Makeup cosmetic composition having excellent lasting power and formulation stability

The inclusion of alkyl glyceryl ether-modified silicone and surface-coated powders in makeup compositions addresses issues of spreadability and stability, enhancing durability and usability.

WO2025225855A1PCT designated stage Publication Date: 2025-10-30AMOREPACIFIC CORP
View PDF 6 Cites 0 Cited by

Patent Information

Application Number
PCT/KR2025/002598
Authority / Receiving Office
WO · WO
Patent Type
Applications
Current Assignee / Owner
Priority Date
2024-04-23
Filing Date
2025-02-25
Publication Date
2025-10-30

AI Technical Summary

Technical Problem

Conventional makeup compositions face challenges with reduced spreadability, stickiness, dryness, and formulation instability due to high film content, especially in high-coverage products, leading to compromised coverage and lasting power.

Method used

Incorporating alkyl glyceryl ether-modified silicone, cross-linked silicone, and surface-coated powders, such as amino acid-coated mica, to enhance formulation stability and durability while improving the feel of use.

Benefits of technology

The composition achieves excellent makeup staying power, formulation stability, and a lighter feel by balancing viscosity and preventing banding, maintaining consistent viscosity over time and reducing smudging.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure KR2025002598_30102025_PF_FP_ABST
    Figure KR2025002598_30102025_PF_FP_ABST
Patent Text Reader

Abstract

The present disclosure relates to a makeup cosmetic composition having excellent lasting power and formulation stability. Specifically, the makeup cosmetic composition, according to the present disclosure, comprises alkyl glyceryl ether-modified silicone and thus exhibits remarkable lasting power of makeup while greatly improving formulation instability such as band generation and a decrease in viscosity resulting from containing the alkyl glyceryl ether-modified silicone, and improving a heavy feeling when used caused by high viscosity, thereby enabling excellent lasting power, formulation stability, and feeling of use.
Need to check novelty before this filing date? Find Prior Art

Description

Makeup composition with excellent durability and formulation stability

[0001] The present disclosure relates to a makeup cosmetic composition having excellent durability and formulation stability.

[0002] Cross-reference to related applications

[0003] This application claims priority to Republic of Korea Patent Application No. 10-2024-0053975, filed April 23, 2024, the entire contents of which are incorporated herein by reference.

[0004] The development of makeup compositions to enhance the staying power and coverage of cosmetics is constantly evolving. Water-in-silicone (w / s) compositions, primarily composed of silicone oil, are the dominant oil. Methods that enhance the hold of makeup, including silicone-based film-forming agents, are widely used. Various polymers can be used as film-forming agents, with silicone resins and acrylate-silicone polymers being used based on compatibility with the main oil.

[0005] In conventional techniques like the above, increasing the film content to enhance lasting power has limitations, such as reduced spreadability and negative effects like stickiness and dryness. Furthermore, if the formulation doesn't spread evenly or dries the skin, the intended coverage and lasting power of the makeup product are reduced.

[0006] In the case of high-coverage makeup formulations containing a large amount of powder, it is difficult to uniformly disperse the film-forming agent due to the high solid content, and there is difficulty in ensuring the stability of the formulation.

[0007] [Prior Art Literature]

[0008] [Patent Document]

[0009] (Patent Document 1) Republic of Korea Patent Publication No. 10-2608661

[0010] The present disclosure aims to provide a makeup cosmetic composition having excellent makeup staying power, formulation stability, and usability by including an alkyl glyceryl ether-modified silicone, while significantly improving formulation instability such as banding and viscosity reduction due to the inclusion of an alkyl glyceryl ether-modified silicone, and improving the heavy feeling of use due to high viscosity.

[0011] In order to achieve the above-mentioned purpose, one embodiment of the present invention provides a cosmetic composition comprising alkyl glyceryl ether modified silicone, cross-linked silicone, and surface coating powder.

