Topical skin preparations

A topical skin preparation combining specific plant materials with niacin and glycyrrhizic acid addresses the limitations of conventional preparations by enhancing collagenase and tyrosinase inhibition, providing effective anti-aging, anti-inflammatory, and whitening effects with improved skin compatibility and reduced stickiness.

JP2026092073APending Publication Date: 2026-06-04TOYO SHINYAKU KK
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Patent Information

Application Number
JP2026056696
Authority / Receiving Office
JP · JP
Patent Type
Applications
Current Assignee / Owner
Filing Date
2026-03-30
Publication Date
2026-06-04

AI Technical Summary

Technical Problem

Conventional topical preparations containing plant-derived ingredients face issues with insufficient cosmetic and pharmacological effects, poor absorption, skin stickiness, and high manufacturing costs due to low activity concentration, and combining these with non-plant-derived ingredients does not always yield effective results.

Method used

A topical skin preparation combining specific plant materials such as rice, rosemary, sage, mugwort, and Job's tears with niacin and glycyrrhizic acid to enhance collagenase and tyrosinase inhibition, providing anti-aging, anti-inflammatory, and whitening effects while improving skin firmness and elasticity.

Benefits of technology

The preparation effectively inhibits collagenase and tyrosinase, reduces skin stickiness, improves skin compatibility, and enhances firmness and elasticity, offering superior cosmetic effects with a low concentration of plant materials.

✦ Generated by Eureka AI based on patent content.

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Abstract

To provide a topical skin preparation that has excellent effects in preventing and improving wrinkles, anti-aging, anti-inflammatory, pore tightening, whitening, and improving firmness and elasticity, while reducing skin stickiness and being easily absorbed by the skin. [Solution] A topical skin preparation containing specific plant materials, niacin, and glycyrrhizic acid.
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Description

Technical Field

[0001] The present invention relates to an external preparation for skin containing specific plant materials, niacin, and glycyrrhizic acid.

Background Art

[0002] Conventionally, in the beauty industry and the like, research has been conducted to protect and maintain the body's collagen. The epidermis of the skin consists of the stratum corneum, stratum granulosum, stratum spinosum, stratum basale, and basement membrane, and the dermis is composed of fibroblasts and extracellular matrices such as elastin and collagen that support the skin structure outside these cells. Collagen is the main component of the skin and is an elastic fibrous protein. If the amount of collagen produced is normal, the skin will be smooth without spots or dullness, and elastic blood vessels will be formed. However, collagen is decomposed in the body by the action of collagenase.

[0003] Collagenase is activated by aging, ultraviolet rays, etc. When collagen is decomposed by activated collagenase, the elasticity of the skin decreases, and the keratin begins to abnormally exfoliate. Therefore, the skin loses firmness, elasticity, and luster, and exhibits aging symptoms such as roughness and wrinkles. Thus, in order to suppress the decomposition of collagen and prevent skin aging, various substances that can be collagenase activity inhibitors have been studied. Among these, representative examples of collagenase activity inhibitors include guava leaves (Patent Document 1), witch hazel extract (Patent Document 2), etc. However, conventional collagenase inhibitors are not always sufficiently effective, and in some cases, effective results have not been obtained when formulated into products.

[0004] Furthermore, the beauty industry has traditionally conducted research on plant-derived ingredients that possess anti-inflammatory, pore-reducing, and whitening effects. Skin color is determined by the type and amount of coloring components, such as melanin, in the epidermis and dermis, but it is controlled by various external and internal factors. When these factors cause excessive melanin production, it leads to inflammation such as localized hyperpigmentation, age spots, and freckles, which becomes a major cosmetic problem. In addition, inflammation caused by excessive melanin production disrupts skin cell turnover, causing skin cells to grow immaturely, resulting in sunken pores, or causing cells and collagen around the pores to proliferate and become raised, creating unevenness in the pores, which is a major cosmetic problem.

[0005] When tyrosinase is activated by factors such as ultraviolet radiation, lack of sleep, and fatigue, this tyrosinase converts the essential amino acid tyrosine into dopaquinone, and the enzymatic or non-enzymatic oxidation of dopaquinone promotes melanin production. Therefore, inhibiting tyrosinase activity is important for anti-inflammatory agents, pore-minimizing agents, and whitening agents. Among these, representative tyrosinase inhibitors include the leaves or extracts of plants of the genus Musa (Patent Document 3) and extracts of plants of the genus Salacia (Patent Document 4). However, conventional tyrosinase inhibitors have not always been sufficiently effective, and in some cases, effective results have not been achieved when incorporated into products.

[0006] Furthermore, topical preparations containing plant-derived cosmetic and medicinal ingredients have traditionally been used to exert cosmetic and pharmacological effects. However, plant-derived ingredients have weak effects, and a problem remains in that they cannot fully provide cosmetic or pharmacological effects when added to topical preparations. In addition, because the activity concentration of plant-derived ingredients in extracts is low, the amount used in topical preparations is often large, which not only affects the feel, texture, color, odor, stability, and physical properties of the preparation, but also increases manufacturing costs.

[0007] Therefore, methods have been proposed to fully utilize the cosmetic and pharmacological effects of plant-derived ingredients or to reduce the amount of plant-derived ingredients used by combining them with non-plant-derived ingredients. For example, one method involves combining an extract from a plant belonging to the genus Bletilla in the orchid family with kojic acid, which allows for sufficient cosmetic effects even with a low concentration of plant-derived ingredients (Patent Document 5). However, conventional topical preparations combining plant-derived ingredients and non-plant-derived ingredients still have problems, such as leaving the skin sticky, being poorly absorbed, and providing an unpleasant feeling when applied to the skin. Furthermore, conventional topical preparations combining plant-derived ingredients and non-plant-derived ingredients are not always sufficiently effective, and in some cases, effective results have not been achieved when incorporated into products. [Prior art documents] [Patent Documents]

[0008] [Patent Document 1] Japanese Patent Application Publication No. 7-291873 [Patent Document 2] Japanese Patent Application Publication No. 8-283133 [Patent Document 3] Japanese Patent Publication No. 2008-056587 [Patent Document 4] Japanese Patent Publication No. 2008-120774 [Patent Document 5] Japanese Patent Publication No. 2002-128654 [Overview of the Initiative] [Problems that the invention aims to solve]

[0009] The object of the present invention is to provide a topical skin preparation that can fully exert cosmetic and pharmacological effects even with a low concentration of plant materials, by combining specific plant materials with components other than specific plant materials. Furthermore, in view of the above circumstances, the present invention aims to provide a topical skin preparation with excellent cosmetic effects such as preventing and improving skin wrinkles and anti-aging, by combining specific plant materials with components other than specific plant materials. Furthermore, in view of the above circumstances, the present invention aims to provide a topical skin preparation with excellent anti-inflammatory, pore-reducing, and whitening effects, by combining specific plant materials with components other than specific plant materials. Furthermore, in view of the above circumstances, the present invention aims to provide a topical skin preparation with excellent cosmetic effects such as reduced skin stickiness, good skin compatibility, improved usability, and improved skin firmness and elasticity, by combining specific plant materials with components other than specific plant materials. [Means for solving the problem]

[0010] The inventors of the present invention conducted diligent research to solve the above problems and, surprisingly, discovered that by including specific plant materials, niacin, and glycyrrhizic acid, it is possible to produce a topical skin preparation that inhibits collagenase and is superior in preventing and improving skin wrinkles and providing anti-aging effects, compared to using only the specific plant materials. Furthermore, they discovered that by including specific plant materials, niacin, and glycyrrhizic acid, it is possible to produce a topical skin preparation that inhibits tyrosinase and is superior in anti-inflammatory, pore-reducing, and whitening effects, compared to using only the specific plant materials. Moreover, they discovered that by including specific plant materials, niacin, and glycyrrhizic acid, it is possible to produce a topical skin preparation that reduces skin stickiness, blends well with the skin, has a superior feel, and is superior in cosmetic effects such as improving skin firmness and elasticity, compared to using only the specific plant materials.

