Screening method for agent for improving skin condition

A method screens skin condition improving agents by measuring proteasome and mitochondrial activities in tendon cells, identifying substances that enhance these activities and improve skin health by increasing mimecan and OGN gene expression, addressing the need for effective skin condition improvement.

JP2025138324APending Publication Date: 2025-09-25POLA CHEMICAL INDUSTRIES INC
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Patent Information

Application Number
JP2024037348
Authority / Receiving Office
JP · JP
Patent Type
Applications
Current Assignee / Owner
Filing Date
2024-03-11
Publication Date
2025-09-25

AI Technical Summary

Technical Problem

Existing methods lack a reliable and effective way to screen for skin condition improving agents that enhance proteasome activity in tendon cells, which is crucial for improving skin health indicators such as wrinkles, sagging, and loss of firmness.

Method used

A method is developed to screen skin condition improving agents by measuring proteasome activity in tendon cells, determining that a substance is effective if it enhances proteasome activity compared to a control without the substance, and optionally using mitochondrial activity as an additional indicator.

Benefits of technology

The method effectively identifies substances that enhance proteasome and mitochondrial activities, leading to improved skin support by increasing mimecan and OGN gene expression, thereby reducing wrinkles and sagging.

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Abstract

To provide a novel screening method for an agent for improving skin condition.SOLUTION: The present invention provides a screening method for an agent for improving skin condition, using proteasome activity in tendon cells as an indicator.SELECTED DRAWING: Figure 1
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Description

[Technical Field]

[0001] The present invention relates to a method for screening for skin condition improving agents using proteasome activity in tendon cells as an indicator. [Background technology]

[0002] In recent years, research has been conducted into ingredients that can improve skin conditions that have deteriorated with age, and various ingredients have been discovered. Proteasomes, present in cells, are proteolytic enzymes distributed in both the cytoplasm and nucleus of eukaryotic cells, and play an important role in cellular function and maintenance. It is known that proteasome activity decreases with age (Non-Patent Document 1).

[0003] An extract from peach (Prunus persica) belonging to the Rosaceae family is known as a naturally occurring functional material that has the effect of enhancing proteasome activity (Patent Document 1). [Prior art documents] [Patent documents]

[0004] [Patent Document 1] Japanese Patent Application Laid-Open No. 2016-124827 [Non-patent literature]

[0005] [Non-Patent Document 1] G. Carrard et al.Int J Biochem Cell Biol. 34 1461-1474 Summary of the Invention [Problem to be solved by the invention]

[0006] In view of the above-mentioned prior art, an object of the present invention is to provide a novel method for screening skin condition improving agents. [Means for solving the problem]

[0007] The present invention, which solves the above-mentioned problems, is a method for screening skin condition improving agents using proteasome activity in tendon cells as an indicator.

[0008] In a preferred embodiment of the present invention, the higher the proteasome activity in tendon cells cultured in the presence of a test substance, the better the skin condition improving agent the test substance is judged to be.

[0009] In a preferred embodiment of the present invention, the method comprises the steps of culturing tendon cells in the presence of a test substance, measuring proteasome activity in the tendon cells, and determining that the test substance is a skin condition improving agent if the proteasome activity is higher than the proteasome activity of tendon cells cultured in the absence of the test substance.

[0010] In a preferred embodiment of the present invention, the skin condition improving agent is used to improve a skin support band.

[0011] In a preferred embodiment of the present invention, the skin condition improving agent is used to enhance mimecan expression.

[0012] In a preferred embodiment of the present invention, the skin condition improving agent is used to enhance OGN gene expression.

[0013] In a preferred embodiment of the present invention, the skin condition is one or more selected from the group consisting of wrinkles, sagging skin, loss of firmness, and loss of skin elasticity.

[0014] In a preferred embodiment of the present invention, the mitochondrial activity in tendon cells is further used as an indicator, and the higher the proteasome activity in tendon cells cultured in the presence of the test substance and the higher the mitochondrial activity in tendon cells cultured in the presence of the test substance, the more the test substance is judged to be a skin condition improvement agent with excellent skin support improvement effect.

[0015] The present invention also relates to a screening method for a skin support improving agent using proteasome activity and mitochondrial activity in tendon cells as indicators.

