Thickening composition and cosmetic thereof
Caesalpinia spinosa gum-based thickening compositions address the limitations of existing thickeners by providing high stability and smoothness in cosmetic products, even at low concentrations.
Patent Information
- Application Number
- JP2024111368
- Authority / Receiving Office
- JP · JP
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2024-07-11
- Publication Date
- 2026-01-23
AI Technical Summary
Existing thickeners like carboxyvinyl polymers and xanthan gum face issues such as limited pH range, sensitivity to salt-type active ingredients, stickiness, and sliminess, failing to meet consumer demands for stable and smooth cosmetic products.
A thickening composition containing Caesalpinia spinosa gum, optionally combined with other water-soluble thickeners, provides high thickening effect at low concentrations and maintains stability over time, enhancing the smoothness and stability of cosmetic products.
The composition achieves a high thickening effect with minimal viscosity change over time, resulting in smoother and more stable cosmetic formulations.
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Abstract
Description
[Technical Field]
[0001] The present invention relates to a thickening composition containing Caesalpinia spinosa gum and a cosmetic product using the same, and more specifically to a thickening composition that has a high thickening effect even at a low concentration and exhibits little change in viscosity even during storage, and a cosmetic product using the same. [Background technology]
[0002] In the technical fields of pharmaceuticals, cosmetics, and the like, water-soluble thickeners widely used include natural thickeners typified by xanthan gum, guar gum, etc., semi-synthetic thickeners typified by hydroxyethyl cellulose, carboxymethyl cellulose, etc., and synthetic thickeners typified by carboxyvinyl polymers, polyethylene oxide, etc.
[0003] Among these thickeners, carboxyvinyl polymers are widely used because they are inexpensive, have a high thickening effect, and can gel in small amounts. However, when using carboxyvinyl polymers, there are problems such as a limited pH range in which thickening is possible, a significant decrease in the thickening effect when a salt-type active ingredient is blended, and a tendency for the product to feel sticky when applied to the skin when the blending amount is increased.
[0004] Furthermore, while xanthan gum has less temperature dependency than other thickeners, is stable over a wide pH range, and exhibits salt tolerance, some of its properties can cause a slimy or sticky feeling, which can significantly impair the feel of the product when used.
[0005] Against this background, attempts have been made to combine xanthan gum with other thickeners to create highly stable cosmetics, but no cosmetics that fully meet consumer demands have been developed (Patent Document 1). [Prior art documents] [Patent documents]
[0006] [Patent Document 1] Japanese Patent Application Publication No. 2022-171290 Summary of the Invention [Problem to be solved by the invention]
[0007] The present invention relates to a thickening composition characterized by containing Caesalpinia spinosa gum, and a cosmetic product using the thickening composition, which has a high thickening effect even at a low concentration and further suppresses changes in viscosity over time even during storage, and the cosmetic product using the thickening composition. [Means for solving the problem]
[0008] As a result of intensive research in light of the above-mentioned circumstances, the present inventors have found that a thickening composition containing Caesalpinia spinosa gum has a high thickening effect even at a low concentration of Caesalpinia spinosa gum and can suppress viscosity changes over time. They have also found that cosmetics containing the thickening composition have a high thickening effect and high stability over time, and have completed the present invention.
[0009] A first aspect of the present invention is a thickening composition containing Caesalpinia spinosa gum.
[0010] A second aspect of the present invention is the thickening composition of the first aspect of the present invention, characterized in that it further contains a water-soluble thickener (excluding Caesalpinia spinosa gum). By adding a water-soluble thickener other than Caesalpinia spinosa gum, the thickening composition becomes more stable over time, and therefore this corresponds to this preferred embodiment.
[0011] A third aspect of the present invention provides a cosmetic preparation containing the first or second thickening composition. By incorporating the first or second thickening composition, the cosmetic preparation can be made to have high stability and a smoother feel than other thickening compositions. [Effects of the Invention]
[0012] The present invention provides a thickening composition containing Caesalpinia spinosa gum that has a high thickening effect even at low concentrations and that has high stability over time during storage. Furthermore, when such a thickening composition is incorporated into a cosmetic, it can achieve a smooth feel while maintaining the high thickening effect and stability. DETAILED DESCRIPTION OF THE INVENTION
[0013] The Caesalpinia spinosa gum and water-soluble thickener constituting the present invention, as well as the form of the cosmetic of the present invention, will be specifically described below.
