36 (Nippon Fine Chemical) 0.05 PrimeLipid PI (Nippon Fine Chemical) 0.03 1,3-butylene glycol 5.0 Glycerin 3.0 1,2-Pentanediol 5.0 Polysorbate 20 0.1 LP70H (Nippon Fine Chemical) 0.02 Cosmetic composition of Example 4 5.0 Part B Dipropylene Glycol 2.0 Tremoist-TP (Nippon Fine Chemical) 0.01 Purified water 50.0 C part Ethanol 10.0 Menthol 0.1 Menthyl glyceryl ether 0.15 Panthenyl ethyl ether 0.2 Camphor 0.1 Cordyceps extract 1.0 Swertia japonica extract 1.0 Loquat Leaf Extract 1.0 Hydrolyzed hyaluronic acid 0.02 Sodium cyclic lysophosphatidic acid 0.001 Capsicum extract 0.01 Betaine 0.3 Trehalose 0.2 Cymen-5-ol 0.1 Tocopheryl acetate 0.05 β-Glycyrrhetinic acid 0.05 Purified water (amount to make a total of 100) ------------------------------------ (Preparation method) Part A and Part B were heated to 70°C, and Part A was added to Part B while stirring with a propeller (500 rpm) to prepare a nanovesicle solution. After cooling, Part C, which had been mixed in advance, was added to make a homogeneous solution.
[0116] Example 71 Scalp lotion Component Amount (mass%) -------------------------------- Cosmetic composition of Example 4 10.0 Ethanol 10.0 1,3-butylene glycol 3.0 Propanediol 2.0 Glycyrrhizic acid 2K 0.1 Menthol 0.1 Sodium Dilauramidoglutamide Lysine 0.5 Sodium lactate 0.09 Lactic acid 0.01 Phenoxyethanol 0.4 Rosemary extract 0.01 Chamomile flower extract 0.01 Burdock root extract 0.01 Loquat leaf extract 0.01 Aloe Vera Leaf Extract 0.01 Purified water (amount to make a total of 100) --------------------------------- (Preparation method) All ingredients were mixed to form a homogeneous liquid.
[0117] Example 72 Leave-in scalp / hair treatment Component Amount (mass%) -------------------------------------- Part A Cosmetic composition of Example 4 5.0 Mineral Oil 3.0 Neosolue-Aqulio (Nippon Fine Chemical) 1.0 Ethanol 40.0 Glycyrrhetinic acid 0.02 PPG-3 Caprylyl Ether 0.3 Erucalactone DES (Nippon Fine Chemical) 1.5 PEG / PPG-20 / 20 Dimethicone 0.2 PEG-12 Dimethicone 0.4 Part B Triethanolamine 0.1 Purified water (amount to make a total of 100) (Acrylates / C10-30 alkyl acrylate) crosspolymer 0.4 Carbomer 0.05 (Acryloyldimethyltaurate ammonium / VP) copolymer 0.05 (Ammonium acryloyldimethyltaurate / methacrylic acid Beheneth-25 Crosspolymer 0.1 Hydroxypropyl chitosan 0.1 Methylparaben 0.1 Dipropylene glycol 0.5 Phenoxyethanol 0.2 C part 3-O-Ethyl ascorbic acid (Nippon Fine Chemical) 0.05 Nicotinamide 0.3 Pyridoxine hydrochloride 0.1 Caffeine 0.1 Glucosyltrehalose 0.1 Purified water 10.0 ---------------------------------------- (Preparation method) Part A was heated to about 50°C and dissolved. Part B was uniformly dispersed to form a viscous liquid. Part B was added to Part A while stirring, and after uniform mixing, Part C was added and mixed uniformly.
[0118] Example 73 Hair Treatment Component Amount (mass%) ------------------------------------ Part A Cosmetic composition of Example 4 5.0 Cetearyl Alcohol 4.0 Stearyl Alcohol 1.0 Glycerin 1.0 Polyglyceryl-10 Stearate 1.0 Plandool-MAS (Nippon Fine Chemicals) 0.2 Glyceryl Caprylate 0.4 Part B Phenoxyethanol 0.4 Purified water (amount to make a total of 100) ------------------------------------- (Preparation method) Parts A and B were heated to approximately 70°C and dissolved. Part B was gradually added to Part A and mixed uniformly with a propeller (400 rpm) (pH approximately 6.0, viscosity approximately 15,000 mPa·s).
[0119] Example 74 Hair Treatment Component Amount (mass%) ------------------------------------ Part A Cosmetic composition of Example 18 10.0 Cetyl alcohol 4.0 Behenyl Alcohol 1.0 Glycerin 1.0 Polyglyceryl-10 Stearate 1.0 Plandool-G (Nippon Fine Chemical) 0.1 LUSPLAN SR-DM4 (Nippon Fine Chemical) 0.1 Glyceryl Caprylate 0.4 Part B Phenoxyethanol 0.4 Purified water (amount to make a total of 100) ------------------------------------- (Preparation method) Parts A and B were heated to about 80°C and dissolved. Part B was gradually added to part A and mixed uniformly.
[0120] Example 75 Hair Treatment Component Amount (mass%) ------------------------------------ Part A Cosmetic composition of Example 4 1.0 Cetearyl Alcohol 4.0 Stearyl Alcohol 1.0 Glycerin 1.0 Polyglyceryl-10 Stearate 1.0 Sodium cocoamphoacetate (30%) 0.3 Plandool-LG2 (Nippon Fine Chemical) 0.1 Plandool-SUN (Nippon Fine Chemical) 0.1 Plandool-GR (Nippon Fine Chemical) 0.1 Glyceryl Caprate 0.4 Part B Lactic acid (9%) 0.5 Phenoxyethanol 0.4 Purified water (amount to make a total of 100) C part Polyquaternium-10 (5%) 10.0 ------------------------------------- (Preparation method) Parts A and B were heated to approximately 70°C and dissolved. Part B was gradually added to Part A and mixed uniformly with a propeller (300 rpm). After cooling to approximately 40°C, Part C was added and mixed uniformly (pH approximately 4.2, viscosity approximately 20,000 mPa·s).
[0121] Example 76 Hair Treatment Component Amount (mass%) ------------------------------------ Part A Behentrimonium chloride (80%) 1.0 Cetearyl Alcohol 4.0 Glycerin 4.0 LUSPLAN SR-DC5 (Nippon Fine Chemical) 0.2 Plandool-LG3 (Nippon Fine Chemical) 0.1 LUSPLAN PI-DA (Nippon Fine Chemical) 0.1 Part B Phenoxyethanol 0.4 Methylparaben 0.1 Isopentyldiol 0.3 Purified water (amount to make a total of 100) C part Cosmetic composition of Example 4 0.5 ------------------------------------- (Preparation method) Parts A and B were heated to approximately 70°C and dissolved. Part B was gradually added to Part A and mixed uniformly. After cooling to approximately 40°C, Part C was added and mixed uniformly (pH approximately 5, viscosity approximately 20,000 mPa·s).
[0122] Example 77 Hair Treatment Component Amount (mass%) ------------------------------------ Part A Cosmetic composition of Example 5 10.0 Dodecane 1.5 Neosolue-Aqulio (Nippon Fine Chemical) 0.2 Plandool-H (Nippon Fine Chemical) 1.0 Polyglyceryl-10 Isostearate 0.5 Glyceryl stearate 0.5 Candelilla Wax 0.2 Cetyl Esters 0.3 Stearyl ethylhexanoate 1.0 Cetearyl Alcohol 3.5 PEG-200 0.5 Hydroxyethyl cellulose 0.4 Trideceth-6 0.3 BHT 0.03 Part B Methylparaben 0.2 Citric acid 0.05 EDTA-2Na 0.1 Purified water (amount to make a total of 100) C part PPG-3 Myristyl 0.5 Isodecyl neopentanoate 1.0 D part Tremoist-TP (Nippon Fine Chemical) 0.02 Purified water 10.0 ------------------------------------- (Preparation method) Parts A and B were heated to approximately 80°C and dissolved. Part B was gradually added to Part A and mixed uniformly with a propeller (500 rpm). Parts C and D were added at approximately 50°C while stirring and mixed uniformly.