[0012] The makeup cosmetic composition according to the present disclosure exhibits excellent makeup staying power by including an alkyl glyceryl ether-modified silicone, and significantly improves formulation instability such as banding and viscosity reduction due to the inclusion of the alkyl glyceryl ether-modified silicone, and improves the heavy feeling of use due to high viscosity, so that it can have excellent staying power, formulation stability, and feeling of use.

[0013] Figure 1 shows the viscosity measurement results according to Experimental Example 1.

[0014] Figures 2a to 2i respectively show the results of confirming the stability of the formulation according to Experimental Example 2. (Figure 2a: Comparative Example 4, Figure 2b: Comparative Example 5, Figure 2c: Comparative Example 6, Figures 2d and 2e: Example 1, Figures 2f and 2g: Example 3, Figures 2h and 2i: Example 4)

[0015] Figures 3a to 3d show the results of durability verification according to Experimental Example 3. (Figure 3a: after application and drying, Figure 3b: after tissue-off, Figure 3c: verification of tissue-off surface, Figure 3d: verification with vinyl material)

[0016] Hereinafter, the present invention will be described in detail.

[0017] In one aspect, the present invention may relate to a cosmetic composition comprising an alkyl glyceryl ether modified silicone, a cross-linked silicone, and a surface coating powder.

[0018] In one embodiment, the alkyl glyceryl ether modified silicone may be glyceryl undecyl dimethicone (GUD).

[0019] In one embodiment, the alkyl glyceryl ether modified silicone may be included in an amount of 0.05 to 10 wt% based on the total weight of the composition. Specifically, the alkyl glyceryl ether modified silicone may be included in an amount of 0.05 wt% or more, 0.06 wt% or more, 0.07 wt% or more, 0.08 wt% or more, 0.09 wt% or more, 0.1 wt% or more, 0.3 wt% or more, 0.5 wt% or more, 0.7 wt% or more, 0.9 wt% or more, 1 wt% or more, 2 wt% or more, 3 wt% or more, 4 wt% or more, 5 wt% or more, 6 wt% or more, 7 wt% or more, 8 wt% or more, or 9 wt% or more based on the total weight of the composition, and further, the alkyl glyceryl ether modified silicone may be included in an amount of 10 wt% or less, 9 wt% or less, 8 wt% or less, 7 wt% or less, 6 wt% or less, 5 wt% or less, 4 wt% or less, 3 wt% or less, 2 wt% or less, 1 It may be included in an amount of 0.9 wt% or less, 0.7 wt% or less, 0.5 wt% or less, 0.3 wt% or less, 0.1 wt% or less, 0.09 wt% or less, 0.08 wt% or less, 0.07 wt% or less, or 0.06 wt% or less.

[0020] In one embodiment, the cross-linked silicone may be a dimethicone crosspolymer.

[0021] In one embodiment, the cross-linked silicone may be included in an amount of 0.5 to 10 wt% based on the total weight of the composition. Specifically, the crosslinking silicone may be included in an amount of 0.5 wt% or more, 1 wt% or more, 1.2 wt% or more, 1.4 wt% or more, 1.6 wt% or more, 1.8 wt% or more, 2 wt% or more, 2.2 wt% or more, 2.4 wt% or more, 2.6 wt% or more, 2.8 wt% or more, 3 wt% or more, 4 wt% or more, 5 wt% or more, 6 wt% or more, 7 wt% or more, 8 wt% or more, or 9 wt% or more based on the total weight of the composition, and further, the crosslinking silicone may be included in an amount of 10 wt% or less, 9 wt% or less, 8 wt% or less, 7 wt% or less, 6 wt% or less, 5 wt% or less, 4 wt% or less, 3 wt% or less, 2.8 wt% or less, 2.6 wt% or less, 2.4 wt% or less, 2.2 wt% or less, based on the total weight of the composition. It may be included in an amount of less than or equal to 1.8 wt%, less than or equal to 1.6 wt%, less than or equal to 1.4 wt%, less than or equal to 1.2 wt%, less than or equal to 1 wt%, or less than or equal to 0.8 wt%.