[0014] (Caesalpinia spinosa gum) Caesalpinia spinosa gum used in the thickening composition of the present invention is a water-soluble thickening agent obtained from the endosperm of Caesalpinia spinosa.
[0015] Caesalpinia spinosa gum can be a commercially available product, for example, SOLAGUM TARA manufactured by SEPPIC.
[0016] The content of Caesalpinia spinosa gum in the present invention is preferably 0.1% by mass or more, more preferably 0.5% by mass or more. The upper limit is preferably 2.0% by mass or less, more preferably 1.5% by mass or less. If the blending amount is less than 0.1% by mass, it is difficult to obtain a high thickening effect, while if the blending amount exceeds 2.0% by mass, the effect commensurate with the blending amount may not be obtained.
[0017] [Water-soluble thickener] The thickening composition of the present invention can contain water-soluble thickeners other than Caesalpinia spinosa gum, as this will result in a formulation that is more stable over time, and can be used alone or in combination with two or more types.
[0018] Examples of water-soluble thickeners include aqueous or amphiphilic polymers containing acrylamide, acryloyldimethyltaurine, or salts thereof as constituent units, xanthan gum, gum arabic, glucomannan, carbomer, and (acrylates / C10-30 alkyl acrylate) crosspolymer.
[0019] Specifically, (sodium acrylate / sodium acryloyldimethyltaurate) copolymer, (hydroxyethyl acrylate / sodium acryloyldimethyltaurate) copolymer, (sodium acrylate / acryloyldimethyltaurate / dimethylacrylamide) crosspolymer, (acrylamide / sodium acryloyldimethyltaurate) copolymer, polyacrylate-13 (a copolymer of acrylic acid, acrylic acid amide, sodium acrylate, and sodium acryloyldimethyltaurate), polyacrylate crosspolymer-6 (a copolymer of ammonium acryloyldimethyltaurate, dimethylacrylamide, lauryl methacrylate, and laureth-4 methacrylate with trimethyl acrylate) Examples of suitable crosslinking agents include (those crosslinked with diolpropane), (acrylamidopropyltrimonium chloride / acrylates) copolymer, polyacrylamide, (acrylamide / ammonium acrylate) copolymer, (acrylates / C10-30 alkyl acrylate) crosspolymer, carbomer, xanthan gum, gum arabic, and glucomannan. Of these, (sodium acrylate / sodium acryloyldimethyltaurate) copolymer, (hydroxyethyl acrylate / sodium acryloyldimethyltaurate) copolymer, polyacrylate crosspolymer-6, (acrylamidopropyltrimonium chloride / acrylates) copolymer, and xanthan gum are preferably used.
[0020] Commercially available water-soluble thickeners can be used, such as Seppic's SEPILIFE NUDE (containing sodium acrylate / sodium acryloyldimethyl taurate copolymer), SEPINOV EMT 10 (containing hydroxyethyl acrylate / sodium acryloyldimethyl taurate copolymer), SEPIMAX ZEN (containing polyacrylate crosspolymer-6), SIMULQUAT HC 305 (containing acrylamidopropyltrimonium chloride / acrylates copolymer), and SOLAGUM AX (containing xanthan gum and gum arabic).
[0021] The amount of the water-soluble thickener is preferably 0.1% by mass or more, more preferably 0.3% by mass or more, based on the thickened composition of the present invention. The upper limit is preferably 3.0% by mass or less, more preferably 1.5% by mass or less. If the amount is less than 0.1% by mass, it is difficult to achieve stability over time. On the other hand, if the amount is more than 3.0% by mass, the effect commensurate with the amount may not be obtained.
[0022] In addition to these essential ingredients, the cosmetic of the present invention may contain, as appropriate, ingredients typically used in cosmetics, such as oily raw materials, surfactants, polymeric compounds, antioxidants, whitening agents, moisturizing agents, drugs, ultraviolet absorbers, sequestering agents, proteins, protein hydrolysates or derivatives thereof, amino acids or derivatives thereof, pH adjusters, and preservatives.
[0023] Examples of oily raw materials, surfactants, polymeric compounds, antioxidants, whitening agents, moisturizing agents, drugs, ultraviolet absorbers, sequestering agents, proteins, protein hydrolysates or derivatives thereof, amino acids or derivatives thereof, pH adjusters, preservatives, and the like can include those similar to those described in WO2022 / 080287.