[0011] In other words, the present invention is as follows: [1] A topical skin preparation containing at least one plant material selected from rice, rosemary, sage, mugwort, and Job's tears, as well as niacin and glycyrrhizic acid. [2] A topical skin preparation comprising at least one plant material selected from rice, rosemary, sage, mugwort, and Job's tears, as well as niacin, glycyrrhizic acid, and pine bark extract. [3] A wrinkle preventative and remedy comprising at least one plant material selected from rice, rosemary, sage, mugwort, and Job's tears, as well as niacin and glycyrrhizic acid. [4] An anti-aging agent comprising at least one plant material selected from rice, rosemary, sage, mugwort, and Job's tears, as well as niacin and glycyrrhizic acid. [5] An anti-inflammatory agent comprising at least one plant material selected from rice, rosemary, sage, mugwort, and Job's tears, as well as niacin and glycyrrhizic acid. [6] A pore-minimizing agent containing at least one plant material selected from rice, rosemary, sage, mugwort, and Job's tears, as well as niacin and glycyrrhizic acid. [7] A whitening agent comprising at least one plant material selected from rice, rosemary, sage, mugwort, and Job's tears, as well as niacin and glycyrrhizic acid. [8] A firming and elasticity-enhancing agent containing at least one plant material selected from rice, rosemary, sage, mugwort, and Job's tears, as well as niacin and glycyrrhizic acid. [9] At least one plant material selected from rice, rosemary, sage, mugwort, and Job's tears, as well as a collagenase inhibitor containing niacin and glycyrrhizic acid.

[10] At least one plant material selected from rice, rosemary, sage, mugwort, and Job's tears, as well as a tyrosinase inhibitor containing niacin and glycyrrhizic acid. [Effects of the Invention]

[0012] According to the skin external preparation of the present invention, since it can inhibit collagenase, it can exhibit excellent cosmetic effects in preventing and improving skin wrinkles and anti-aging. Further, according to the skin external preparation of the present invention, since it can inhibit tyrosinase, it can exhibit excellent anti-inflammatory effects, pore shrinking effects, and whitening effects. Further, according to the skin external preparation of the present invention, the stickiness of the skin is reduced, the skin feel is good, it has an excellent usability, and it can exhibit excellent effects in improving and enhancing firmness and elasticity.

Brief Description of the Drawings

[0013] [Figure 1] It is a graph showing the evaluation of collagenase inhibition in Examples 1, 2, 6, and 7. [Figure 2] It is a graph showing the evaluation of collagenase inhibition in Example 3. [Figure 3] It is a graph showing the evaluation of collagenase inhibition in Examples 8 and 9. [Figure 4] It is a graph showing the evaluation of tyrosinase inhibition in Examples 1 and 6. [Figure 5] It is a graph showing the evaluation of tyrosinase inhibition in Examples 7 to 9. [Figure 6] It is a graph showing the evaluation of usability, firmness, and elasticity in Examples 10 to 14.

Modes for Carrying Out the Invention

[0014] The skin external preparation of the present invention is characterized by containing a specific plant material, niacin, and glycyrrhizic acid.

[0015] Hereinafter, the composition of the present invention will be described based on its preferred embodiments.

[0016] <Specific Plant Material> In the present invention, the specific plant material is a general term for rice, rosemary, sage, mugwort, and coix seed. Hereinafter, the specific plants of the present invention will be described in detail.

[0017] <Rice> Rice is a grain belonging to the genus Oryza in the family Poaceae, with the scientific name Oryza sativa. There are no particular restrictions on the type of rice used in this invention, but examples include Japonica and India varieties. There are no particular restrictions on the part of the rice used in this invention, but the hull (paddy rice) is preferred because it can inhibit collagenase and has excellent anti-aging effects, as well as inhibiting tyrosinase and has excellent anti-inflammatory, pore-reducing, and whitening effects, as well as reducing skin stickiness, improving skin compatibility, and having excellent effects in improving firmness and elasticity. Brown rice, with the hull removed from the paddy rice, is more preferred, and the outer layer, embryo, and aleurone layer of brown rice are even more preferred. It is particularly preferred to use rice bran, which is obtained as a by-product when brown rice is milled, and consists of parts such as the pericarp, seed coat, and germ coat.

[0018] In the present invention, various processed rice products can be used, and there are no particular restrictions on the processing form. However, pulverized products, pulverized powder, extracts, and extracted powders are preferred because they can inhibit collagenase, providing excellent wrinkle prevention and improvement and anti-aging effects; they can inhibit tyrosinase, providing excellent anti-inflammatory, pore reduction, and whitening effects; and they can reduce skin stickiness, improve skin compatibility, and provide excellent firmness and elasticity improvement effects. Pulverized powder, extracts, and extracted powders are preferred, with extracts being particularly preferred. Solvents used for extraction include organic solvents such as water, methanol, ethanol, isopropanol, acetone, 1,3-butylene glycol, ethylene glycol, propylene glycol, glycerin, ethyl acetate, diethyl ether, and hexane; acidic aqueous solutions such as acetic acid, citric acid, or aqueous solutions thereof; or mixed solvents thereof. These solvents may be used individually or in combination of two or more. In the present invention, when using rice extract or extract powder, the rice extraction solvent is preferably water, ethanol, 1,3-butylene glycol, ethylene glycol, glycerin, or a mixture thereof, more preferably water, ethanol, 1,3-butylene glycol, or a mixture thereof, and particularly preferably a mixture of 1,3-butylene glycol and water. This is because the solvent can inhibit collagenase, providing excellent wrinkle prevention and improvement, and anti-aging effects; it can inhibit tyrosinase, providing excellent anti-inflammatory, pore reduction, and whitening effects; and it can reduce skin stickiness, improve skin compatibility, and provide excellent firmness and elasticity improvement effects.

[0019] <Rosemary> Rosemary is an evergreen shrub belonging to the genus Rosmarinus in the Lamiaceae family, with the Japanese name Mannenrou and scientific name Rosmarinus officinalis L. It is used as a spice, seasoning, fragrance, herb, and crude drug. In this invention, any part of the rosemary plant may be used, and there are no particular restrictions. However, flowers, leaves, and branches are preferred, with flowers and leaves being more preferred, and leaves being particularly preferred, because they can inhibit collagenase and have excellent anti-aging effects, as well as inhibit tyrosinase and have excellent anti-inflammatory, pore-reducing, and whitening effects. Furthermore, they can reduce skin stickiness, improve skin absorption, and have excellent effects in improving firmness and elasticity.