[0022] In one embodiment, the surface-coated powder may be a powder whose surface is coated with an amino acid, a derivative of the amino acid, a salt of the amino acid, or a salt of a derivative of the amino acid.

[0023] In one embodiment, the amino acid may be glutamate or lysine.

[0024] In one embodiment, the derivative of the amino acid may be an N-acylamino acid comprising a C8 to C22 acyl group. Specifically, the derivative of the amino acid is prepared by reacting the amino acid with a fatty acid, wherein the fatty acid may be a C8 to C22 acyl group, a C9 to C21 acyl group, a C10 to C20 acyl group, a C11 to C19 acyl group, or a C12 to C18 acyl group. More specifically, the derivative of the amino acid may be an N-acylamino acid comprising a C8 to C22 acyl group, a C9 to C21 acyl group, a C10 to C20 acyl group, a C11 to C19 acyl group, or a C12 to C18 acyl group.

[0025] In one embodiment, the salt may be at least one selected from a lithium salt, a sodium salt, a potassium salt, a lumidium salt, and a cesium salt.

[0026] In one embodiment, the surface-coated powder may be a powder having a surface coated with one or more selected from sodium cocoyl glutamate, disodium stearoyl glutamate, stearoyl glutamic acid, and lauroyl lysine.

[0027] In one embodiment, the powder may be mica, and specifically, the powder may be synthetic mica.

[0028] In one embodiment, the synthetic mica may be one or more selected from magnesium / potassium / silicon / fluoride / hydroxide / oxide, synthetic fluorophlogopite, and magnesium potassium fluorosilicate.

[0029] In one embodiment, the surface coating powder may be included in an amount of 0.5 to 15 wt% based on the total weight of the composition. Specifically, the surface coating powder may be included in an amount of 0.5 wt% or more, 1 wt% or more, 1.2 wt% or more, 1.4 wt% or more, 1.6 wt% or more, 1.8 wt% or more, 2 wt% or more, 2.2 wt% or more, 2.4 wt% or more, 2.6 wt% or more, 2.8 wt% or more, 3 wt% or more, 4 wt% or more, 5 wt% or more, 6 wt% or more, 7 wt% or more, 8 wt% or more, 9 wt% or more, 10 wt% or more, 11 wt% or more, 12 wt% or more, 13 wt% or more, or 14 wt% or more, based on the total weight of the composition, and further, the surface coating powder may be included in an amount of 15 wt% or less, 14 wt% or less, 13 wt% or less, 12 wt% or less, 11 wt% or less, 10 wt% or less, 9 wt% or less, 8 wt% or less, based on the total weight of the composition. It may be included in an amount of 7 wt% or less, 6 wt% or less, 5 wt% or less, 4 wt% or less, 3 wt% or less, 2.8 wt% or less, 2.6 wt% or less, 2.4 wt% or less, 2.2 wt% or less, 2 wt% or less, 1.8 wt% or less, 1.6 wt% or less, 1.4 wt% or less, 1.2 wt% or less, 1 wt% or less, or 0.8 wt% or less.

[0030] In one embodiment, the weight ratio value of the cross-linked silicone to the surface coating powder (cross-linked silicone / surface coating powder) may be greater than 0.1 and less than or equal to 2. Specifically, the weight ratio value of the cross-linked silicone to the surface coating powder (cross-linked silicone / surface coating powder) may be greater than 0.1, 0.2 or more, 0.3 or more, 0.4 or more, 0.5 or more, 0.6 or more, 0.7 or more, 0.8 or more, 0.9 or more, 1 or more, 1.1 or more, 1.2 or more, 1.3 or more, 1.4 or more, or 1.5 or more, and further, the weight ratio value of the cross-linked silicone to the surface coating powder (cross-linked silicone / surface coating powder) may be 1.6 or less, 1.5 or less, 1.4 or less, 1.3 or less, 1.2 or less, 1.1 or less, 1 or less, 0.9 or less, 0.8 or less, 0.7 or less, 0.6 or less, 0.5 or less, 0.4 or less, 0.3 or less, or 0.2 or less.