[0024] The cosmetic of the present invention is not particularly limited, but may be in the form of a liquid, emulsion, paste, cream, gel, etc., with cream, emulsion, and gel being preferred. For example, it can be used as a skin care cosmetic such as a skin lotion, emulsion, cream, lotion, or sunscreen cream, or as a hair care cosmetic such as a hair mask. [Example]
[0025] The present invention will now be described in detail with reference to examples, but the present invention is not limited to these examples. Note that all values shown in the tables of the examples are in mass % relative to the total mass of the cosmetic.
[0026] Example 1 and Comparative Example 1: Oil-in-water emulsion cream In the formulation shown in Table 1 below, components (A) and (B) were weighed and heated to 80°C. Component (C) was then added to component (B) and mixed. The mixture of components (B) and (C) was added to component (A) and emulsified, and then component (D) was added to prepare an oil-in-water emulsion cream. The viscosity was then measured after one month of storage at 25°C, and the stability over time, stickiness when applied to the skin, and smoothness were evaluated using the following methods. Viscosity measurements were performed using a Brookfield LVT viscometer.
[0027] (Method for evaluating stability over time) The oil-in-water emulsion creams prepared according to Table 1 were stored in a thermostatic chamber at 45°C for 4 weeks and evaluated according to the following evaluation criteria.
[0028] (Evaluation criteria for stability over time) ◎: Viscosity change was less than ±10% compared to immediately after preparation. Good: Viscosity change was ±10% or more but less than 20% compared to immediately after preparation. △: Viscosity change was ±20% or more but less than ±30% compared to immediately after preparation. ×: The viscosity changed by ±30% or more compared to immediately after preparation.
[0029] (Method for evaluating stickiness and smoothness) Ten panelists evaluated the oil-in-water emulsion creams prepared according to Table 1. The panelists performed a sensory evaluation of each sample regarding stickiness when applied to the skin and smoothness of the cream.
[0030] (Evaluation criteria for stickiness upon application) 4 points: No sticky feeling when applied 3 points: Almost no stickiness felt when applied 2 points: Sticky feeling when applied 1 point: Very sticky when applied
[0031] (Evaluation criteria for cream smoothness) 4 points: Feels very smooth 3 points: Feels smooth 2 points: Not very smooth 1 point: No smoothness at all
[0032] The average score for each evaluation result was calculated and classified as follows, as shown in Table 1. ◎: 3.5 points or more ○: 3.0 points or more to less than 3.5 points △: 2.0 points or more to less than 3.0 points ×: Less than 2.0 points
[0033] [Table 1] In Table 1, *1 MONTANOV L *2 SOLAGUM TARA (above, product name, manufactured by SEPPIC) *3 Labol Gum GS-C (product name, manufactured by MP Gokyo Food & Chemical Co., Ltd.) *4 SEPITONIC M3.0 (product name, manufactured by SEPPIC) It was formulated as.
[0034] As is clear from the results in Table 1, the oil-in-water emulsion cream of Example 1 containing Caesalpinia spinosa gum had a viscosity 2.5 times higher one month after preparation than the cream containing xanthan gum, demonstrating its high thickening effect. Furthermore, it was also clear that the cream had superior stability and usability compared to xanthan gum in terms of stability over one month at 45°C and in terms of non-stickiness and smoothness upon application.
[0035] Examples 2 and 3 and Comparative Examples 2 and 3: Cream gel In the formulation shown in Table 2 below, components (A) and (B) were weighed and mixed. Component (B) was then added to component (A), and component (C) was then added to prepare a cream gel. The viscosity was then measured after storage at 25°C for one month, and the stability over time, stickiness upon application to the skin, and smoothness were evaluated. The evaluation methods were the same as those in the above Examples and Comparative Examples.
[0036] [Table 2] In Table 2, *2 is the same as in Table 1, *5 SEPIMAX ZEN (containing 100% polyacrylate crosspolymer-6) *6 SEPINOV EMT 10 (containing 100% by mass of hydroxyethyl acrylate / sodium acryloyldimethyl taurate copolymer) (trade name, manufactured by SEPPIC) It was formulated as.
[0037] Example 4 and Comparative Example 4: Cream gel In the formulation shown in Table 3 below, components (A) and (B) were weighed and mixed. Component (B) was then added to component (A), and then component (C) was added to prepare a cream gel. The viscosity was then measured immediately after preparation, and the stability over time, stickiness upon application to the skin, and smoothness were evaluated. The evaluation methods were the same as those in the above Examples and Comparative Examples.
[0038] [Table 3] In Table 3, *2 is the same as in Table 1. *7 SEPILIFE NUDE (containing approximately 35% of sodium acrylate / sodium acryloyldimethyltaurate copolymer) (product name, manufactured by SEPPIC) It was formulated as.