[0020] In the present invention, various rosemary processed products can be used, and there are no particular restrictions on the processing form. However, dried products, pulverized products, pulverized powder, juice, juice powder, extracts, and extract powders are preferred because they can inhibit collagenase and have excellent anti-aging and wrinkle prevention / improvement effects, and because they can inhibit tyrosinase and have excellent anti-inflammatory, pore-reducing, and whitening effects, and furthermore, they can reduce skin stickiness, improve skin absorption, and have excellent effects in improving firmness and elasticity. Juice and extracts are more preferred, and extracts are particularly preferred. Solvents used for extraction include organic solvents such as water, methanol, ethanol, isopropanol, acetone, 1,3-butylene glycol, ethylene glycol, propylene glycol, glycerin, ethyl acetate, diethyl ether, and hexane, as well as acidic aqueous solutions such as acetic acid, citric acid, or aqueous solutions thereof, or mixed solvents thereof. These solvents may be used individually or in combination of two or more. In the present invention, when using rosemary extract or extract powder, the rice extraction solvent is preferably ethanol, 1,3-butylene glycol, ethylene glycol, glycerin, or a mixture of these with water, more preferably ethanol, 1,3-butylene glycol, or a mixture of these with water, and particularly preferably a mixture of 1,3-butylene glycol and water. This is because the solvent can inhibit collagenase, providing excellent wrinkle prevention and improvement, and anti-aging effects; it can inhibit tyrosinase, providing excellent anti-inflammatory, pore reduction, and whitening effects; and it can reduce skin stickiness, improve skin absorption, and provide excellent firmness and elasticity improvement effects.

[0021] <Sage> Sage is a perennial herb or evergreen shrub belonging to the genus Salvia in the Lamiaceae family, and is used as a spice, seasoning, fragrance, herb, and crude drug. There are no particular restrictions on the sage used in this invention, but sage with the Japanese name Yakuyou Salvia and scientific name Salvia officinalis, or clary sage with the Japanese name Onisarubia and scientific name Salvia sclarea L. can be used. There are no particular restrictions on which part of the sage can be used, whether the whole plant or any part, but flowers, leaves, and branches are preferred, with leaves being particularly preferred, because they can inhibit collagenase, have excellent anti-aging effects, reduce skin stickiness, improve skin absorption, and have excellent effects in improving firmness and elasticity.

[0022] In the present invention, various processed sage products can be used, and there are no particular restrictions on the processing form. However, dried products, pulverized products, pulverized powder, juice, juice powder, extracts, and extract powders are preferred because they can inhibit collagenase, have excellent wrinkle prevention and improvement effects, and anti-aging effects, and can reduce skin stickiness, improve skin compatibility, and have excellent firmness and elasticity improvement effects. Juice and extracts are more preferred, and extracts are particularly preferred. Solvents used for extraction include organic solvents such as water, methanol, ethanol, isopropanol, acetone, 1,3-butylene glycol, ethylene glycol, propylene glycol, glycerin, ethyl acetate, diethyl ether, and hexane, as well as acidic aqueous solutions such as acetic acid, citric acid, or aqueous solutions thereof, or mixed solvents thereof. These solvents may be used individually or in combination of two or more. In the present invention, when using sage extract or extract powder, the solvent for extracting sage is preferably ethanol, 1,3-butylene glycol, ethylene glycol, glycerin, or a mixture of these with water, more preferably ethanol, 1,3-butylene glycol, or a mixture of these with water, and particularly preferably a mixture of 1,3-butylene glycol and water, because it can inhibit collagenase, has excellent anti-aging and wrinkle prevention / improvement effects, and can reduce skin stickiness, improve skin absorption, and has excellent firmness and elasticity improvement effects.

[0023] <Mugwort> Mugwort, scientifically known as Artemisia indica Willd. var. maximowiczii, is a perennial herb belonging to the Asteraceae family and is used as a spice, seasoning, herb, and herbal medicine. There are no particular restrictions on the type of mugwort used in this invention, but examples include Artemisia princeps, Artemisia rupestris, Tarragon, Artemisia nigra, Artemisia capillaris, Artemisia japonica, Artemisia japonica, Artemisia humilis, Artemisia japonica, Artemisia humilis, Artemisia japonica, Artemisia shikotanensis, Artemisia kobomugi, Artemisia rhynchophylla, Artemisia shikotanensis, Artemisia rhynchophylla, Artemisia japonica, Artemisia moniliforme, Artemisia japonica, Artemisia shikotanensis, Artemisia rhynchophylla, Artemisia japonica, Artemisia japonica, Artemisia shikotanensis and Artemisia japonica. In this invention, any part of the mugwort plant may be used, or the entire plant may be used; there are no particular restrictions. However, the flowers, spikes, stems, leaves, branches, rhizomes, roots, and seeds are preferred because they can inhibit collagenase, providing excellent wrinkle prevention and improvement, and anti-aging effects; they can inhibit tyrosinase, providing excellent anti-inflammatory, pore-reducing, and whitening effects; and they can reduce skin stickiness, improve skin absorption, and enhance firmness and elasticity. Stems, leaves, and branches are preferred, with leaves being particularly preferred.

[0024] In the present invention, various processed products of mugwort can be used, and there are no particular restrictions on the processing form. However, dried products, pulverized products, pulverized powder, juice, juice powder, extracts, and extract powders are preferred because they can inhibit collagenase and have excellent anti-aging effects, as well as anti-inflammatory, pore-reducing, and whitening effects, and furthermore, they can reduce skin stickiness, improve skin absorption, and have excellent effects in improving firmness and elasticity. Juice and extracts are more preferred, and extracts are particularly preferred. Solvents used for extraction include organic solvents such as water, methanol, ethanol, isopropanol, acetone, 1,3-butylene glycol, ethylene glycol, propylene glycol, glycerin, ethyl acetate, diethyl ether, and hexane, acidic aqueous solutions such as acetic acid and citric acid, or aqueous solutions thereof, or mixed solvents thereof. These solvents may be used individually or in combination of two or more. In the present invention, when using sage extract or extract powder, the solvent for mugwort extraction is preferably ethanol, 1,3-butylene glycol, ethylene glycol, glycerin, or a mixture of these with water, more preferably ethanol, 1,3-butylene glycol, or a mixture of these with water, and particularly preferably a mixture of 1,3-butylene glycol and water. This is because the solvent can inhibit collagenase, providing excellent wrinkle prevention and improvement, and anti-aging effects; it can inhibit tyrosinase, providing excellent anti-inflammatory, pore-reducing, and whitening effects; and it can reduce skin stickiness, improve skin absorption, and provide excellent firmness and elasticity improvement effects.

[0025] Job's tears Job's tears is a grain belonging to the genus Coix in the grass family, with the scientific name Coix lacryma-jobi var. ma-yuen. In this invention, the whole or any part of the Job's tears may be used, and there are no particular restrictions. However, the seed coat and seeds are preferred because they can inhibit collagenase, have excellent anti-wrinkle prevention and improvement effects, and anti-aging effects; they can inhibit tyrosinase, have excellent anti-inflammatory, pore-reducing, and whitening effects; and they can reduce skin stickiness, improve skin absorption, and have excellent effects in improving firmness and elasticity. In particular, the seeds with the seed coat removed, called coix seed, are preferred.