[0031] In one embodiment, the total content of the cross-linked silicone and the surface coating powder may be 1 to 15 wt% based on the total weight of the composition. Specifically, the total content of the cross-linked silicone and the surface coating powder may be 1 wt% or more, 2 wt% or more, 3 wt% or more, 4 wt% or more, 5 wt% or more, 6 wt% or more, 7 wt% or more, 8 wt% or more, 9 wt% or more, 10 wt% or more, 11 wt% or more, 12 wt% or more, 13 wt% or more, or 14 wt% or more, based on the total weight of the composition, and further, the total content of the cross-linked silicone and the surface coating powder may be 15 wt% or less, 14 wt% or less, 13 wt% or less, 12 wt% or less, 11 wt% or less, 10 wt% or less, 9 wt% or less, 8 wt% or less, 7 wt% or less, 6 wt% or less, 5 wt% or less, 4 wt% or less, 3 wt% or less, or 2 wt% or less based on the total weight of the composition.

[0032] In one embodiment, the cosmetic composition may further comprise a volatile silicone oil.

[0033] In one embodiment, the volatile silicone oil may be an oil that reduces in mass by 10% or more or 30% or more within 24 hours at a temperature of 30°C.

[0034] In one embodiment, the volatile silicone oil may be at least one selected from methyl trimethicone, trisiloxane, and cyclopentasiloxane. More specifically, the volatile silicone oil may be at least one selected from methyl trimethicone and trisiloxane.

[0035] In one embodiment, the volatile silicone oil may be included in an amount of 3 to 20 wt% based on the total weight of the composition. Specifically, the volatile silicone oil may be included in an amount of 3 wt% or more, 5 wt% or more, 7 wt% or more, 8 wt% or more, 9 wt% or more, 10 wt% or more, 11 wt% or more, 12 wt% or more, 13 wt% or more, 14 wt% or more, 15 wt% or more, 16 wt% or more, 17 wt% or more, 18 wt% or more, or 19 wt% or more based on the total weight of the composition, and further, the volatile silicone oil may be included in an amount of 20 wt% or less, 19 wt% or less, 18 wt% or less, 17 wt% or less, 16 wt% or less, 15 wt% or less, 14 wt% or less, 13 wt% or less, 12 wt% or less, 11 wt% or less, 10 wt% or less, 9 wt% or less, 8 wt% or less, 7 wt% or less, or 5 wt% or less based on the total weight of the composition.

[0036] In one embodiment, the cosmetic composition may be water in silicone (w / s).

[0037] In one embodiment, the cosmetic composition may be for skin makeup.

[0038]

[0039] The present invention may provide, as an example, the following embodiments.

[0040] The first embodiment can provide a cosmetic composition comprising an alkyl glyceryl ether modified silicone, a cross-linked silicone, and a surface coating powder.

[0041] A second embodiment can provide a cosmetic composition in which, in the first embodiment, the alkyl glyceryl ether modified silicone is glyceryl undecyl dimethicone (GUD).

[0042] A third embodiment can provide a cosmetic composition, wherein in at least one of the first embodiment and the second embodiment, the alkyl glyceryl ether modified silicone is included in an amount of 0.05 to 10 wt% based on the total weight of the composition.

[0043] A fourth embodiment can provide a cosmetic composition according to at least one of the first to third embodiments, wherein the cross-linked silicone is a dimethicone crosspolymer.

[0044] A fifth embodiment can provide a cosmetic composition, wherein in at least one of the first to fourth embodiments, the cross-linked silicone is included in an amount of 0.5 to 10 wt% based on the total weight of the composition.

[0045] The sixth embodiment can provide a cosmetic composition in which, in one or more of the first to fifth embodiments, the surface-coated powder is a powder whose surface is coated with an amino acid, a derivative of the amino acid, a salt of the amino acid, or a salt of a derivative of the amino acid.