[0039] The results in Tables 2 and 3 clearly show that Example 2, which contains Caesalpinia spinosa gum, has a viscosity that is 2.0 times or more higher than Comparative Example 2, which does not contain Caesalpinia spinosa gum, and thus has a high thickening effect. Furthermore, Examples 3 and 4 also clearly have a similarly high thickening effect compared to Comparative Examples 3 and 4, which do not contain Caesalpinia spinosa gum. Furthermore, it is clear that they have the same or better effects in terms of stability over one month at 45°C and usability, such as non-stickiness upon application and smoothness.
[0040] Example 5 and Comparative Example 5: Hair Mask In the formulation shown in Table 4 below, components (A) and (B) were weighed and mixed. Component (B) was added to component (A), and then component (C) was added to prepare a hair mask. The viscosity was then measured the day after preparation, and the stability over time was evaluated. The evaluation method was the same as in the above Examples and Comparative Examples.
[0041] [Table 4] In Table 4, *2 is the same as in Tables 1 to 3. *8 SIMULQUAT HC 305 (product name, manufactured by SEPPIC, containing approximately 35% by weight of acrylamidopropyltrimonium chloride / acrylates copolymer) It was formulated as.
[0042] As is clear from the results in Table 4, the viscosity of the hair mask of Example 5 increased by more than 1.5 times the amount the day after preparation, even though only 0.3% by mass of Caesalpinia spinosa gum was added, and it was also found to have excellent stability over time.
[0043] Examples 6 to 9 and Comparative Examples 6 to 8: Aqueous gel, cream gel In the formulations shown in Tables 5 and 6 below, components (A) and (B) were weighed out. Component (B) was added to component (A), and then component (C) was added to prepare an aqueous gel or cream gel. The viscosity was then measured after storage at 25°C for one week to evaluate stability over time. The evaluation method was the same as in the above Examples and Comparative Examples.
[0044] [Table 5]
[0045] [Table 6] In Tables 5 and 6, *2 is the same as in Table 1. *9 SOLAGUM AX *10 MONTANOV 202 *11 Sepicide HB (above, product name, manufactured by SEPPIC) *12 Euxyl PE 9010 (product name, manufactured by Ashland) It was formulated as.
[0046] As is clear from the results in Tables 5 and 6, it is clear that the gel or cream gel containing Caesalpinia spinosa gum and xanthan gum in combination has a higher thickening effect than xanthan gum alone.
[0047] Other examples will be described. All of the examples were produced by conventional methods. All of the cosmetic preparations had a high thickening effect and were stable over time.
[0048] Example 10: Night Cream Purified water...residual Cetearyl alcohol, cetearyl glucoside*13 3.0% by mass (C13-15) alkane*14 3.0% by mass (C15-19) alkane*15 7.0% by mass Dipalmitoyl hydroxyproline*16 1.0% by mass Glycol palmitate*17 2.0% by mass (Hydroxyethyl acrylate / Sodium acryloyldimethyl taurate) copolymer*6 0.8% by mass Caesalpinia spinosa gum*2 0.15% by mass Amylopectin, amylose*18 2.0% by mass Sodium benzoate, potassium sorbate, water 1.0% by mass Fragrance · 0.05% by mass Xylityl glucoside, anhydrous xylitol, xylitol, water*19··3.0% by mass Sodium hydroxide (as needed)