[0026] In the present invention, various processed products of Job's tears can be used, and there are no particular restrictions on the processing form. However, pulverized products, pulverized powder, extracts, and extracted powders are preferred because they can inhibit collagenase, providing excellent wrinkle prevention and improvement and anti-aging effects; they can inhibit tyrosinase, providing excellent anti-inflammatory, pore reduction, and whitening effects; and they can reduce skin stickiness, improve skin absorption, and provide excellent firmness and elasticity improvement effects. Juices and extracts are more preferred, and extracts are particularly preferred. Solvents used for extraction include organic solvents such as water, methanol, ethanol, isopropanol, acetone, 1,3-butylene glycol, ethylene glycol, propylene glycol, glycerin, ethyl acetate, diethyl ether, and hexane; acidic aqueous solutions such as acetic acid, citric acid, or aqueous solutions thereof; or mixed solvents thereof. These solvents may be used individually or in combination of two or more. In the present invention, when using an extract or powder of Job's tears, the solvent for extracting mugwort is preferably ethanol, 1,3-butylene glycol, ethylene glycol, glycerin, or a mixture of these with water, more preferably ethanol, 1,3-butylene glycol, or a mixture of these with water, and particularly preferably a mixture of 1,3-butylene glycol and water. This is because the solvent can inhibit collagenase, providing excellent wrinkle prevention and improvement, and anti-aging effects; it can inhibit tyrosinase, providing excellent anti-inflammatory, pore reduction, and whitening effects; and it can reduce skin stickiness, improve skin absorption, and provide excellent firmness and elasticity improvement effects.

[0027] In the topical skin preparation of the present invention, a specific plant material may be used alone or in combination of two or more. In the topical skin preparation of the present invention, there is no particular lower limit to the total amount of the specific plant material, but it is preferable that it be 0.00001% by weight or more, more preferably 0.0001% by weight or more, and most preferably 0.001% by weight or more, relative to the total amount of the topical skin preparation, because it can inhibit collagenase and has excellent anti-wrinkle prevention and improvement effects, anti-aging effects, it can inhibit tyrosinase and has excellent anti-inflammatory, pore reduction, and whitening effects, and further, it can reduce skin stickiness, improve skin compatibility, and has excellent effects in improving firmness and elasticity. Furthermore, in the topical skin preparation of the present invention, there is no particular upper limit on the total amount of specific plant materials, but from the standpoint of being able to inhibit collagenase and having excellent anti-aging effects for preventing and improving wrinkles, and being able to inhibit tyrosinase and having excellent anti-inflammatory, pore-reducing, and whitening effects, and further from the standpoint of being able to reduce skin stickiness, improve skin compatibility, and have excellent effects for improving firmness and elasticity, it is preferable that the amount is 10% by weight or less, more preferably 5% by weight or less, and most preferably 1% by weight or less, relative to the total amount of the topical skin preparation.

[0028] <Niacin> Niacin is a general term for nicotinic acid and its derivatives, also known as vitamin B3, and is an essential component for the metabolism of carbohydrates, lipids, and proteins. In this invention, either nicotinic acid or a derivative of nicotinic acid may be used as niacin, and there are no particular restrictions. However, it is preferable to use a derivative of nicotinic acid, and particularly preferable to use niacinamide (nicotinamide), because it can inhibit collagenase, has excellent anti-wrinkle prevention and improvement effects, and anti-aging effects; it can inhibit tyrosinase, has excellent anti-inflammatory, pore-reducing, and whitening effects; and it can reduce skin stickiness, improve skin absorption, and has excellent effects in improving firmness and elasticity. In this invention, one type of niacin may be used alone, or two or more types may be used in combination. Furthermore, the niacin used in this invention may be extracted from natural products or synthesized by known methods.

[0029] Niacinamide, used as niacin in this invention, is a derivative of nicotinic acid, an amide compound of nicotinic acid, and is also called nicotinamide, nicotinamide, or pyridine-3-carboxylic acid. Niacinamide is known to have the effect of protecting the external surface of the human body from pathogens by inducing the secretion of antimicrobial peptides (AMPs) from keratinocytes when applied to the external surface of the human body.

[0030] In the topical skin preparation of the present invention, the lower limit of the amount of niacin to be included is not particularly limited, but it is preferable that it is 0.0005% by weight or more, more preferably 0.005% by weight or more, and most preferably 0.005% by weight or more, relative to the total amount of the topical skin preparation, because it can inhibit collagenase and has excellent anti-wrinkle prevention and improvement effects, anti-aging effects, and because it can inhibit tyrosinase and has excellent anti-inflammatory, pore reduction, and whitening effects, and further, because it can reduce skin stickiness, improve skin compatibility, and have excellent effects in improving firmness and elasticity. Furthermore, in the topical skin preparation of the present invention, there is no particular upper limit to the amount of niacin that can be incorporated. However, because it can inhibit collagenase and has excellent anti-wrinkle prevention and improvement effects, as well as anti-aging effects, and because it can inhibit tyrosinase and has excellent anti-inflammatory, pore-reducing, and whitening effects, and furthermore, because it can reduce skin stickiness, improve skin compatibility, and have excellent effects in improving firmness and elasticity, it is preferable that the amount of niacin be 10% by weight or less, more preferably 5% by weight or less, and most preferably 1% by weight or less, relative to the total amount of the topical skin preparation.

[0031] <Glycyrrhizic acid> Glycyrrhizic acid is a type of triterpene glycoside and is a component found in the roots of licorice. In the present invention, any of glycyrrhizic acid, its derivatives, or salts thereof may be used as the glycyrrhizic acid. Examples of glycyrrhizic acid include β-glycyrrhizic acid. Examples of glycyrrhizic acid derivatives include dipotassium glycyrrhizate, monoammonium glycyrrhizate, and stearyl glycyrrhetinate. There are no particular restrictions on the glycyrrhizic acid used in the present invention, but it is preferable to use a glycyrrhizic acid derivative, and particularly preferable to use dipotassium glycyrrhizate, because it can inhibit collagenase and has excellent anti-aging effects, as well as inhibiting tyrosinase and has excellent anti-inflammatory, pore-reducing, and whitening effects, and furthermore, it can reduce skin stickiness, improve skin compatibility, and has excellent effects in improving firmness and elasticity. The glycyrrhizic acid of the present invention may be used alone or in combination of two or more types. Furthermore, the glycyrrhizic acid used in this invention can be extracted from natural products or synthesized by known methods.

[0032] Dipotassium glycyrrhizate, used as glycyrrhizic acid in this invention, is a derivative of glycyrrhizic acid and is also called dipotassium glycyrrhizate, glycyrrhizic acid 2K, glycyrrhizic acid K2, or glycynon K2. Dipotassium glycyrrhizate is known to have hair growth and hair nourishment effects when applied to the scalp.