[0046] The seventh embodiment can provide a cosmetic composition according to at least one of the first to sixth embodiments, wherein the amino acid is glutamate or lysine.

[0047] The eighth embodiment can provide a cosmetic composition according to at least one of the first to seventh embodiments, wherein the derivative of the amino acid is an N-acylamino acid containing a C8 to C22 acyl group.

[0048] The ninth embodiment can provide a cosmetic composition according to at least one of the first to eighth embodiments, wherein the salt is at least one selected from a lithium salt, a sodium salt, a potassium salt, a lumidium salt, and a cesium salt.

[0049] The tenth embodiment can provide a cosmetic composition, wherein in one or more of the first to ninth embodiments, the surface-coated powder is a powder having a surface coated with one or more selected from sodium cocoyl glutamate, disodium stearoyl glutamate, stearoyl glutamic acid, and lauroyl lysine.

[0050] The eleventh embodiment can provide a cosmetic composition according to at least one of the first to tenth embodiments, wherein the surface coating powder is included in an amount of 0.5 to 15 wt% based on the total weight of the composition.

[0051] The 12th embodiment can provide a cosmetic composition in which, in at least one of the first to eleventh embodiments, the weight ratio value of the cross-linked silicone to the surface coating powder is greater than 0.1 and less than or equal to 1.6.

[0052] The 13th embodiment can provide a cosmetic composition according to at least one of the first to 12th embodiments, wherein the total content of the cross-linked silicone and the surface coating powder is 1 to 15 wt% based on the total weight of the composition.

[0053] The 14th embodiment can provide a cosmetic composition further comprising a volatile silicone oil in at least one of the first to 13th embodiments.

[0054] The 15th embodiment can provide a cosmetic composition according to at least one of the first to fourteenth embodiments, wherein the volatile silicone oil is at least one selected from methyl trimethicone, trisiloxane, and cyclopentasiloxane.

[0055] The 16th embodiment can provide a cosmetic composition according to at least one of the first to fifteenth embodiments, wherein the volatile silicone oil is included in an amount of 3 to 20 wt% based on the total weight of the composition.

[0056] The 17th embodiment can provide a cosmetic composition that is water in silicone (w / s) in at least one of the first to sixteenth embodiments.

[0057] The 18th embodiment can provide a cosmetic composition for skin makeup according to one or more of the first to seventeenth embodiments.

[0058]

[0059] Hereinafter, the present invention will be described in more detail through examples and experimental examples. However, these examples and experimental examples are provided merely to facilitate understanding of the present invention, and the scope of the present invention is not limited to these examples and experimental examples. Modifications, substitutions, and insertions commonly known in the art may be performed, and such modifications are also included within the scope of the present invention.

[0060]

[0061] [Examples and Comparative Examples] Preparation of Makeup Composition

[0062] Makeup cosmetic compositions of Examples 1 to 3 and Comparative Examples 1 to 6 were prepared according to the compositions shown in Table 1 below. Specifically, the water part components (water, butylene glycol, 1,2-hexanediol, and sodium chloride) were dissolved using an agitator, added to the remaining oil part components, and then dispersed and emulsified using a homogenizer to prepare the compositions.

[0063] Comparative Example Example 1234561234cyclopentasiloxane6.56.54313.57.552.55.5methyl trimethicone5555555510trisiloxane333333333.5dimethicone5555555555DIISOSTEARYL MALATE5555555555Homosalate6666666666LAURYL POLYGLYCERYL-3 POLYDIMETHYLSILOXYETHYL DIMETHICONE5555555555GLYCERYL UNDECYL DIMETHICONE1111111111dimethicone crosspolymer51.521.51.522Mica3 Amino acid coating mica (Mica*lauroyl lysine*sodium cocoyl glutamate)3315231022Titanium dioxide15151510151515151515Iron Oxide2221.5222222silica5553555355DISTEARDIMONIUM HECTORITE0.50.50.50.50.50.50.50.50.50.5water303027.527.530323027.53030butylene glycol55555555551,2-hexanediol2222222222Sodium chloride1111111111Total100100100100100100100100100100