[0123] Example 78 Hair Treatment Component Amount (mass%) -------------------------------------- Part A Plandool-LG1 (Nippon Fine Chemical) 0.5 Propanediol 3.0 Behenamidopropyl dimethylamine 1.5 Cetyl alcohol 2.2 Stearyl alcohol 0.8 Hydrogenated rapeseed oil alcohol 0.5 Neopentyl glycol diethylhexanoate 0.8 Jojoba Seed Oil 1.0 Glyceryl stearate 0.4 Cocamide MEA 0.8 Caesalpinia spinosa Hydroxypropyltrimonium chloride 0.1 Rice bran wax 0.5 Glycerin 1.0 Part B Methylparaben 0.1 Malic acid 0.4 Purified water (amount to make a total of 100) C part Cosmetic composition of Example 7 0.5 Methylheptyl caprylate 1.0 Polyquaternium-7 0.15 Myristic acid PPG-3 benzyl ether 0.5 D part Tremoist-TP (Nippon Fine Chemical) 0.01 Purified water 10.0 -------------------------------------- (Preparation method) Part A was mixed uniformly at about 80°C. Part B was mixed uniformly at about 60°C. Part B was gradually added to Part A while stirring, and after mixing uniformly, the mixture was cooled to about 50°C. Parts C and D were then added and mixed uniformly.
[0124] Example 79 Hair Treatment Component Amount (mass%) ------------------------------------ Part A Cosmetic composition of Example 4 5.0 1.5 tablespoons olive oil Polyglyceryl-10 Oleate 0.5 Polyglyceryl-10 Isostearate 0.5 Ethylhexyl palmitate (Nippon Fine Chemical) 1.0 Shea butter 0.1 Carnauba wax 0.2 Cetyl Esters 0.3 Stearyl ethylhexanoate 1.0 Cetearyl Alcohol 4.0 Neosolue-DiSM (Nippon Fine Chemical) 0.5 Plandool-H (Nippon Fine Chemical) 0.2 Part B Citric acid 0.05 Purified water (amount to make a total of 100) C part Dimethicone (3 million cs) 1.0 Dimethicone (100cs) 3.0 PPG-3 Myristyl 0.5 Isodecyl neopentanoate 1.0 Phenoxyethanol 0.4 ------------------------------------- (Preparation method) Parts A and B were each heated to approximately 80°C and dissolved. Part B was gradually added to Part A and mixed uniformly with a propeller (500 rpm). Part C was added at approximately 50°C while stirring and mixed uniformly.
[0125] Example 80 Rinse-off Treatment Component Amount (mass%) ------------------------------------ Part A Cosmetic composition of Example 12 1.0 Cetearyl Alcohol 4.0 Stearyl Alcohol 1.0 Polyglyceryl-10 Stearate 0.5 PEG-20 Glyceryl Isostearate 0.2 Polyglyceryl stearate 0.2 Pentylene glycol 1.0 1,3-butylene glycol 3.0 Pentaerythrityl tetraethylhexanoate (Nippon Fine Chemical) 1.0 Lauryl Betaine 0.3 Isostearyl Isostearate 1.0 Plandool-LG4 (Nippon Fine Chemical) 0.2 LUSPLAN DD-DA7 (Nippon Fine Chemical) 0.2 Tocopherol 0.01 Part B Etidronic acid 0.1 Inulin-SC (Nippon Fine Chemical) 2.0 Purified water (amount to make a total of 100) C part NanoRepair-EL (Nippon Fine Chemical) 5.0 ------------------------------------ (Preparation method) Parts A and B were dissolved uniformly at about 80°C. Part B was gradually added to part A while stirring, and mixed uniformly. After cooling to about 50°C, part C was added and mixed uniformly.
[0126] Example 81 Non-silicone hair treatment Component Amount (mass%) -------------------------------------- Part A Cosmetic composition of Example 4 20.0 Propanediol 3.0 Cetyl alcohol 3.2 Stearyl alcohol 1.8 Hydrogenated rapeseed oil alcohol 1.5 LUSPLAN DD-IS (Nippon Fine Chemical) 0.5 Shea butter 0.3 Sodium Cocoamphoacetate 1.0 Neopentyl glycol diethylhexanoate 0.8 Jojoba seed oil 0.5 Isododecane 1.0 Glyceryl stearate 0.4 Cocamidomethyl MEA 0.8 Polyglyceryl-10 Distearate 0.2 Rice bran wax 0.5 Erucalactone DES (Nippon Fine Chemical) 2.0 Glycerin 1.0 Part B Lactic acid 0.4 Purified water (amount to make a total of 100) C part Phenoxyethanol 0.4 Tremoist-SL (Nippon Fine Chemical) 1.0 -------------------------------------- (Preparation method) Parts A and B were dissolved uniformly at approximately 80°C. Part B was gradually added to Part A while stirring with a propeller (600 rpm) and mixed uniformly. After cooling to approximately 50°C, Part C was added and the mixture was homogenized (pH approximately 4, viscosity approximately 20,000 mPa·s).
[0127] Example 82 Hair Treatment Component Amount (mass%) ------------------------------------ Part A Cosmetic composition of Example 4 5.0 Linolenic acid 0.5 Lanolin Fatty Acids 0.5 Diethylhexyl succinate (Nippon Fine Chemical) 1.0 Stearyl Alcohol 4.0 Behenyl Alcohol 4.0 Dipropylene glycol 0.5 1,3-butylene glycol 1.0 Glycerin 4.0 Stearamidopropyl dimethylamine 1.0 Dipentaerythrityl hexa(hydroxystearate / stearic acid / rosin acid) 0.2 Polyglyceryl-6 Polyricinoleate 1.0 Sodium naphthalenesulfonate 0.5 Benzyl alcohol 0.4 Tristearin 0.5 Ceteareth-7 0.8 Ceteareth-25 0.3 Part B Lactic acid 0.12 Purified water (amount to make a total of 100) Phenoxyethanol 0.5 C part Polyquaternium-10 0.2 Polyquaternium-22 0.2 Polyquaternium-6 0.2 NanoRepair-CMC (Nippon Fine Chemical) 3.0 ------------------------------------ (Preparation method) Parts A and B were mixed uniformly at approximately 80°C. Part A was gradually added to part B while stirring with a propeller (500 rpm) and mixed uniformly. After cooling to approximately 50°C, part C was added and mixed uniformly.
[0128] Example 83 Hair Treatment Component Amount (mass%) ------------------------------------ Part A Cosmetic composition of Example 21 10.0 Cetearyl Alcohol 4.0 Hydroxystearic acid 0.5 LUSPLAN DA-R (Nippon Fine Chemical) 0.1 Caprylic / capric triglyceride (Nippon Fine Chemical) 0.1 Ethylhexyl palmitate (Nippon Fine Chemical) 0.1 Dextrin palmitate 0.1 Isostearoyl Hydrolyzed Collagen 0.2 PEG-45M 0.8 Camellia reticulata seed oil 0.1 Hydroxyethyl urea 0.5 Dicaprylyl Carbonate 2.0 Squalane 0.1 Sodium Cocoamphoacetate 1.0 Isoceteth-10 0.5 Polyglyceryl-2 Behenate 0.2% Sunflower Wax 0.8 Cocoyl Arginate Ethyl PCA 0.2 Phenoxyethanol 0.2 Tocopherol 0.05 Glycerin 1.3 Dipropylene Glycol 2.2 Part B Sorbitol 3.5 1,3-butylene glycol 1.0 Hydroxycellulose 0.07 Cellulose 0.02 Phenoxyethanol 0.2 Citric acid (appropriate amount) EDTA-2Na 0.01 Purified water (amount to make a total of 100) C part Polyquaternium-61 0.3 Tremoist-SL (Nippon Fine Chemical) 1.0 Locust Bean Hydroxypropyltrimonium Chloride 0.1 ------------------------------------ (Preparation method) Part A and Part B were mixed uniformly at about 80°C. Part A was gradually added to Part B while stirring, and mixed uniformly. After cooling to about 50°C, Part C was added and mixed uniformly.
[0129] Example 84 Hair Mask Component Amount (mass%) ------------------------------------ Part A Cosmetic composition of Example 4 10.0 Hydrogenated rapeseed oil alcohol 3.0 Polyglyceryl-10 Stearate 0.5 PPG-3 Caprylyl Ether 0.2 1,3-butylene glycol 4.0 Glycerin 4.0 Isopentyldiol 1.0 Plandool-LG2 (Nippon Fine Chemical) 0.2 Plandool-LG4 (Nippon Fine Chemical) 0.2 Sodium Dilauramidoglutamide Lysine 0.5 Tocopherol 0.01 Part B Lactic acid 0.05 Purified water (amount to make a total of 100) C part Phenoxyethanol 0.6 Hydrolyzed Keratin 0.5 Hydrolyzed silk 0.1 Hydrolyzed Collagen 0.1 Arginine 0.01 Serine 0.01 Cysteine 0.01 Glutamic acid 0.01 Aspartic acid 0.01 Amodimethicone 2.0 Dimethicone (1 million cs) 1.0 Dimethicone (100cs) 1.0 Hydroxyethylcellulose (2%) 20.0 ------------------------------------ (Preparation method) Part A and Part B were mixed uniformly at approximately 70°C. Part A was gradually added to Part B while stirring with a propeller (500 rpm) and mixed uniformly. After cooling to approximately 50°C, Part C was added and mixed uniformly.