[0033] In the topical skin preparation of the present invention, the lower limit of the amount of glycyrrhizic acid is not particularly limited, but it is preferable that it is 0.00001% by weight or more, more preferably 0.0005% by weight or more, and most preferably 0.0001% by weight or more, relative to the total amount of the topical skin preparation, because it can inhibit collagenase and has excellent anti-wrinkle prevention and improvement effects, anti-aging effects, and can inhibit tyrosinase and has excellent anti-inflammatory, pore reduction, and whitening effects, and further, because it can reduce skin stickiness, improve skin absorption, and has excellent effects in improving firmness and elasticity. Furthermore, in the topical skin preparation of the present invention, there is no particular upper limit to the amount of glycyrrhizic acid that can be incorporated. However, because it can inhibit collagenase and has excellent anti-wrinkle prevention and improvement effects, as well as anti-aging effects, and because it can inhibit tyrosinase and has excellent anti-inflammatory, pore-reducing, and whitening effects, and furthermore, because it can reduce skin stickiness, improve skin absorption, and have excellent effects in improving firmness and elasticity, it is preferable that the amount is 10% by weight or less, more preferably 5% by weight or less, and most preferably 1% by weight or less, relative to the total amount of the topical skin preparation.

[0034] In the topical skin preparation of the present invention, the lower limit of the ratio of glycyrrhizic acid to niacin is not particularly limited, but it is preferable that the ratio is 0.0001% by weight or more, more preferably 0.001% by weight or more, and most preferably 0.01% by weight or more, relative to 100% by weight of niacin, because it can inhibit collagenase and has excellent anti-wrinkle prevention and improvement effects, anti-aging effects, and because it can inhibit tyrosinase and has excellent anti-inflammatory, pore reduction, and whitening effects, and further, because it can reduce skin stickiness, improve skin absorption, and have excellent effects in improving firmness and elasticity. Furthermore, in the topical skin preparation of the present invention, there is no particular upper limit to the ratio of glycyrrhizic acid to niacin, but from the standpoint of being able to inhibit collagenase and having excellent anti-aging effects for preventing and improving wrinkles, and being able to inhibit tyrosinase and having excellent anti-inflammatory, pore-reducing, and whitening effects, and further from being able to reduce skin stickiness, improve skin absorption, and have excellent effects for improving firmness and elasticity, it is preferable that the ratio is 200% by weight or less, more preferably 100% by weight or less, and most preferably 20% by weight or less, relative to 100% by weight of niacin.

[0035] In the topical skin preparation of the present invention, the ratio of specific plant materials to niacin and glycyrrhizic acid is not particularly limited, but from the standpoint of being able to inhibit collagenase and having excellent anti-aging effects for preventing and improving wrinkles, and being able to inhibit tyrosinase and having excellent anti-inflammatory, pore-reducing, and whitening effects, and further from being able to reduce skin stickiness, improve skin compatibility, and have excellent effects for improving firmness and elasticity, a ratio of 1:0.005 to 20 is preferred, 1:0.05 to 10 is more preferred, and 1:0.5 to 5 is most preferred, when the total amount of niacin and glycyrrhizic acid is set to 1.

[0036] In the topical skin preparation of the present invention, the lower limit of the total amount of the specific plant material, niacin, and glycyrrhizic acid is not particularly limited, but it is preferable that the amount is 0.0005% by weight or more, more preferably 0.005% by weight or more, and most preferably 0.005% by weight or more, relative to the total amount of the topical skin preparation, because it can inhibit collagenase and has excellent anti-wrinkle prevention and improvement effects, anti-aging effects, and it can inhibit tyrosinase and has excellent anti-inflammatory, pore reduction, and whitening effects, and further, it can reduce skin stickiness, improve skin compatibility, and have excellent effects in improving firmness and elasticity. Furthermore, in the topical skin preparation of the present invention, there is no particular upper limit on the total amount of specific plant materials, niacin, and glycyrrhizic acid. However, from the standpoint of being able to inhibit collagenase and having excellent anti-aging effects such as preventing and improving wrinkles, and being able to inhibit tyrosinase and having excellent anti-inflammatory, pore-reducing, and whitening effects, and further from being able to reduce skin stickiness, improve skin compatibility, and have excellent effects in improving firmness and elasticity, it is preferable that the total amount of these materials be 10% by weight or less, more preferably 5% by weight or less, and most preferably 0.5% by weight or less.

[0037] <pine bark> In the present invention, it is preferable to incorporate pine bark. Examples of pine bark raw materials used in the present invention include French maritime pine (Pinus Martima), larch, Japanese black pine, Japanese red pine, Japanese white pine, Japanese white pine, Korean pine, Japanese stone pine, Ryukyu pine, Japanese white pine, longleaf pine, and Japanese white pine. Among these, French maritime pine is preferred.

[0038] In the present invention, various processed products of pine bark can be used, and there are no particular restrictions on the processing form. However, pulverized products, pulverized powders, extracts, and extract powders are preferred because they can inhibit collagenase and have excellent anti-aging and anti-wrinkle prevention and improvement effects, and they can inhibit tyrosinase and have excellent anti-inflammatory, pore-reducing, and whitening effects. Sap and extracts are more preferred, and extracts are particularly preferred. When using pine bark extract, the obtained extract may be used as is, or it may be concentrated or dried as needed and used in liquid, paste, or powder form. In addition, commercially available pine bark extracts can be used; for example, pine bark extract manufactured by Toyo Shinyaku Co., Ltd. can be used.

[0039] The pine bark used in this invention contains proanthocyanidins as one of its main components. Proanthocyanidins are a group of compounds consisting of condensed polymers with a degree of polymerization of 2 or more, in which flavan-3-ol and / or flavan-3,4-diol are constituent units.

[0040] The pine bark used in the present invention preferably contains a condensate polymer with a degree of polymerization of 2 or more as a proanthocyanidin. In particular, proanthocyanidins containing a large amount of a condensate polymer with a low degree of polymerization are preferred. Examples of low condensate polymers include condensate polymers with a degree of polymerization of 2 to 30 (2 to 30-mers), condensate polymers with a degree of polymerization of 2 to 10 (2 to 10-mers) are preferred, and condensate polymers with a degree of polymerization of 2 to 4 (2 to 4-mers) are even more preferred. In this specification, polymers with a degree of polymerization of 2 to 4 are referred to as OPC (Oligomeric proanthocyanidin). The pine bark used in the present invention preferably contains 20% by mass or more of OPC, more preferably 30% by mass or more, and even more preferably 40% by mass or more.

[0041] In the present invention, when pine bark extract is used, it is obtained by extracting pine bark with water or an organic solvent. When water is used for extraction, warm water or hot water is preferably used. When an organic solvent is used for extraction, organic solvents that are permissible in the manufacture of food or pharmaceuticals, such as methanol, ethanol, 1-propanol, 2-propanol, 1-butanol, 2-butanol, butane, acetone, hexane, cyclohexane, propylene glycol, aqueous ethanol, and aqueous propylene glycol, are preferably used. These water and organic solvents may be used alone or in combination of two or more solvents. In particular, water, ethanol, aqueous ethanol, etc., are preferably used.

[0042] There are no particular restrictions on the method for extracting pine bark extract from pine bark, but extraction methods such as heated extraction or supercritical fluid extraction can be used. Multiple extraction methods may be combined in the extraction method for pine bark extract.