[0064]

[0065] [Experimental Example 1] Viscosity Evaluation

[0066] The viscosity of the makeup compositions of Examples 1 to 3 and Comparative Examples 1 to 4 and 6 was measured using a Rheometer (Brookfield; No. 64 spindle, 12 rpm, 1 min) while stored at 30°C for 30 days, and the results are shown in Fig. 1 (x-axis: day, y-axis: cps).

[0067] From the results of FIG. 1, it was confirmed that the makeup cosmetic compositions of Examples 1 to 4 according to one embodiment of the present invention had viscosity values ​​of approximately 10,000 to 25,000 cps, were light in feel, had good spreadability, and converged to a stable level without significant change over time, ensuring formulation stability. On the other hand, in the case of Comparative Example 6, which did not include general powder (mica), amino acid-coated mica, and cross-linked silicone, the high viscosity made the feel heavy in feel, and the viscosity decreased significantly over time, making the formulation stability unstable. In the case of Comparative Examples 1, 2, and 5, which did not include cross-linked silicone and only included general powder (mica) or amino acid-coated mica, the viscosity decreased rapidly over time, making the formulation stability unstable. In the case of Comparative Example 3, in which the weight ratio of cross-linked silicone to amino acid-coated mica exceeded 1.6, the viscosity was formed to be excessively high, making the feel heavy in feel.

[0068]

[0069] [Experimental Example 2] Formulation Stability Evaluation

[0070] In order to evaluate the formulation stability of the makeup compositions of Comparative Examples 4 to 6, the high-temperature stability was evaluated by checking the condition of the contents after storing them at 55°C for one week, and the harshness stability was evaluated by shaking the contents under temperature change conditions of -10°C to 45°C using a stirrer (J-MPI, Jisico, 180 rpm) and storing them for three days, checking the condition of the contents, and the results are shown in Figures 2a to 2i. Specifically, FIG. 2a shows the results of the high-temperature stability evaluation of Comparative Example 4, FIG. 2b shows the results of the severe stability evaluation of Comparative Example 5, FIG. 2c shows the results of the severe stability evaluation of Comparative Example 6, FIGS. 2d and 2e show the results of the high-temperature stability and severe stability evaluation of Example 1, respectively, FIGS. 2f and 2g show the results of the high-temperature stability and severe stability evaluation of Example 3, respectively, and FIGS. 2h and 2i show the results of the high-temperature stability and severe stability evaluation of Example 4, respectively.

[0071] From the results of FIGS. 2a to 2c, in the case of Comparative Example 4, where the weight ratio of cross-linked silicone to amino acid-coated mica was 0.1 or less, a relatively low and stable viscosity value was formed according to the results of Experimental Example 1 in FIG. 1, but it was confirmed that the layers were separated at high temperatures and the stability was greatly reduced, and in the case of Comparative Example 5 containing only cyclopentasiloxane and Comparative Example 6 containing no general powder (mica), amino acid-coated mica, or cross-linked silicone, banding was observed, confirming that the formulation stability was greatly reduced. On the other hand, from the results of FIGS. 2d to 2i, it was confirmed that in the case of Examples 1, 3, and 4, no banding occurred and the formulation stability was very excellent both in high temperatures and harsh environments.

[0072]

[0073] [Experimental Example 3] Evaluation of durability and anti-smudging

[0074] The makeup compositions of Examples 1 and 3 and Comparative Examples 3, 5 and 6 were evaluated for durability and anti-smudging effects, and the results are shown in Figs. 3a to 3d. Specifically, each composition was applied to a 5 cm x 5 cm area of ​​white artificial leather, dried at 40°C for 1 hour (Fig. 3a), and then wiped once with a face tissue and a disposable wrap (Fig. 3b), and the degree of smudging on each of the wiped face tissue and disposable wrap was checked (Fig. 3c: face tissue, Fig. 3d: disposable wrap).