[0049] Example 11: Cream Arachidyl glucoside, arachidyl alcohol, behenyl alcohol*10 3.0% by mass (C15-19) alkane*14 10.0% by mass Caprylic / capric triglyceride 4.0% by mass Hydrogenated olive oil decyl esters: 1.0% by mass Trifatty acid (C10-18) glyceryl 1.0% by mass Beeswax: 1.0% by mass Carnauba fatty acid wax: 0.6% by mass Shea butter...2.8% by mass Tribehenin: 2.2% by mass Dipalmitoyl hydroxyproline*16 1.0% by mass Tocopherol: 0.3% by mass Purified water...residual Caesalpinia spinosa gum*2 0.15% by mass Glycerin: 4.0% by mass L-arginine 0.1% by mass Sodium acrylate / sodium acryloyldimethyltaurate copolymer, C15-19 alkane, polyglyceryl-6 laurate, polyglycerin-6, water*7 2.2% by mass Xylityl glucoside, anhydrous xylitol, xylitol, water*19··3.0% by mass Phenoxyethanol, chlorphenesin, glycerin 0.8% by mass Madecassoside 0.2% by mass Lavender oil: 0.05% by mass Rosemary oil: 0.05% by mass
[0050] Example 12: Night Cream Purified water...residual Arachidyl glucoside, arachidyl alcohol, behenyl alcohol*20 2.0% by mass Cetearyl alcohol, coconut oil alkyl glucoside*20 2.0% by mass (C15-19) alkane*15 10.0% by mass Jojoba seed oil: 3.0% by mass Argania spinosa kernel oil, hydrogenated vegetable oil 2.0% by mass (Hydroxyethyl acrylate / Sodium acryloyldimethyl taurate) copolymer*6 0.75% by mass Caesalpinia spinosa gum*2 0.25% by mass Helichrysum stoecas callus culture lysate, glycerin, water, gum arabic, xanthan gum, sodium benzoate, potassium sorbate*21··1.0% by mass Xylityl glucoside, anhydrous xylitol, xylitol, water*19··3.0% by mass Fragrance · 0.05% by mass
[0051] [Example 13: Scrub Gel] Purified water...residual Polyacrylate crosspolymer-6*5··0.8% by mass Caesalpinia spinosa gum*2 0.35% by mass Benzyl alcohol, benzoic acid, dehydroacetic acid, tocopherol 0.8% by mass Chamomile extract: 0.25% by mass Fragrance · 0.1% by mass Coloring agent 0.58% by mass Tochaka: 1.0% by mass Loofah fruit: 0.2% by mass
[0052] Example 14: Antiperspirant Purified water...residual Propylene glycol: 2.0% by mass Butylene glycol: 5.0% by mass 4Na edetate 0.05% by mass (C13-15) alkane*14 3.0% by mass Glyceryl stearate, PEG-100 stearate 2.0% by mass Arachidyl glucoside, arachidyl alcohol, behenyl alcohol*20 2.0% by mass Caesalpinia spinosa gum*2 0.5% by mass Polyacrylate crosspolymer-6*5··0.3% by mass Phenoxyethanol, ethylhexylglycerin 1.0% by mass 50% chlorohydroxy aluminum aqueous solution ··20 mass% Potassium aluminum sulfate dodecahydrate 0.3% by mass Fragrance · 0.15% by mass
[0053] Example 15: Leave-on conditioner Cetearyl alcohol, coconut oil alkyl glucoside*20 1.0% by mass (C13-15) alkane*14 2.0% by mass (C15-19) alkane*15 2.0% by mass Tocopherol: 0.05% by mass Hemp seed oil: 2.0% by mass Caesalpinia spinosa gum*2 1.0% by mass Distearoylethyldimonium chloride, cetearyl alcohol 1.0% by mass Xylityl glucoside, anhydrous xylitol, xylitol, water*19··1.5% by mass Inulacrismoides flower / leaf extract, caprylic / capric triglyceride*22··1.0% by mass Benzyl alcohol, benzoic acid, dehydroacetic acid, tocopherol 1.0% by mass Coloring agent 0.27% by mass 12% sodium hydroxide solution (appropriate amount) Fragrance · 0.5% by mass Purified water...residual
[0054] [Example 16: Hair Cream Gel] Caesalpinia spinosa gum*2 0.3% by mass Glycerin: 2.0% by mass (Acrylamide propyltrimonium chloride / acrylates copolymer, isohexadecane, coceth-7, water*8 3.0% by mass (C15-19) alkane*15 3.0% by mass Argania spinosa kernel oil: 2.0% by mass Tocopherol: 0.05% by mass Alaria esculenta extract, butylene glycol, water*23 2.0% by mass Fragrance · 0.2% by mass Phenoxyethanol, ethylhexylglycerin 1.0% by mass 12% sodium hydroxide solution (appropriate amount) Purified water...residual
[0055] [Example 17: Non-silicone serum] Caesalpinia spinosa gum*2 0.8% by mass Lauryl glucoside, myristyl glucoside, polyglyceryl-6 laurate, water*24··3.0% by mass (C13-15) alkane*14 2.0% by mass (Acrylamide propyltrimonium chloride / acrylates copolymer, isohexadecane, coceth-7, water*8 1.5% by mass Fragrance · 0.2% by mass Benzyl alcohol, benzoic acid, dehydroacetic acid, tocopherol 1.0% by mass 12% sodium hydroxide solution (appropriate amount) Purified water...residual