[0043] In the topical skin preparation of the present invention, the lower limit of the amount of pine bark extract is not particularly limited, but from the standpoint of being able to inhibit collagenase and thus having excellent wrinkle prevention and improvement effects and anti-aging effects, and from the standpoint of being able to inhibit tyrosinase and thus having excellent anti-inflammatory, pore reduction, and whitening effects, it is preferably 0.000005% by weight or more, more preferably 0.00001% by weight or more, and most preferably 0.00005% by weight or more, relative to the total amount of the topical skin preparation. Furthermore, in the topical skin preparation of the present invention, the upper limit of the amount of pine bark extract is not particularly limited, but from the standpoint of being able to inhibit collagenase and thus having excellent wrinkle prevention and improvement effects and anti-aging effects, and from the standpoint of being able to inhibit tyrosinase and thus having excellent anti-inflammatory, pore reduction, and whitening effects, it is preferably 20% by weight or less, more preferably 10% by weight or less, and most preferably 5% by weight or less, relative to the total amount of the topical skin preparation.

[0044] In the topical skin preparation of the present invention, the ratio of pine bark extract to the total amount of specific plant material, niacin, and glycyrrhizic acid is not particularly limited. However, since it can inhibit collagenase and has excellent anti-wrinkle prevention and improvement effects, as well as anti-aging effects, and since it can inhibit tyrosinase and has excellent anti-inflammatory, pore-reducing, and whitening effects, a ratio of 1:0.00001 to 50 is preferred, 1:0.00005 to 35 is more preferred, and 1:0.0001 to 25 is most preferred, when the total amount of specific plant material, niacin, and glycyrrhizic acid is set to 1.

[0045] The topical skin preparation of the present invention is useful for improving skin wrinkles, anti-aging, anti-inflammatory, pore-tightening, and whitening, and can be suitably used in topical skin preparations such as cosmetics, quasi-drugs, and topical pharmaceuticals.

[0046] The topical skin preparation of the present invention may contain other components besides the components of the present invention, as needed. Other components besides the components of the present invention may include, for example, one or more components commonly used in topical skin preparations, such as other active ingredients, preservatives, pH adjusters, oils and fats, fragrances, colorants, antioxidants, antibacterial and antifungal agents, alcohols, surfactants such as nonionic surfactants, anionic surfactants, cationic surfactants, and amphoteric surfactants, inorganic salts, lubricants, solvents, and purified water. The soluble microneedle formulation of the present invention preferably contains purified water in terms of excellent moldability and solubility.

[0047] The following describes some representative components other than the components of the present invention that are contained in the topical skin preparation of the present invention.

[0048] The active ingredients contained in the topical skin preparation of the present invention are not particularly limited, and drugs used in cosmetics, quasi-drugs, topical pharmaceuticals, etc., as well as specific plant materials and plants other than pine bark, can be used depending on the purpose. Typical examples include anti-inflammatory agents such as mefenamic acid, phenylbutazone, indomethacin, ibuprofen, ketoprofen, allantoin, guaiazulene, panthenol, and allantoin; ascorbic acid and its derivatives and their salts; cysteine ​​and its derivatives and its salts; whitening agents such as glabridin, glabrene, liquiritin, isoliquiritin, placenta, hydroquinone and its derivatives; resorcinol and its derivatives; glutathione; anti-seborrheic agents such as sulfur and thianthol; antibacterial agents such as salicylic acid and Phellodendron amurense extract; tocopherol and its derivatives; plant components such as licorice, aloe, and tea leaves; and hormones such as estradiol. When using plant components, the entire plant, including leaves (leaf blade, petiole, etc.), fruits (mature, immature, etc.), seeds, flowers (petals, ovary, etc.), stems, rhizomes, roots, tubers, etc., can be used as is after being cut, crushed, pulverized, squeezed, or extracted, or processed and then dried or powdered.

[0049] The topical skin preparation of the present invention has the effects of improving and / or preventing wrinkles, anti-aging, anti-inflammatory, pore-tightening, whitening, and improving firmness and elasticity of the skin. Because it has cosmetic effects, it can be suitably used in any pharmaceutical product, such as cosmetics, quasi-drugs, or medicines, for the purpose of reducing the appearance of fine lines caused by dryness, rejuvenating the skin, reducing skin roughness caused by inflammation, smoothing the skin, improving skin transparency and sagging, improving skin texture, and maintaining healthy skin.

[0050] The topical skin preparations of the present invention are not limited to those in which the ingredients of the present invention (specific plant materials, niacin, and glycyrrhizic acid) are indicated on the product packaging, etc., as active ingredients for beauty purposes such as improving and / or preventing wrinkles, anti-aging, anti-inflammatory, pore-tightening, whitening, and improving firmness and elasticity. For example, the active ingredients may not be specified, or specific materials other than the ingredients of the present invention may be indicated as active ingredients.

[0051] The topical skin preparation of the present invention can be excellent as a composition for improving wrinkles, preventing wrinkles, anti-aging, anti-inflammatory, pore-constricting, whitening, and improving firmness and elasticity, by exhibiting the effects of improving and / or preventing wrinkles, anti-aging, anti-inflammatory, inflammation-reducing, inflammation-improving, pore-constricting, whitening, improving firmness and elasticity, and as a cosmetic composition, as shown in the examples described later. [Examples]

[0052] The topical skin preparation of the present invention will be described in more detail below with reference to examples. However, the technical scope of the present invention is not limited to these examples. Unless otherwise specified, "%" hereafter represents weight percent.

[0053] <Test 1: Evaluation of Collagenase Inhibition> As a specific plant material, rice bran extract was used, obtained by extracting a mixture of the pericarp, seed coat, embryo, and aleurone layer of brown rice with a mixed solvent of 1,3-butylene glycol and water. As a specific plant material, rosemary leaf extract was used, obtained by extracting rosemary leaves with a mixed solvent of 1,3-butylene glycol and water. As a specific plant material, sage leaf extract was used, obtained by extracting sage leaves with a mixed solvent of 1,3-butylene glycol and water. As a specific plant material, we used mugwort leaf extract, which was obtained by extracting mugwort leaves with a mixed solvent of 1,3-butylene glycol and water. As a specific plant material, we used coix seed extract, which is obtained by extracting coix seed with a mixed solvent of 1,3-butylene glycol and water. Niacinamide was used as the niacin. Dipotassium glycyrrhizinate was used as the glycyrrhizic acid. As the pine bark, we used French maritime pine bark extract (dried powder) obtained by extracting the bark of the French maritime pine with hot water.

[0054] (Preparation of sample solution) Using a 50% 1,3-butylene glycol aqueous solution (50% BG), the test substance was prepared at a concentration of 0.12% as listed in Table 1. After stirring in a tube mixer for 60 minutes, the solution was centrifuged, and the supernatant was collected. The supernatant was then diluted with 50% BG to a final concentration of 0.003% of the test substance to prepare the sample solution. A solution without the test substance was used as the blank solution.

[0055] [Table 1]

[0056] (Preparation of enzyme solution) Collagenase B (derived from Clostridium histolyticum, manufactured by Roche) was prepared to a concentration of 10 μg / mL using Dulbecco's PBS (Phosphate Buffer Saline) (-) containing 0.1% BSA (bovine serum albumin).

[0057] (Preparation of fluorescent substrate solution) The fluorescent substrate (MOCAc-Pro-Leu-Gly-Leu-A2pr(DNP)-Ala-Arg-NH2) dissolved in DMSO was diluted to 5 μM using Dulbecco's PBS(-) containing 0.1% BSA.