[0130] Example 85 Leave-on Hair Treatment Component Amount (mass%) ------------------------------------ Part A Cosmetic composition of Example 4 2.5 Cetearyl Alcohol 2.0 Stearyl alcohol 0.5 Glycerin 0.5 1,3-butylene glycol 2.0 Polyglyceryl-10 Stearate 0.5 LUSPLAN SR-DM4 (Nippon Fine Chemical) 0.1 Glyceryl Caprylate 0.4 Part B Phenoxyethanol 0.3 Purified water (amount to make a total of 100) ------------------------------------ (Preparation method) Parts A and B were each dissolved uniformly at approximately 70°C. Part B was gradually added to Part A while stirring with a propeller (400 rpm), and the mixture was mixed uniformly (pH approximately 5.6, viscosity approximately 7,000 mPa·s).
[0131] Example 86 Leave-on hair treatment Component Amount (mass%) ------------------------------------ Part A Cosmetic composition of Example 4 2.5 Phytocompo-C (Nippon Fine Chemical) 0.5 Cetyl alcohol 2.0 Behenyl alcohol 0.5 Caprylic / capric triglyceride (Nippon Fine Chemical) 0.2 Plandool-G (Nippon Fine Chemical) 0.1 LUSPLAN DD-DA5 (Nippon Fine Chemical) 0.1 Tocopherol 0.01 Part B Etidronic acid 1.0 Phenoxyethanol 0.4 Lactic acid appropriate amount Purified water (amount to make a total of 100) C part Dimethiconol 0.5 Amodimethicone 0.5 Carboxymethylalanyl disulfide keratin 0.1 Hydrolyzed Collagen 0.01 ------------------------------------ (Preparation method) Parts A and B were each dissolved uniformly at approximately 70°C. Part A was gradually added to part B while stirring with a propeller (800 rpm) and mixed uniformly. After cooling to approximately 50°C, part C was added, homogenized, and the pH was adjusted to 4.5 with lactic acid.
[0132] Example 87 Leave-on hair treatment Component Amount (mass%) ------------------------------------ Part A Cosmetic composition of Example 7 10.0 Stearyl Alcohol 6.0 Behenyl Alcohol 2.0 Polyglyceryl-10 Diisostearate 0.2 Polysorbate 20 0.2 Seteth -20 0.2 Plandool-GR (Nippon Fine Chemical) 0.1 LUSPLAN SR-DC5 (Nippon Fine Chemical) 0.1 Hydrogenated polyisobutene 0.5 Shea butter 0.2 Betaine 0.5 Isopentyldiol 1.5 Tocopherol 0.01 Part B Lactic acid 0.02 Sodium benzoate 0.1 Purified water (amount to make a total of 100) C part Phenoxyethanol 0.4 Polyquaternium-10 0.1 Polyquaternium-7 0.1 Chitosan 0.1 ------------------------------------ (Preparation method) Parts A and B were each dissolved uniformly at approximately 70°C. Part B was gradually added to part A while stirring, and mixed uniformly. After cooling to approximately 50°C, part C was added and mixed uniformly.
[0133] Example 88 Leave-on hair treatment Component Amount (mass%) ---------------------------------- Part A Cetrimonium chloride 0.5 Cetearyl Alcohol 4.0 Behenyl Alcohol 2.0 1,2-Hexanediol 1.0 Polyglyceryl-6 Stearate 0.2 PEG-60 Hydrogenated Castor Oil 0.2 Neosolue-Aqulio (Nippon Fine Chemical) 1.0 Erucalactone DES (Nippon Fine Chemical) 1.0 LUSPLAN DD-DHR (Nippon Fine Chemicals) 0.1 Caprylyl glucoside (50%) 0.8 Neosolue-AquaS (Nippon Fine Chemical) 0.5 Ethylhexylglycerin 0.5 Part B Cosmetic composition of Example 4 1.0 Panthenol 0.1 Hydrolyzed Keratin 0.2 Hydrolyzed silk 0.1 Hydrolyzed conchiolin 0.1 Polyquaternium-6 0.6 Polyquaternium-7 0.4 Polyquaternium-39 0.5 C part Glycerin 4.0 Purified water (amount to make a total of 100) ---------------------------------- (Preparation method) Parts A and C were heated to approximately 80°C and dissolved. Part A was added to Part C while stirring with a propeller (600 rpm) and mixed uniformly. After cooling to approximately 40°C, Part B was added and mixed uniformly (pH approximately 5, viscosity approximately 15,000 mPa·s).
[0134] Example 89 Leave-in hair treatment Component Amount (mass%) ------------------------------------- Part A Cosmetic composition of Example 4 20.0 Cetyl alcohol 4.0 Stearyl Alcohol 3.0 PEG-20 Glyceryl Oleate 0.5 Polyglyceryl-2 Oleate 0.5 Glyceryl stearate 0.5 Dipropylene Glycol 2.0 Sorbitol 3.0 Diethyl sebacate (Nippon Fine Chemical) 0.1 Lanolin (Nippon Fine Chemical) 0.1 Plandool-SUN (Nippon Fine Chemical) 0.1 PPG-3 Caprylyl Ether 0.5 Methylheptyl myristate 0.1 Cetyl ethylhexanoate 0.1 Isononyl isononanoate 0.1 Tridecyl neopentanoate 0.1 Myristyl isooctanoate 0.1 Neopentyl glycol diethylhexanoate 0.1 Isobutyl isostearate 0.1 Trimethylolpropane triisostearate 0.1 Broccoli seed oil 0.01 Sphinganine 0.01 Glycerin 3.0 Part B Methylparaben 0.1 Purified water (amount to make a total of 100) Phenoxyethanol 0.5 C part Polyquaternium-6 0.6 Polyquaternium-7 0.4 Polyquaternium-39 0.5 D part Carrageenan 0.1 Hydroxypropyl chitosan 0.05 Hydroxypropyl methylcellulose 0.1 Tuberose polysaccharide 0.1 Cationic guar gum 0.05 Ketoglutaric acid 1.3 Maleic acid 0.5 Ascorbic acid 0.5 Purified water 20.0 ------------------------------------- (Preparation method) Parts A and B were heated to approximately 80°C and dissolved. Part D was dispersed to form a viscous liquid. Part A was added to part B while stirring and mixed uniformly. After cooling to approximately 40°C, parts C and D were added and mixed uniformly.
[0135] Example 90 Leave-on Hair Treatment Component Amount (mass%) ---------------------------------- Part A Steartrimonium chloride 0.2 Ethylhexyl palmitate (Nippon Fine Chemical) 0.2 Cetyl alcohol 2.0 Stearyl Alcohol 1.0 1,2-Hexanediol 1.0 Polyglyceryl-10 Laurate 0.2 Laureth-21 0.1 Laureth-2 0.1 Tocopherol 0.01 Part B Honey 0.5 Methylparaben 0.01 Purified water (amount to make a total of 100) C part Dimethicone (1 million cs) 0.5 Dimethiconol 0.1 Dimethicone (100cs) 0.9 D part Cosmetic composition of Example 18 1.0 NanoRepair-CMC5 (Nippon Fine Chemical) 2.0 ---------------------------------- (Preparation method) Parts A and B were heated to approximately 80°C and dissolved. Part B was added to Part A while stirring, and mixed uniformly. After cooling to approximately 40°C, parts C and D were added and mixed uniformly.