[0056] Example 18: Hair mask Glycerin: 3.0% by mass Coco-alkyl (caprylic / capric acid)*25 3.0% by mass Caprylic / capric triglyceride 2.0% by mass Shea butter...1.0% by mass Jojoba seed oil: 3.2% by mass Glyceryl stearate 2.0% by mass Cetearyl glucoside, cetearyl glucoside*13 3.0% by mass (C15-19) alkane*15 5.0% by mass Distearoylethyldimonium chloride, cetearyl alcohol 1.0% by mass Tocopherol: 0.05% by mass Caesalpinia spinosa gum*2 0.8% by mass Xylityl glucoside, anhydrous xylitol, xylitol, water*19··1.5% by mass Inulacrismoides flower / leaf extract, caprylic / capric triglyceride*22··2.0% by mass Aloe vera juice, glycerin, water 1.0% by mass Bitter orange flower water, citric acid, sodium benzoate, potassium sorbate 18.0% by mass Fragrance · 0.2% by mass Benzyl alcohol, benzoic acid, dehydroacetic acid, tocopherol 1.0% by mass 6% sodium hydroxide solution (appropriate amount) Purified water...residual
[0057] Example 19: Hair conditioner Coconut oil alkyl glucoside, cetearyl alcohol*20 2.0% by mass Glyceryl stearate 5.0% by mass Hydrogenated olive stearyl esters: 1.0% by mass Avocado oil: 0.5% by mass Almond oil: 1.0% by mass Dimethicone: 1.0% by mass Dipentaerythrityl pentaisononanoate 3.0% by mass Tocopherol: 0.05% by mass Caesalpinia spinosa gum*2 0.5% by mass Behentrimonium chloride 1.0% by mass Polyquaternium-11 2.0% by mass Polyquaternium-7 2.0% by mass Aloe vera juice: 3.0% by mass Lauroyl arginine ethyl HCl 1.0% by mass Xylityl glucoside, anhydrous xylitol, xylitol, water*19··3.0% by mass Limonium gerberi extract, butylene glycol, water*26·· 1.0% by mass Sodium cocoyl amino acids, PEG-7 dimethicone panthenyl phosphate potassium, sodium sarcosinate, propylene glycol, water*27·· 1.0% by mass Coloring agent 3.0% by mass Fragrance · 1.0% by mass Purified water...residual
[0058] Example 20: Hair mask Caesalpinia spinosa gum*2··0.3% by mass Glycerin: 2.0% by mass (Acrylamide propyltrimonium chloride / acrylates copolymer, isohexadecane, coceth-7, water*8 3.0% by mass (C15-19) alkane*15 3.0% by mass Argania spinosa kernel oil: 2.0% by mass Tocopherol: 0.05% by mass Fragrance · 0.2% by mass Phenoxyethanol, ethylhexylglycerin 1.0% by mass 12% sodium hydroxide solution (appropriate amount) Purified water...residual
[0059] [Example 21: Night Serum] Caesalpinia spinosa gum*2 0.8% by mass Lauryl glucoside, myristyl glucoside, polyglyceryl-6 laurate, water*24··3.0% by mass (C13-15) alkane*14 2.0% by mass (Acrylamide propyltrimonium chloride / acrylates copolymer, isohexadecane, coceth-7, water*8 1.5% by mass Hexylene glycol, capryloyl glycine, xylityl glucoside*28··2.5% by mass Fragrance · 0.2% by mass Benzyl alcohol, benzoic acid, dehydroacetic acid, tocopherol 1.0% by mass 12% sodium hydroxide solution (appropriate amount) Purified water...residual
[0060] Above, in Examples 10 to 21, *13 MONTANOV 68 MB *14 EMOGREEN L15 *15 EMOGREEN L19 *16 SEPILIFT DPHP *17 LANOL P. ECAILLES *18 SEPIFINE BB *19 AQUAXYL *20 MONTANOV 82 *21 HYDRACHRYSUM *22 INULA HC *23 ALARIANE *24 FLUIDIFEEL EASY *25 LANOL 2681 *26 SEA LAVENDER HC *27 SEPICAP MP *28 FLUIDIPURE 8G (above, product name, manufactured by SEPPIC) It was formulated as.
Claims
1. A thickening composition comprising Caesalpinia spinosa gum.
2. The thickening composition according to claim 1, further comprising a water-soluble thickener (excluding Caesalpinia spinosa gum).
3. A cosmetic comprising the thickening composition according to claim 1 or 2.
Citation Information
Patent Citations
Emulsion cosmetic for skin
JP2022171290A