[0058] (Measurement of collagenase inhibitory activity) The sample solution was prepared as follows: 50 μL / well of the sample solution was added to a 96-well fluorescence plate, followed by 100 μL / well of the enzyme solution, and incubated at 37°C for 10 minutes. Then, 50 μL / well of the fluorescent substrate solution was added, and incubated in the dark at 37°C for 60 minutes. Excitation was performed at 320 nm, and the fluorescence intensity at 405 nm was measured.

[0059] The sample blank was prepared as follows: 50 μL / well of the blank solution was added to a 96-well fluorescence plate, followed by 100 μL / well of the enzyme solution, and incubated at 37°C for 10 minutes. Then, instead of the fluorescent substrate solution, 50 μL / well of Dulbecco's PBS(-) containing 0.1% BSA was added, and incubated in the dark at 37°C for 60 minutes. Excitation was performed at 320 nm, and the fluorescence intensity at 405 nm was measured.

[0060] The control test solution was prepared as follows: 50 μL / well of the sample solution was added to a 96-well fluorescence plate, followed by 100 μL / well of the enzyme solution, and incubated at 37°C for 10 minutes. Then, 50 μL / well of the fluorescent substrate solution was added, and incubated in the dark at 37°C for 60 minutes. Excitation was performed at 320 nm, and the fluorescence intensity at 405 nm was measured.

[0061] The control blank was prepared as follows: 50 μL / well of the blank solution was added to a 96-well fluorescence plate, followed by 100 μL / well of the enzyme solution, and incubated at 37°C for 10 minutes. Then, instead of the fluorescent substrate solution, 50 μL / well of Dulbecco's PBS(-) containing 0.1% BSA was added, and incubated in the dark at 37°C for 60 minutes. Excitation was performed at 320 nm, and the fluorescence intensity at 405 nm was measured.

[0062] The collagenase inhibition rate of each test substance was calculated using the following formula. Collagenase inhibition rate (%) =(1 - [(Sample test - Sample blank) / (Control test - Control blank)])×100

[0063] (In the formula, "Sample test" indicates the fluorescence intensity of the test solution (Sample test), "Sample blank" indicates the fluorescence intensity of the test solution (Sample blank), "Control test" indicates the fluorescence intensity of the control solution (Control test), and "Control blank" represents the fluorescence intensity of the control solution (Control blank).)

[0064] The results are shown in Figures 1 to 3. As shown in Figure 1, when the specific plant material, niacinamide, and dipotassium glycyrrhizate according to Examples 1 and 2 of the present invention were included, collagenase activity was clearly inhibited compared to when the specific plant material according to Comparative Examples 1 and 2, and when the niacinamide and dipotassium glycyrrhizate according to Comparative Example 6 were included. In other words, the combination of the specific plant material, niacin, and glycyrrhizic acid according to the present invention is useful for preventing and improving wrinkles and for anti-aging. Furthermore, when the specific plant material, niacinamide, dipotassium glycyrrhizate, and pine bark extract according to Examples 6 and 7 of the present invention were included, collagenase activity was further inhibited compared to when the specific plant material, niacinamide, and dipotassium glycyrrhizate according to Examples 1 and 2 were included. In other words, when the specific plant material, niacin, and glycyrrhizic acid according to the present invention are further combined with pine bark, it is extremely useful for preventing and improving wrinkles and for anti-aging.

[0065] Furthermore, as shown in Figure 2, when the specific plant material, niacinamide, and dipotassium glycyrrhizate according to Example 3 of the present invention were included, collagenase activity was clearly inhibited compared to when the specific plant material according to Comparative Example 3 and when the niacinamide and dipotassium glycyrrhizate according to Comparative Example 6 were included. In other words, the combination of the specific plant material, niacin, and glycyrrhizic acid according to the present invention is useful for preventing and improving wrinkles and for anti-aging.

[0066] Furthermore, as shown in Figure 3, when the specific plant material, niacinamide, dipotassium glycyrrhizate, and pine bark extract according to Examples 8 and 9 of the present invention were included, collagenase activity was clearly inhibited compared to when the specific plant material according to Comparative Examples 4 and 5, niacinamide and dipotassium glycyrrhizate according to Comparative Example 6, and pine bark extract according to Comparative Example 7 were included. In other words, the combination of the specific plant material, niacin, glycyrrhizic acid, and pine bark according to the present invention is useful for preventing and improving wrinkles and for anti-aging.

[0067] <Test 2: Evaluation of tyrosinase inhibition> The same plant materials used in Experiment 1—niacin, glycyrrhizic acid, and pine bark—were used.

[0068] (Preparation of sample solution) A solution was prepared using 50% BG to achieve a concentration of 0.09% of the test substance. After stirring in a tube mixer for 60 minutes, the solution was centrifuged, and the supernatant was collected. The supernatant was then diluted with 50% BG to a final concentration of 0.01% of the test substance to prepare the sample solution. A solution without the test substance was used as the blank solution.

[0069] (Preparation of enzyme solution) Tyrosinase (derived from mushrooms, manufactured by CALZYME) was prepared to a concentration of 15 units / ml using 1 / 15M phosphate buffer (pH 7.2).

[0070] (Preparation of substrate solution) L-β-(3,4Dihydroxyphenyl)alanine (L-DOPA solution, manufactured by Wako Pure Chemical Industries, Ltd.) was prepared to a concentration of 0.3 mg / ml using 1 / 15 M phosphate buffer (pH 7.2).

[0071] (Measurement of tyrosinase inhibitory activity) The sample solution (Sampl test) was prepared as follows: 100 μl / well of the sample solution was added to a 96-well plate, followed by 100 μl / well of the enzyme solution, and incubated at 37°C for 10 minutes. Then, 100 μl / well of the substrate solution was added, and incubated in the dark at 37°C for 5 minutes. The absorbance at 475 nm was measured.

[0072] The sample blank was prepared as follows: 100 μl / well of the blank solution was added to a 96-well plate, followed by 100 μl / well of the enzyme solution, and incubated at 37°C for 10 minutes. Then, 100 μl / well of 1 / 15 M phosphate buffer (pH 7.2) was added instead of the substrate solution, and incubated in the dark at 37°C for 5 minutes. The absorbance at 475 nm was measured.

[0073] The control test solution was prepared as follows: 50% BG was added to a 96-well plate at a rate of 100 μl / well, followed by the addition of the enzyme solution at a rate of 100 μl / well. The mixture was incubated at 37°C for 10 minutes. Then, the substrate solution was added at a rate of 100 μl / well, and the mixture was incubated in the dark at 37°C for 5 minutes. The absorbance at 475 nm was measured.

[0074] The control blank was prepared as follows: 50% BG was added to a 96-well plate at a rate of 100 μl / well, followed by the addition of the enzyme solution at a rate of 100 μl / well. The mixture was incubated at 37°C for 10 minutes. Then, instead of the substrate solution, 100 μl / well of 1 / 15 M phosphate buffer (pH 7.2) was added, and the mixture was incubated in the dark at 37°C for 5 minutes. The absorbance at 475 nm was measured.