[0136] Example 91 Scalp care cleansing cream (all-in-one shampoo) Component Amount (mass%) ------------------------------------ Part A Cosmetic composition of Example 4 10.0 Cetearyl Alcohol 4.0 Stearyl Alcohol 2.0 Polyglyceryl-10 Stearate 0.5 PEG-20 Glyceryl Triisostearate 1.0 Glyceryl stearate 0.5 Plandool-MAS (Nippon Fine Chemicals) 0.2 Plandool-G (Nippon Fine Chemical) 0.2 Glycerin 3.0 1,3-butylene glycol 3.0 Sorbitol 2.0 Pentylene Glycol 2.0 Kaolin 0.05 Glyceryl Caprylate 0.5 Tocopherol 0.01 Part B Guar Hydroxypropyltrimonium Chloride 0.6 Lactic acid 0.05 EDTA-2Na 0.1 Purified water (amount to make a total of 100) C part Menthol 0.1 Soybean Seed Extract 0.01 Rosemary Leaf Extract 0.01 Lotus flower extract 0.01 ------------------------------------ (Preparation method) Parts A and B were mixed uniformly at approximately 70°C. Part A was gradually added to part B while stirring with a propeller (600 rpm) and mixed uniformly. After cooling to approximately 50°C, part C was added and mixed uniformly.
[0137] Example 92 Hair Color Treatment Component Amount (mass%) ------------------------------------ Part A Cosmetic composition of Example 4 5.0 Plandool-MAS (Nippon Fine Chemicals) 0.1 Cocamide DEA 1.0 Inulin stearate 0.5 Cetyl alcohol 2.0 Stearyl Alcohol 2.0 Lanolin alcohol 0.2 Montan wax 0.1 Polyethylene wax 0.1 Beeswax 0.1 Dextrin palmitate 0.3 Ceresin 0.1 PG Dicaprate 1.0 Ethylhexyl ethylhexanoate 1.0 Dicaprylyl Carbonate 1.5 Glycerin 4.0 Polyglyceryl-10 Oleate 0.5 Isostearyl alcohol 0.3 Rice bran oil 0.5 Glyceryl stearate 0.5 Erucalactone DES (Nippon Fine Chemical) 1.5 Plandool-LG2 (Nippon Fine Chemical) 0.5 Hydrogenated polydecene 0.1 Sodium Dilauramidoglutamide Lysine 0.1 Tocopherol 0.05 Phenoxyethanol 0.3 Part B Purified water 10.0 1,3-butylene glycol 2.0 Acylated Hydrolyzed Collagen 0.1 Panthenol 0.1 Hydroxyethyl cellulose 0.1 Polyquaternium-64 0.1 Polyquaternium-51 0.01 Polyquaternium-49 0.2 Phenoxyethanol 0.4 PCA-Na 0.1 C part Purified water (amount to make a total of 100) Basic Blue 99 0.1 Basic Tea 16 0.13 HC blue 2 0.05 HC yellow 2 0.03 HC red 3 0.1 Hydroxyethyl urea 0.5 Ammonium bicarbonate 1.0 ------------------------------------ (Preparation method) Parts A and C were each heated to approximately 80°C and dissolved. Part C was gradually added to part A while stirring, and mixed uniformly. After rapidly cooling to approximately 40°C, part B was added and mixed uniformly.
[0138] Example 93 Treatment Hair Mist Component Amount (mass%) -------------------------------------- Cosmetic composition of Example 4 30.0 Glycerin 5.0 BG 3.0 NanoRepair-CMC (Nippon Fine Chemical) 5.0 Tremoist-SL (Nippon Fine Chemical) 1.0 Neosolue-Aqulio (Nippon Fine Chemical) 1.0 Phenylalanine 0.05 Cysteine 0.2 Glycine 0.3 Hydroxyethyl cellulose 0.05 Phenoxyethanol 0.4 Ethanol 5.0 Purified water (amount to make a total of 100) -------------------------------------- (Preparation method) The components were mixed to form a homogeneous liquid.
[0139] Example 94 Styling Milk Component Amount (mass%) --------------------------------- Part A Phytocompo-C (Nippon Fine Chemical) 1.0 Cosmetic composition of Example 4 10.0 Glycerin 5.0 1,3-butylene glycol 8.0 Part B Erucalactone MCT (Nippon Fine Chemical) 1.0 Plandool-H (Nippon Fine Chemical) 1.0 Cetearyl Alcohol 1.0 Isopropyl palmitate (Nippon Fine Chemical) 2.0 LUSPLAN SR-DM4 1.0 Polyglyceryl-10 Stearate 0.3 Glyceryl Caprylate 0.4 C part Purified water (amount to make a total of 100) D part Neosolue-Aqulio (Nippon Fine Chemical) 0.5 Carbomer (2% aqueous solution) 5.0 Xanthan gum 0.5 Phenoxyethanol 0.4 Purified water 30.0 --------------------------------- (Preparation method) Part A was dispersed uniformly. Parts B and C were each heated to approximately 70°C and dissolved. Part B was gradually added while stirring Part A with a homodisper, and then Part C was gradually added and emulsified. After cooling to approximately 45°C while stirring, Part D was added and the mixture was homogenized.
[0140] Example 95 Hair wax Component Amount (mass%) ---------------------------------- Part A Cosmetic composition of Example 4 5.0 Microcrystalline Wax 10.0 Ecolano LH (Nippon Fine Chemical) 4.0 Candelilla Wax 2.0 Carnauba Wax 2.0 Stearic Acid 4.0 Cetearyl Alcohol 4.0 Polyglyceryl-10 Stearate 2.0 Ethylhexyl palmitate (Nippon Fine Chemical) 2.0 Glyceryl stearate 0.6 Tocopherol 0.05 Part B Purified water (amount to make a total of 100) Phenoxyethanol 0.4 Methylparaben 0.1 C part Inulin-SC (Nippon Fine Chemical) 1.0 Succinic acid 0.3 Purified water 20.0 ---------------------------------- (Preparation method) Parts A and B were heated to approximately 80°C, and then part B was added to part A while stirring to emulsify it. After cooling to approximately 50°C, part C was added and mixed uniformly.
[0141] Example 96 Styling Milk Component Amount (mass%) --------------------------------- Part A Cosmetic composition of Example 7 1.0 LUSPLAN SR-DC5 (Nippon Fine Chemical) 1.0 Stearyl alcohol 1.7 Isopropyl myristate (Nippon Fine Chemical) 1.2 Stearamidopropyl dimethylamine 1.0 Plandool-H (Nippon Fine Chemical) 0.2 Plandool-ISS (Nippon Fine Chemical) 0.2 RepairLipid-DSL (Nippon Fine Chemical) 0.5 Seteth -20 0.3 Polyglyceryl-10 Laurate 0.5 Part B Phenoxyethanol 0.4 1,2-Hexanediol 1.0 Lactic acid appropriate amount Purified water (amount to make a total of 100) C part Hydroxyethyl cellulose 0.4 BG 2.0 Purified water 30.0 --------------------------------- (Preparation method) Parts A and B were mixed at approximately 80°C. Part A was added to Part B while stirring with a propeller, and emulsified. After cooling to approximately 60°C, Part C was added and mixed uniformly, and the pH was adjusted to 4.5 with lactic acid.
[0142] Example 97 Styling Gel Component Amount (mass%) ------------------------------------- Part A Cosmetic composition of Example 4 10.0 Phytopresome MEL (Nippon Fine Chemical) 1.5 Neosolue-Aqulio (Nippon Fine Chemical) 2.0 Neosolue-AquaS (Nippon Fine Chemical) 0.5 Glycerin 3.0 Propylene Glycol 2.0 1,3-butylene glycol 5.0 Part B Lactic acid 0.3 Phenoxyethanol 0.5 Hydroxyethyl cellulose 0.4 (Acrylates / C10-30 alkyl acrylate) crosspolymer 0.5 (Acryloyldimethyltaurate ammonium / VP) copolymer 0.05 Carbomer 0.2 Tremoist-SL (Nippon Fine Chemical) 1.0 Purified water (amount to make a total of 100) ------------------------------------- (Preparation method) Part A and Part B were mixed at approximately 60° C. Part A was added to Part B while stirring with a propeller, and the mixture was mixed uniformly. The pH was then adjusted to 6.0 with sodium hydroxide.
[0143] Example 98 Mousse Component Amount (mass%) --------------------------------- Cosmetic composition of Example 4 0.5 Neosolue-Aqulio (Nippon Fine Chemical) 0.2 Ethanol 5.0 Polyethylene glycol oleyl ether (20) 1.0 Acrylic Resin Alkanolamine Liquid 3.0 Stearic acid diethylaminopropylamide 0.5 Pyrrolidone carboxylic acid 0.2 Malic acid 0.1 Preservatives, fragrances 1.0 Purified water (amount to make a total of 100) --------------------------------- (Preparation method) All ingredients were mixed, and the resulting base was mixed with LPG in a ratio of base:LPG=92:8 to form a spray-type mousse (pH 5.1).