[0075] From the results of FIGS. 3a to 3d, it was confirmed that Examples 1 and 3 according to one embodiment of the present invention had excellent durability and almost no smudging, whereas Comparative Examples 3, 5, and 6 had poor durability and easily smudging.

[0076] In addition, the color before and after wiping once with a face tissue was measured using a colorimeter, and the difference value (dE) was calculated, and the results are shown in Table 2 below.

[0077] Example 1 Example 3 Comparative Example 3 Comparative Example 5 Comparative Example 6 dE0.570.118.78.15.7

[0078] From the results in Table 2 above, it can be confirmed that in the case of Examples 1 and 3 according to one embodiment of the present invention, the dE value indicating the color difference before and after tissue-off is very low, so that the durability is excellent and the smudging is almost minimal, whereas in the case of Comparative Examples 3, 5 and 6, the dE value is significantly high, so that the durability is poor and it can be confirmed that a very large amount is easily smudging with just one tissue-off.

Claims

1. A cosmetic composition comprising alkyl glyceryl ether modified silicone, cross-linked silicone and surface coating powder.

2. A cosmetic composition according to claim 1, wherein the alkyl glyceryl ether modified silicone is glyceryl undecyl dimethicone (GUD).

3. A cosmetic composition according to claim 1, wherein the alkyl glyceryl ether modified silicone is included in an amount of 0.05 to 10 wt% based on the total weight of the composition.

4. A cosmetic composition according to claim 1, wherein the cross-linked silicone is a dimethicone crosspolymer.

5. A cosmetic composition according to claim 1, wherein the cross-linked silicone is contained in an amount of 0.5 to 10 wt% based on the total weight of the composition.

6. A cosmetic composition according to claim 1, wherein the surface-coated powder is a powder having a surface coated with an amino acid, a derivative of the amino acid, a salt of the amino acid, or a salt of a derivative of the amino acid.

7. A cosmetic composition according to claim 6, wherein the amino acid is glutamate or lysine.

8. A cosmetic composition according to claim 6, wherein the derivative of the amino acid is an N-acylamino acid containing a C8 to C22 acyl group.

9. A cosmetic composition in claim 6, wherein the salt is at least one selected from lithium salt, sodium salt, potassium salt, lumidium salt, and cesium salt.

10. A cosmetic composition according to claim 6, wherein the surface-coated powder is a powder having a surface coated with at least one selected from sodium cocoyl glutamate, disodium stearoyl glutamate, stearoyl glutamic acid, and lauroyl lysine.

11. A cosmetic composition according to claim 1, wherein the surface coating powder is included in an amount of 0.5 to 15 wt% based on the total weight of the composition.

12. A cosmetic composition in which the weight ratio value of the cross-linked silicone to the surface coating powder in the first paragraph is greater than 0.1 and less than or equal to 1.

6.

13. A cosmetic composition according to claim 1, wherein the total content of the cross-linked silicone and the surface coating powder is 1 to 15 wt% based on the total weight of the composition.

14. A cosmetic composition according to claim 1, further comprising a volatile silicone oil.

15. A cosmetic composition according to claim 14, wherein the volatile silicone oil is at least one selected from methyl trimethicone, trisiloxane, and cyclopentasiloxane.

16. A cosmetic composition according to claim 14, wherein the volatile silicone oil is contained in an amount of 3 to 20 wt% based on the total weight of the composition.

17. A cosmetic composition according to claim 1, which is a water-in-silicone (w / s) type.

18. A cosmetic composition for skin makeup according to claim 1.

Citation Information

Patent Citations

  • Lipstick composition

    JP2003171233A

  • Makeup cosmetic

    JP2007277108A

  • Aerosol cosmetic

    JP2017125003A

  • Labial cosmetic

    JP2022190400A

  • oily cosmetics

    JP3160427B2