[0075] Tyrosinase activity inhibition was expressed as an inhibition rate calculated using the following formula. Tyrosinase inhibition rate (%) =(1 - [(Sample test - Sample blank) / (Control test - Control blank)])×100

[0076] (In the formula, "Sample test" represents the absorbance of the test solution (Sample test), "Sample blank" represents the absorbance of the test solution (Sample blank), "Control test" represents the absorbance of the control solution (Control test), and "Control blank" represents the absorbance of the control solution (Control blank).)

[0077] The results are shown in Figures 4 and 5. As shown in Figure 4, when the specific plant material, niacinamide, and dipotassium glycyrrhizate according to Example 1 of the present invention were included, tyrosinase activity was clearly inhibited compared to when the specific plant material according to Comparative Example 1 and when the niacinamide and dipotassium glycyrrhizate according to Comparative Example 6 were included. In other words, the combination of the specific plant material, niacin, and glycyrrhizic acid according to the present invention is useful for anti-inflammatory, pore-reducing, and skin whitening effects. Furthermore, when the specific plant material, niacinamide, dipotassium glycyrrhizate, and pine bark extract according to Example 6 of the present invention were included, tyrosinase activity was further inhibited compared to when the specific plant material, niacinamide, and dipotassium glycyrrhizate according to Example 1 were included. In other words, when the specific plant material, niacin, and glycyrrhizic acid according to the present invention are further combined with pine bark, it is extremely useful for anti-inflammatory, pore-reducing, and skin whitening effects.

[0078] Furthermore, as shown in Figure 5, when the specific plant material, niacinamide, dipotassium glycyrrhizate, and pine bark extract according to Examples 7 to 9 of the present invention were included, tyrosinase activity was clearly inhibited compared to when the specific plant material according to Comparative Examples 2, 4, and 5, and niacinamide and dipotassium glycyrrhizate according to Comparative Example 6 were included. In other words, the combination of the specific plant material, niacin, glycyrrhizic acid, and pine bark according to the present invention is useful for anti-inflammatory, pore-reducing, and skin whitening effects.

[0079] <Test Example 3: Evaluation of feel, firmness, and elasticity> The same plant materials, niacin, and glycyrrhizic acid used in Experiment 1 were employed.

[0080] Test samples were prepared by mixing specific plant materials, niacin, and glycyrrhizic acid to achieve the composition shown in Table 2. The resulting solutions were applied to the faces of three individuals (male and female), and their feel (stickiness of the skin, how well the test product blended into the skin), firmness, and elasticity were evaluated using the following criteria.

[0081] • Criteria for evaluating skin stickiness No stickiness after 10 seconds of application: 3 There is a slight stickiness 10 seconds after application: 2 Slight stickiness after 10 seconds of application: 1 The stickiness after 10 seconds of application is very high: 0

[0082] • Evaluation criteria for skin compatibility of test products The time from application to absorption into the skin is less than 10 seconds: 3 The time from application to absorption into the skin is between 10 and 20 seconds: 2 The time from application to absorption into the skin is 20 seconds or more but less than 30 seconds: 1 Time from application to absorption into the skin: 30 seconds or more: 0

[0083] • Evaluation criteria for firmness and elasticity The firmness and elasticity 30 minutes after application were significantly better compared to before application: 3 The firmness and elasticity 30 minutes after application were better compared to before application: 2 The firmness and elasticity 30 minutes after application were slightly better compared to before application: 1 The firmness and elasticity 30 minutes after application remained unchanged compared to before application: 0

[0084] The average score of the scores given by each of the three individuals (two men and one woman) was calculated, and the test products were evaluated using the following criteria: ◎, ○, △, ×. • Evaluation criteria for test samples Average score of 2.5 or higher: ◎ Average score between 1.5 and 2.5: ○ Average score between 0.5 and 1.5: △ Average score less than 0.5: ×

[0085] The results are shown in Figure 6 and Table 2.

[0086] [Table 2]

[0087] The results are shown in Figure 6 and Table 2. As shown in Figure 6 and Table 2, when the specific plant material, niacinamide, and dipotassium glycyrrhizate according to Examples 10 to 14 of the present invention are included, they are superior in terms of stickiness to the skin, skin compatibility, and firmness and elasticity compared to when the specific plant material according to Comparative Examples 8 to 12 and niacinamide and dipotassium glycyrrhizate according to Comparative Example 13 are included. In other words, when the specific plant material, niacin, and glycyrrhizic acid according to the present invention are combined, the stickiness of the topical skin preparation is reduced, it is easily absorbed by the skin, and it is useful for improving firmness and elasticity.

[0088] The following are examples of formulations of various embodiments of the topical skin preparation of the invention. However, the technical scope of the present invention is not limited to these formulations. Unless otherwise specified, "%" hereafter represents weight percent.

[0089] <Prescription Examples 1 and 2> Liquid for impregnation sheets A solution was prepared by dissolving specific plant materials, niacin, glycyrrhizic acid, and pine bark in purified water. The solution was impregnated into a nonwoven fabric to obtain an impregnated sheet-like pack. The resulting impregnated sheet-like mask was excellent in preventing and improving skin wrinkles, anti-aging, anti-inflammatory effects, pore reduction, whitening, and improving firmness and elasticity. In addition, the resulting impregnated sheet-like mask had reduced stickiness on the skin and was easily absorbed.

[0090] [Table 3]

[0091] <Prescription Examples 3 and 4> toner A lotion was prepared using specific plant materials, niacin, glycyrrhizic acid, and pine bark. The resulting lotion was excellent in preventing and improving skin wrinkles, anti-aging, anti-inflammatory, pore reduction, whitening, and improving firmness and elasticity. Furthermore, the resulting lotion had reduced stickiness on the skin and was easily absorbed.

[0092] [Table 4]

[0093] <Prescription Examples 5 and 6> emulsion A lotion was prepared using specific plant materials, niacin, glycyrrhizic acid, and pine bark. The resulting lotion was excellent in preventing and improving skin wrinkles, anti-aging, anti-inflammatory, pore reduction, whitening, and improving firmness and elasticity. Furthermore, the resulting lotion had reduced stickiness on the skin and was easily absorbed.

[0094] [Table 5]

[0095] <Prescription Examples 7 and 8> cream A cream was prepared using specific plant materials, niacin, glycyrrhizic acid, and pine bark. The resulting cream was excellent in preventing and improving skin wrinkles, anti-aging, anti-inflammatory, pore reduction, whitening, and improving firmness and elasticity. Furthermore, the resulting cream had reduced stickiness on the skin and was easily absorbed.

[0096] [Table 6]

[0097] <Prescription Examples 9 and 10> All-in-one gel We prepared an all-in-one gel using specific plant materials, niacin, glycyrrhizic acid, and pine bark. The resulting all-in-one gel was excellent in preventing and improving skin wrinkles, anti-aging, anti-inflammatory, pore reduction, whitening, and improving firmness and elasticity. Furthermore, the resulting all-in-one gel had reduced stickiness on the skin and was easily absorbed.

[0098] [Table 7] [Industrial applicability]

[0099] The composition of the present invention is industrially useful because it can be used as a so-called cosmetic, quasi-drug, or pharmaceutical.

Claims

1. A topical skin preparation containing at least one plant material selected from rosemary, Job's tears, and mugwort, as well as niacin and glycyrrhizic acid.

2. Furthermore, the topical skin preparation according to claim 1, which contains pine bark.

Citation Information

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