[0144] Example 99 Hair Cream Component Amount (mass%) --------------------------------- Part A Cosmetic composition of Example 18 10.0 Neosolue-Aqulio (Nippon Fine Chemical) 0.5 Stearic Acid 2.0 Lanolin 3.0 Paraffin Wax 2.0 Liquid paraffin 38.0 Glyceryl monostearate (SE) 1.0 Sorbitan Monostearate 1.0 Polyoxyethylene Cetyl Ether 1.5 Preservatives (appropriate amount) Part B 1,3-butylene glycol 3.0 Succinic acid 0.5 Fragrance (appropriate amount) Purified water (amount to make a total of 100) --------------------------------- (Preparation method) Part A was mixed at 80°C. Part B, excluding the fragrance, was mixed and heated to 80°C, and then mixed with Part A to make a homogeneous mixture. After cooling to 50°C, the fragrance was added and the pH was adjusted to 5.5 with triethanolamine.
[0145] Example 100 Conditioner Bar Component Amount (mass%) ------------------------------------ Cosmetic composition of Example 4 5.0 Behentrimonium chloride 20.0 Cetyl alcohol Amount that makes a total of 100 Stearyl alcohol 20.0 Glycerin 5.0 1,3-butylene glycol 3.0 Caprylic / Capric Triglyceride 5.0 Plandool-MAS (Nippon Fine Chemicals) 0.2 LUSPLAN SR-DM4 (Nippon Fine Chemical) 0.2 Plandool-LG3 (Nippon Fine Chemical) 0.2 ------------------------------------ (Preparation method) All ingredients were uniformly dissolved at approximately 80°C, then poured into a mold and allowed to cool and harden.
[0146] Example 101 Conditioner Bar Component Amount (mass%) ------------------------------------ Cosmetic composition of Example 4 50.0 Cetyl alcohol Amount that makes a total of 100 Hydrogenated rapeseed oil alcohol 20.0 Pentylene Glycol 2.0 Glycerin 5.0 Propylene Glycol 3.0 Caprylic / Capric Triglyceride 5.0 Plandool-H (Nippon Fine Chemical) 0.2 Plandool-G (Nippon Fine Chemical) 0.2 LUSPLAN DD-DA5 (Nippon Fine Chemical) 0.2 ------------------------------------ (Preparation method) All ingredients were uniformly dissolved at approximately 80°C, then poured into a mold and allowed to cool and harden.
[0147] Example 102 Hair Manicure Component Amount (mass%) -------------------------------------- Part A Cosmetic composition of Example 4 10.0 Ethanol 10.0 Carnauba wax 0.01 Seteth-10 1.0 Erucalactone DES (Nippon Fine Chemical) 2.5 PPG-3 Caprylyl Ether 1.0 Neosolue-MP (Nippon Fine Chemical) 1.0 Capric Acid PPG-3 0.5 PG Dicaprate 0.5 Dicaprylyl Carbonate 0.5 Part B Purple 401 0.2 Black 401 0.1 Orange 205 0.1 Red 102 0.1 Benzyl alcohol 8.0 Ethanol 10.0 C part Purified water (amount to make a total of 100) (Acryloyldimethyltaurate ammonium / VP) copolymer 3.0 Glycolic Acid 2.0 Succinic acid 2.0 Neosolue-Aqulio (Nippon Fine Chemical) 2.0 Hydroxypropyl xanthan gum 0.2 -------------------------------------- (Preparation method) Parts A and C were mixed together and homogenized. Part B was added to part C while stirring, and after homogenization, part A was added at about 60°C and homogenized.
[0148] Example 103 Hair bleach (two-component type) (1st agent) Component Amount (mass%) ----------------------------------- Cosmetic composition of Example 4 1.0 Polyoxyethylene oleyl ether 52.0 Ammonia water (25% aqueous solution) 25.5 Cetrimonium chloride (30% aqueous solution) 10.0 Ethanol 10.0 Purified water (amount to make a total of 100) ----------------------------------- (Preparation method) The components were stirred and mixed uniformly. (2nd drug) Component Amount (mass%) ----------------------------------- Hydrogen peroxide 17.0 Cetrimonium chloride (30% aqueous solution) 10.0 Cetyl alcohol 3.0 Seteth-2 1.0 Seteth-20 1.0 Sodium pyrophosphate 0.1 Diethylenetriaminepentaacetic acid 0.1 Citric acid (50% aqueous solution) appropriate amount Purified water (amount to make a total of 100) ----------------------------------- (Preparation method) The components were mixed uniformly, and the pH was adjusted to 3.5 to 4.0 with citric acid. (composition ratio) 1st agent:2nd agent = 1:7
[0149] Example 104 Oxidative Hair Dye (1st agent) Component Amount (mass%) --------------------------------- Cosmetic composition of Example 4 5.0 Cetrimonium chloride (25% aqueous solution) 24.0 Cetyl alcohol 9.0 Octyldodecanol 9.0 Monoethanolamine 3.8 Ammonia water 2.0 Sodium Myristyl Sulfate 1.5 Oleth-20 1.4 Toluene-2,5-diamine hydrochloride 1.0 Resorcinol 1.0 Meta-aminophenol 0.5 Paraaminophenol 0.2 Ortho-aminophenol 0.1 Ascorbic acid 0.2 Fragrance 0.1 Purified water (amount to make a total of 100) --------------------------------- (Preparation method) The ingredients were mixed uniformly. (2nd drug) Component Amount (mass%) --------------------------------- Hydrogen peroxide 17.0 Cetrimonium chloride (25% aqueous solution) 10.0 Cetyl alcohol 3.0 Oleth-2 1.0 Oleth-20 1.0 Sodium pyrophosphate 0.1 Diethylenetriaminepentaacetic acid 0.1 Citric acid (50% aqueous solution) appropriate amount Purified water (amount to make a total of 100) --------------------------------- (Preparation method) The components were mixed uniformly, and the pH was adjusted to 3.5 to 4.0 with citric acid. (composition ratio) 1st agent:2nd agent = 1:1
[0150] Example 105 Perm (1 liquid) Component Amount (mass%) ------------------------------------ 1 Cosmetic composition of Example 5 5.0 2 Polyquaternium-22 2.0 3 Arginine 0.3 4 Monoethanolamine 1.0 5 Ammonia water (28% aqueous solution) 1.0 6 PEG-50 Hydrogenated Castor Oil 0.2 7 Ammonium bicarbonate 2.0 8 Disodium Phosphate 0.5 9 Ammonium thioglycolate (50% aqueous solution) 11.5 10 Cysteine 1.5 11 EDTA-4Na 0.15 12 Sodium hydroxide 0.25 13 Polyquaternium-10 0.1 14 Purified water (total: 100) ------------------------------------ (Preparation method) No. 12 was dissolved in most of No. 14, then No. 13 was added little by little and dissolved, and Nos. 9 to 11 were then added and dissolved (Part A). The remaining No. 14 was placed in a separate container, Nos. 7 and 8 were added, and the mixture was heated and dissolved (Part B). Nos. 1 to 6 were added to a separate container, heated to approximately 50°C, and dissolved (Part C). Part B was added to Part A and mixed uniformly, and then Part C was gradually added and mixed uniformly. (2 liquid) Component Amount (mass%) ------------------------------------ 1 Cosmetic composition of Example 4 0.5 2 Sodium benzoate 0.2 3 Disodium edetate 0.1 4 Diammonium phosphate 0.1 5. Emmacol TS-703 (Yamaei Chemical) 2.0 6 Stearyltrimonium chloride (50% aqueous solution) 2.0 7 Sodium bromate 10.0 8 Emmacol NZ (Yamaei Chemical) 4.0 9 Oleth-20 3.0 10 Purified water (total: 100) ------------------------------------ (Preparation method) Most of No. 10 was taken and heated to approximately 60°C. Nos. 1 to 3 were added and dissolved, followed by No. 4. Nos. 5 and 6 were then added, heated and dissolved, and gradually cooled to around 40°C. Nos. 7 to 9 were added and homogenized. The remaining No. 10 was added, mixed homogenously, and cooled.
[0151] Example 106 Scalp lotion Component Amount (mass%) ------------------------------------- Part A Phytopresome (Nippon Fine Chemical) 0.2 Ellagic acid 0.05 1,2-Hexanediol 5.0 1,3-butylene glycol 4.0 Part B Purified water 40.0 C part Cosmetic composition of Example 4 5.0 Neosolue-Aqulio (Nippon Fine Chemical) 1.0 Tocopheryl acetate 0.05 Menthol 0.1 Betaine 0.2 Swertia japonica extract 0.1 Tamasakizukuraffe Root Extract 0.003 Hinokitiol 0.1 PCA-Na 0.1 Carbomer 0.01 Potassium hydroxide 0.01 Pentetic acid pentasodium 0.05 Phenoxyethanol 0.4 Purified water (amount to make a total of 100) ------------------------------------- (Preparation method) Part A and Part B were each heated to 80°C. Part A was added to Part B while stirring with a homomixer (7000 rpm). After cooling, Part C, which had been mixed in advance, was added to make a homogeneous liquid.
[0152] Example 107 Sunscreen cosmetic Component Amount (mass%) ------------------------------------- Part A Phytocompo-C (Nippon Fine Chemical) 0.5 Glycerin 15.0 Propanediol 2.0 Pentylene Glycol 2.0 Part B Octocrylene 4.0 Octyl Salicylate 4.0 Diethylaminohydroxybenzoylhexyl benzoate 4.5 t-Butyl methoxydibenzoylmethane 2.0 Dimethoxybenzylidene oxoimidazoline octyl propionate 1.0 Neosolue-DE (Nippon Fine Chemical) 1.0 Neosolue-MP (Nippon Fine Chemical) 1.0 Diisopropyl sebacate (Nippon Fine Chemical) 1.0 Isodecyl neopentanoate 0.5 Dimethicone (50cs) 5.0 Behenyl Alcohol 2.0 Cetearyl Alcohol 2.0 Plandool-MAS (Nippon Fine Chemical) 1.0 Tocopherol 0.05 C part Carbomer KOH neutralized (2% aqueous solution) 5.0 Tremoist-SL (Nippon Fine Chemical) 10.0 D part Neosolue-Aqulio (Nippon Fine Chemical) 1.0 Phenoxyethanol 0.4 Purified water (amount to make a total of 100) Part E Cosmetic composition of Example 4 0.5 Titanium dioxide (silica treated) 5.0 EDTA-2Na 0.1 Chamomilla extract 0.1 Purified water 10.0 ------------------------------------- (Preparation method) Parts A, B, and D were each heated to approximately 70°C and dissolved or dispersed uniformly. Part C was added and stirred to form a viscous liquid. Part B was added to Part A while stirring with a homodisper, and then Part D was added and emulsified. After cooling to approximately 50°C, parts C and E were added and mixed uniformly (pH approximately 6.1, viscosity approximately 3,500 mPa s).
[0153] Example 108 Sunscreen Cosmetic Component Amount (mass%) -------------------------------------- Part A Glycerin 10.0 Dipropylene glycol 10.0 Phytocompo-PP (Nippon Fine Chemical) 5.0 Pentylene Glycol 2.0 Cosmetic composition of Example 5 5.0 Part B Ethylhexyl methoxycinnamate 8.0 Diethylaminohydroxybenzoylhexyl benzoate 1.5 Behenyl Alcohol 4.0 Plandool-H (Nippon Fine Chemical) 1.0 Plandool-LG1 (Nippon Fine Chemical) 0.5 Tocopherol 0.05 C part Xanthan gum 0.1 Tremoist-SL (Nippon Fine Chemical) 10.0 (Acrylates / C10-30 alkyl acrylate) crosspolymer (2%) 2.0 D part Neosolue-AquaS (Nippon Fine Chemical) 1.0 Methylparaben 0.15 Purified water (amount to make a total of 100) Part E Titanium dioxide (silica treated) 15.0 -------------------------------------- (Preparation method) Parts A, B, and D were each heated to approximately 70°C and uniformly dissolved or dispersed. Part C was added and stirred to form a viscous liquid. Part B was added to Part A while stirring with a homodisper, and then Part D was added and emulsified. After cooling to approximately 50°C, parts C and E were added and mixed uniformly.
[0154] Example 109 Sunscreen Cosmetic Component Amount (mass%) ----------------------------------- Part A FINEX-33W (Sakai Chemical Industry) 5.0 STR-100W (Sakai Chemical Industry) 5.0 Purified water (amount to make a total of 100) 1,3-butylene glycol 7.0 Niacinamide 5.0 Disodium edetate 0.05 Triethanolamine 1.0 Part B Oxybenzone 3.0 Octyl para-methoxycinnamate 5.0 t-Butyl methoxybenzoylmethane 3.0 Diethylhexyl sebacate (Nippon Fine Chemical) 8.0 Plandool-H (Nippon Fine Chemical) 2.0 Plandool-SUN (Nippon Fine Chemical) 2.0 Plandool-MAS (Nippon Fine Chemicals) 0.1 Plandool-LG1 (Nippon Fine Chemical) 0.1 Plandool-LG2 (Nippon Fine Chemical) 0.1 Plandool-LG3 (Nippon Fine Chemical) 0.1 Plandool-LG4 (Nippon Fine Chemical) 0.1 LUSPLAN PI-DA (Nippon Fine Chemical) 3.0 Ethylhexyl palmitate (Nippon Fine Chemical) 3.0 Diisopropyl sebacate (Nippon Fine Chemical) 5.0 Dimethicone (2cs) 5.0 Sucrose stearate 1.5 Polyglyceryl Stearate-10 2.0 Stearyl Alcohol 3.0 Batyl alcohol 1.0 Stearic Acid 3.0 Glyceryl Monostearate 3.0 Polyethyl acrylate 1.0 Phenoxyethanol 0.5 C part Cosmetic composition of Example 4 20.0 ----------------------------------- (Preparation method) Part A was heated to approximately 80°C and thoroughly dispersed. Part B, which had been heated to approximately 80°C, was added to this and emulsified using a homogenizer. After cooling to approximately 50°C, part C was added and the mixture was homogenized (pH approximately 6.5, viscosity approximately 500 mPa·s).
[0155] Example 110 Lipstick Component Amount (mass%) --------------------------------- Cosmetic composition of Example 4 0.5 LUSPLAN SR-DM4 (Nippon Fine Chemical) 7.0 Hydrogenated polyisobutene 5.0 Triethylhexanoin 10.0 Caprylic / capric triglyceride (total amount: 100) Dialkyl carbonate (C14, 15) 3.0 Dextrin palmitate 0.9 Sodium stearoyl lactylate 0.9 Cetyl ethylhexanoate 24.0 Dimethicone (50cs) 5.0 Plandool-MAS (Nippon Fine Chemical) 2.0 Ceresin 8.5 Candelilla Wax 4.0 Sorbitan sesquioleate 0.15 Hydrogen Dimethicone 2.0 Ethanol 0.1 Tocopherol 0.5 Nylon-12 2.0 (Ethylene / propylene) copolymer 0.5 Ba sulfate 1.0 Iron Oxide 2.0 Mica 2.0 Titanium dioxide 1.0 --------------------------------- (Preparation method) All ingredients were mixed uniformly under heating and stirring, then filled into a mold and rapidly cooled (hardness approximately 0.2N).
[0156] Example 111 Lip balm Component Amount (mass%) --------------------------------- Cosmetic composition of Example 4 5.0 Plandool-H (Nippon Fine Chemical) 10.0 Plandool-LG3 (Nippon Fine Chemical) 5.0 Polyglyceryl-2 Diisostearate 15.0 Squalane (amount totaling 100) 12-Hydroxystearic acid 5.0 Silica Silylate 3.0 Menthol 0.5 Fragrance (appropriate amount) Antioxidant (appropriate amount) --------------------------------- (Preparation method) All ingredients were heated to about 90°C, mixed uniformly, and then cooled (hardness about 0.1N).
[0157] Example 112 Liquid Foundation Component Amount (mass%) --------------------------------------- Part A Glyceryl stearate (SE) 1.0 PG Stearate (SE) 1.0 Plandool-LG2 (Nippon Fine Chemical) 0.5 Ethylhexyl palmitate 6.0 Diethylhexyl succinate (Nippon Fine Chemical) 2.0 Tocopherol 0.1 Propylparaben 0.1 Titanium oxide and iron oxide mixture (Toshiko Pigment Co., Ltd. FDP-W-007) 18.0 Mica 7.0 Octyl para-methoxycinnamate 5.0 Trimethylsiloxysilicate 3.0 Cyclomethicone 7.0 Phenymethicone 5.0 Part B (Acryloyldimethyltaurate ammonium / VP) copolymer 0.2 Carboxymethylcellulose 0.05 (Acryloyldimethyltaurine / Beheneth-25 methacrylate) copolymer 0.15 Cosmetic composition of Example 4 5.0 Purified water 20.0 C part Neosolue-Aqua (Nippon Fine Chemical) 1.0 Xanthan gum 0.2 Etidronic acid 0.05 Glutamic Acid Diacetate Tetrasodium 1.2 Maltose 1.0 1,3-butylene glycol 5.0 Pentylene Glycol 3.0 Methylparaben 0.05 Purified water (amount to make a total of 100) --------------------------------------- (Preparation method) Parts A and C were heated to approximately 70°C and dissolved uniformly. Part B was added and stirred to form a viscous liquid. Part C was added to Part A and emulsified using a homomixer. After cooling to approximately 50°C, Part B was added and stirred to make a homogenous mixture.
[0158] Example 113: Solid Powder Foundation Component Amount (mass%) --------------------------------- Part A Cosmetic composition of Example 7 0.5 Plandool-H (Nippon Fine Chemical) 2.0 Plandool-MAS (Nippon Fine Chemicals) 0.1 Plandool-LG1 (Nippon Fine Chemical) 0.1 Plandool-LG2 (Nippon Fine Chemical) 0.1 Plandool-LG4 (Nippon Fine Chemical) 0.1 LUSPLAN PI-DA (Nippon Fine Chemical) 3.0 Cetyl ethylhexanoate 3.0 Squalane 1.6 Part B Lecithin-treated sericite 20.0 Boron nitride 10.0 Mica 3.0 Silica 2.0 Dimethicone (2cs) 3.0 Nylon-12 3.0 Talc 10.0 Titanium dioxide 10.0 Iron oxide: Amount that adds up to 100 --------------------------------- (Preparation method) Part A was mixed under heating. Part B was placed in a separate container and mixed and dispersed. Part A was added to part B, and after mixing uniformly, it was molded.
[0159] Example 114 Foundation Component Amount (mass%) ------------------------------------ Part A Isododecane 10.0 Caprylic / capric triglyceride (Nippon Fine Chemical) 4.0 Ethylhexyl methoxycinnamate 3.0 Plandool-SUN (Nippon Fine Chemical) 1.0 Plandool-LG2 (Nippon Fine Chemical) 1.0 Plandool-LG3 (Nippon Fine Chemical) 1.0 Vaseline 1.0 Isotridecyl isononanoate 2.0 Ascorbyl tetrahexyldecanoate 0.1 Dextrin palmitate 0.3 Sorbitan Isostearate 1.5 Tribehenin 0.5 (Butyl acrylate / glycol dimethacrylate) crosspolymer, silica, (Methyl methacrylate / glycol dimethacrylate) crosspolymer mixture 2.0 Boron nitride 1.0 Polysorbate 20 2.0 PEG-60 Hydrogenated Castor Oil 1.0 Disteardimonium Hectorite (20%) 2.5 Polypropylsilsesquioxane, cyclopentasiloxane mixture 1.0 Mica 15.0 Talc 4.0 Zinc oxide 5.0 Titanium dioxide 10.0 Iron oxide 1.5 Part B Water - Amount that totals 100 Dipropylene Glycol 4.0 Maltitol (75% aqueous solution) 1.0 Neosolue-AquaS (Nippon Fine Chemical) 0.4 Sodium chloride 1.0 1,3-butylene glycol 1.0 Tremoist-SL (Nippon Fine Chemical) 1.0 Inulin-SC (Nippon Fine Chemical) 1.0 Ethanol 0.5 Phenoxyethanol 0.3 C part Cosmetic composition of Example 4 2.5 ------------------------------------ (Preparation method) Part A was heated to approximately 70°C and stirred thoroughly to disperse uniformly. Part B was heated to approximately 70°C and homogenized. Part B was added to Part A and emulsified by stirring at approximately 70°C. After cooling to approximately 50°C, Part C was added and homogenized (pH approximately 5.2, viscosity approximately 4,500 mPa·s).
[0160] Example 115 Hair Treatment Component Amount (mass%) ------------------------------------ Part A Cosmetic composition of Example 4 5.0 1.5 tablespoons olive oil Polyglyceryl-10 Oleate 0.5 Polyglyceryl-10 Isostearate 0.5 Ethylhexyl palmitate (Nippon Fine Chemical) 1.0 Shea butter 0.1 Carnauba wax 0.2 Cetyl Esters 0.3 Stearyl ethylhexanoate 1.0 Cetearyl Alcohol 4.0 Neosolue-DiSM (Nippon Fine Chemical) 0.5 Plandool-H (Nippon Fine Chemical 0.2 Part B Citric acid 0.05 Purified water (amount to make a total of 100) C part Dimethicone (3 million cs) 1.0 Dimethicone (100cs) 3.0 PPG-3 Myristyl 0.5 Phenoxyethanol 0.4 D part Phytopresome Plus (Nippon Fine Chemical) 1.0 Part E Purified water 10.0 ------------------------------------- (Preparation method) Parts A and B were each heated to approximately 80°C and dissolved. Part D, which had also been heated to 70°C, was added to Part E, which had been heated to 70°C, with stirring, and the mixture was cooled (Part F). Part B was gradually added to Part A and mixed uniformly. After cooling to approximately 50°C, Parts C and F were added and the mixture was homogenized (pH 4.5-5.5).
[0161] Example 116 Rinse-off Treatment Component Amount (mass%) ------------------------------------ Part A Cosmetic composition of Example 12 1.0 Cetearyl Alcohol 4.0 Stearyl Alcohol 1.0 Polyglyceryl-10 Stearate 0.5 PEG-20 Glyceryl Isostearate 0.2 Polyglyceryl stearate 0.2 Pentylene glycol 1.0 1,3-butylene glycol 3.0 Pentaerythrityl tetraethylhexanoate (Nippon Fine Chemical) 1.0 Lauryl Betaine 0.3 Isostearyl Isostearate 1.0 Plandool-LG4 (Nippon Fine Chemical) 0.2 LUSPLAN DD-DA7 (Nippon Fine Chemical) 0.2 Tocopherol 0.01 Part B Etidronic acid 0.1 Inulin-SC (Nippon Fine Chemical) 2.0 Purified water (amount to make a total of 100) C part NanoRepair-EL (Nippon Fine Chemical) 5.0 D part Phytopresome Plus (Nippon Fine Chemical) 2.0 Part E Purified water 10.0 ------------------------------------ (Preparation method) Parts A and B were dissolved uniformly at approximately 80°C. Part D, which had also been heated to 70°C, was added to part E with stirring, and the mixture was cooled (part F). Part B was gradually added to part A with stirring at approximately 80°C, and mixed uniformly. After cooling to approximately 50°C, parts C and F were added and the mixture was homogenized (pH 5.0-6.0).
[0162] Example 117 Non-silicone hair treatment Component Amount (mass%) -------------------------------------- Part A Cosmetic composition of Example 4 20.0 Propanediol 3.0 Cetyl alcohol 3.2 Stearyl alcohol 1.8 Hydrogenated rapeseed oil alcohol 1.5 LUSPLAN DD-IS (Nippon Fine Chemical) 0.5 Shea butter 0.3 Sodium Cocoamphoacetate 1.0 Neopentyl glycol diethylhexanoate 0.8 Jojoba seed oil 0.5 Isododecane 1.0 Glyceryl stearate 0.4 Cocamidomethyl MEA 0.8 Polyglyceryl-10 Distearate 0.2 Rice bran wax 0.5 Erucalactone DES (Nippon Fine Chemical) 2.0 Glycerin 1.0 Part B Lactic acid 0.4 Purified water (amount to make a total of 100) C part Phenoxyethanol 0.4 Tremoist-SL (Nippon Fine Chemical) 1.0 D part Phytopresome Plus (Nippon Fine Chemical) 0.5 Part E Purified water 10.0 -------------------------------------- (Preparation method) Part D, which had also been heated to 70°C, was added to Part E, which had been heated to 70°C, while stirring with a homomixer (3000 rpm), and the mixture was cooled (Part F). Parts A and B were each uniformly dissolved at approximately 80°C. Part B was gradually added to Part A at approximately 80°C while stirring, and mixed uniformly. After cooling to approximately 50°C, Parts C and F were added and the mixture was homogenized (pH approximately 5.0).
[0163] Example 118 Treatment Hair Mist Component Amount (mass%) -------------------------------------- Part A Cosmetic composition of Example 4 30.0 Glycerin 5.0 1,3-butylene glycol 3.0 NanoRepair-CMC (Nippon Fine Chemical) 5.0 Tremoist-SL (Nippon Fine Chemical) 1.0 Neosolue-Aqulio (Nippon Fine Chemical) 1.0 Phenylalanine 0.05 Cysteine 0.2 Glycine 0.3 Hydroxyethyl cellulose 0.05 Phenoxyethanol 0.4 Ethanol 5.0 Purified water (amount to make a total of 100) Part B Phytopresome Plus (Nippon Fine Chemical) 5.0 C part Purified water 20.0 D part Sodium hyaluronate (1% solution) 10.0 -------------------------------------- (Preparation method) Part A was mixed to make a homogeneous liquid. Part B, which had been heated to 80°C, was added to Part C, which had been heated to 80°C, while stirring with a propeller (800 rpm). After cooling, Parts A and D were added and the mixture was homogenized (pH approximately 5.5).
[0164] Example 119 Leave-on hair treatment Component Amount (mass%) ------------------------------------ Part A Cosmetic composition of Example 4 2.5 Cetearyl Alcohol 2.0 Stearyl alcohol 0.5 Glycerin 0.5 1,3-butylene glycol 2.0 Polyglyceryl-10 Stearate 0.5 LUSPLAN SR-DM4 (Nippon Fine Chemical) 0.1 Glyceryl Caprylate 0.4 Part B Phenoxyethanol 0.3 Purified water (amount to make a total of 100) C part Phytopresome Plus (Nippon Fine Chemical) 3.0 D part Purified water 20.0 ------------------------------------ (Preparation method) Part C, which had been heated to 75°C, was added to Part D, which had also been heated to 75°C, and stirred with a propeller (700 rpm) (Part E). Parts A and B were each uniformly dissolved at approximately 70°C, and Part B was gradually added to Part A while stirring, and mixed uniformly. After cooling, Part E was added and the mixture was homogenized (pH approximately 5, viscosity approximately 7,000 mPa·s).
[0165] Example 120 Leave-on hair treatment Component Amount (mass%) ------------------------------------ Part A Cosmetic composition of Example 4 2.5 Phytocompo-C (Nippon Fine Chemical) 0.5 Cetyl alcohol 2.0 Behenyl alcohol 0.5 Caprylic / capric triglyceride (Nippon Fine Chemical) 0.2 Plandool-G (Nippon Fine Chemical) 0.1 LUSPLAN DD-DA5 (Nippon Fine Chemical) 0.1 Tocopherol 0.01 Phytopresome Plus (Nippon Fine Chemical) 3.0 Part B Etidronic acid 1.0 Phenoxyethanol 0.4 Lactic acid appropriate amount Purified water (amount to make a total of 100) C part Dimethiconol 0.5 Amodimethicone 0.5 Carboxymethylalanyl disulfide keratin 0.1 Hydrolyzed Collagen 0.01 ------------------------------------ (Preparation method) Parts A and B were dissolved uniformly at approximately 70°C. Part B was gradually added to part A while stirring, and mixed uniformly. After cooling to approximately 50°C, part C was added, and the mixture was homogenized. The pH was adjusted to 4.5 with lactic acid.
[0166] In the above prescription, details of the ingredients listed by product name are as follows: Composite-PC: Hydrogenated lecithin, cholesterol Ecolano LH: Lanolin wax Inulin-SC: Inulin LP70H: Hydrogenated soy lysolecithin LUSPLAN DD-IS: Dimer dilinoleyl diisostearate LUSPLAN PI-DA: Diisostearyl / Phytosteryl Dimer Dilinoleate LUSPLAN DD-DA5: Dimer dilinoleyl dimer dilinoleate LUSPLAN DD-DA7: Dimer dilinoleyl dimer dilinoleate LUSPLAN SR-DC5: Dimer dilinoleyl dimer dilinoleate, PPG-3 caprylyl ether LUSPLAN SR-DM4: Dimer dilinoleyl dimer dilinoleate, caprylic / capric triglyceride LUSPLAN DA-R: Dimer dilinoleyl dimer dilinoleate, hydrogenated triglyceride rosinate LUSPLAN DD-DHR: Dimer dilinoleyl hydrogenated rosin condensate NanoRepair-CMC: Composition containing ceramide 2, ceramide 3, ceramide 6II, quaternium-33, cholesterol, and PG NanoRepair-CMC5: Composition containing ceramide 2, ceramide 3, ceramide 5, ceramide 6II, quaternium-33, and cholesterol NanoRepair-EL: Composition containing gamma-docosalactone and phytosterol Neosolue-Aqulio: bisethoxydiglycol cyclohexanedicarboxylic acid Neosolue-Aqua: Polyglyceryl-10 (eicosanedioate / tetradecanedioate), glycerin Neosolue-AquaS: Polyglyceryl-10 (eicosanedioate / tetradecanedioate), glycerin Neosolue-DiSM: Diisostearyl malate Neosolue-DE: Diethyl pentanediol dineopentanoate Neosolue-MP: Methylpentanediol dineopentanoate PCSH70: Hydrogenated soy lecithin Phytocompo-PP: Hydrogenated lecithin, phytosterol Phytocompo-C: Hydrogenated lecithin, phytosterol, ceramide 2, ceramide 3, ceramide 6II Phytocompo-SP: Hydrogenated lecithin, phytosterol, glycerin, BG Phytocompo-SC: Hydrogenated lecithin, phytosterol, glycerin, BG, ceramide 2, ceramide 3, ceramide 6II Plandool-H: Dimer dilinoleic acid (phytosteryl / isostearyl / cetyl / stearyl / behenyl) Plandool-S: Dimer dilinoleic acid (phytosteryl / isostearyl / cetyl / stearyl / behenyl) Plandool-G: Dimer dilinoleyl bis(behenyl / isostearyl / phytosteryl) dimer dilinoleate Plandool-GR: Dimer dilinoleyl bis(behenyl / isostearyl / phytosteryl) dimer dilinoleate, hydrogenated triglyceride rosinate Plandool-DP: Bis-diglyceryl polyacyladipate-2 Plandool-ISS: Phytosteryl isostearate Plandool-SUN: Sunflower seed oil fatty acid phytosteryl Plandool-MAS: Macadamia nut oil fatty acid phytosteryl Plandool-LG1: Phytosteryl / Octyldodecyl / Behenyl Lauroyl Glutamate Plandool-LG2: Phytosteryl / Octyldodecyl Lauroyl Glutamate Plandool-LG3: Phytosteryl / Octyldodecyl / Behenyl Lauroyl Glutamate Plandool-LG4: Phytosteryl / Octyldodecyl / Behenyl Lauroyl Glutamate Phytopresome: hydrogenated lecithin, phytosterol Phytopresome Cera-36: Hydrogenated lecithin, phytosterol, ceramide 3, ceramide 6II Phytopresome MEL: glycolipids, hydrogenated lecithin, glycerin, BG Phytopresome Plus: Hydrogenated lecithin, phytosterol, phytosphingosine, BG, lactic acid, water PrimeLipid PI: Hydrogenated lecithin, lecithin, phytosterol, tocopherol Repair Lipid-DSL: Sodium stearoyl lactylate, diethyl sebacate Tremoist-TP: Tremella fuciformis polysaccharide Tremoist-SL: Tremella fuciformis polysaccharide aqueous solution (1%) Erucalactone MCT: γ-docosalactone, caprylic / capric triglyceride Erucalactone DES: γ-docosalactone, diethyl sebacate
Claims
1. A cosmetic composition comprising the following components (A) to (C), wherein the content of component (A) is 0.1 to 30% by mass, the content of component (B) is 55% by mass or more, the mass ratio of components (B1) to (B2) is 95:5 to 55:45, and the content of component (C) is 0.01 to 0.4 times by mass the content of component (A). (A) Lecithin (B) an organic solvent consisting of the following components (B1) and (B2): (B1) One or more trihydric or higher alcohols having 3 to 6 carbon atoms (B2) One or more selected from ethanol and 1,2-alkanediols having 3 to 6 carbon atoms (C) Oily component
2. The cosmetic composition according to claim 1, further comprising an organic acid as component (D).
3. A cosmetic comprising the cosmetic composition according to claim 1 or 2.
Citation Information
Patent Citations
Lecithin composition having improved water dispersion characteristic
JP1981163746A