[0016] In a preferred embodiment of the present invention, the skin support band improving agent is used to enhance mimecan expression. [Effects of the Invention]

[0017] According to the present invention, a method for screening skin condition improving agents using proteasome activity in tendon cells as an indicator can be provided. [Brief explanation of the drawings]

[0018] [Figure 1] FIG. 1 shows changes in proteasome activity ratio in tendon cells due to the addition of a test substance. [Figure 2] FIG. 1 shows changes in OGN gene expression levels in tendon cells due to inhibition of proteasome activity. [Figure 3] FIG. 10 shows changes in OGN gene expression levels in tendon cells due to inhibition of proteasome activity and mitochondrial activity. DETAILED DESCRIPTION OF THE INVENTION

[0019] Preferred embodiments of the present invention will be described below, but it goes without saying that the technical scope of the present invention is not limited to the following embodiments.

[0020] In the screening method of the present invention, the skin condition improving agent to be screened is not particularly limited, and examples of test substances include commercially available compounds (including peptides), known compounds (including peptides), groups of compounds obtained by combinatorial chemistry techniques, extracts derived from living organisms, and mixtures thereof.

[0021] The term "biological extract" refers to not only the extract itself derived from animals or plants, but also a collective term for fractions of extracts, purified fractions, and solvent-removed extracts, fractions, and purified products. Examples of plant extracts include extracts made from wild or cultivated plants, extracts sold as herbal medicine ingredients, and commercially available extracts.

[0022] The screening method of the present invention uses proteasome activity in tendon cells as an indicator.

[0023] The screening method of the present invention comprises adding a test substance to a culture system of tendon cells and measuring proteasome activity in the cells.

[0024] Specifically, the screening method of the present invention makes it possible to determine that the test substance is an excellent skin condition improving agent when the proteasome activity in tendon cells cultured in the presence of the test substance is higher.

[0025] Furthermore, preferably, if the proteasome activity in tendon cells cultured with the addition of the test substance is statistically significantly greater than the proteasome activity in tendon cells cultured without the addition of the test substance, the test substance can be determined to be a candidate for a skin condition improving agent. More specifically, if the proteasome activity in tendon cells cultured with the test substance is greater than one-fold the proteasome activity in tendon cells cultured without the test substance, the test substance can be selected as a candidate for a skin condition improvement agent.

[0026] Proteasome activity can be measured by measuring the chymotrypsin-like, trypsin-like, or caspase-like protease activity of the proteasome complex present in the cultured cells. Measurement is performed by detecting the fluorescent substance produced when a substrate (SUC-LLVY-AMC) is cleaved by the proteasome. Commercially available measurement kits include Promega's Proteasome-Glo® Assay, Cosmo Bio's Proteasome 20S assay kit, and Funakoshi's Proteasome 20S assay kit.

[0027] The present invention can also be in a form comprising the steps of culturing tendon cells in the presence of a test substance, measuring proteasome activity in the tendon cells, and determining that the test substance is the skin condition improving agent if the proteasome activity is higher than the proteasome activity of tendon cells cultured in the absence of the test substance.

[0028] Each step in a preferred embodiment of the present invention will be described in detail below.

[0029] (1)Culture process The culturing step is a step of culturing tendon cells in the presence of a test substance. The cell culture method is not particularly limited, and adherent culture or suspension culture can be appropriately selected depending on the properties of the cells used.

[0030] Tendon cells are also present in the retina cutis and play an important role in the structural formation of the retina cutis. Therefore, in the present invention, the tendon cells are preferably tendon cells present in the retinaculum cutis.

[0031] The duration of the culture step is not particularly limited, but is preferably 3 hours or more, more preferably 6 hours or more, even more preferably 12 hours or more, and particularly preferably 1 day or more. The upper limit of the culture period is also not particularly limited, but as a guideline, it is preferably 1 month or less, more preferably 3 weeks or less, even more preferably 2 weeks or less, and particularly preferably 1 week or less.

[0032] In the culturing step, culturing is carried out in the presence of a test substance. Specific examples include an embodiment in which the test substance is added to a medium and then cultured. The type of test substance is not limited, and any low molecular weight compound, high molecular weight compound, protein, peptide, nucleic acid, or the like can be applied. The test substance may be a pure compound or a mixture containing two or more components, such as a plant or animal extract.

[0033] In the culturing step, one or more test substances may be used, and when evaluating a synergistic effect due to a combination of test substances, it is preferable to add two or more test substances.

[0034] In the culturing step, cells may be cultured in the absence of the test substance as a control in parallel with the culture in the presence of the test substance. In this case, it is preferable to keep the culture conditions the same except for the presence or absence of the test substance.

[0035] (2) Measurement process The measuring step is a step of measuring proteasome activity in tendon cells that have been cultured. There are no particular limitations on the method for measuring proteasome activity in tendon cells, and any experimental method can be used as long as it can confirm the degradation of the desired protein within the cells. For example, a method can be used to measure proteasome activity by monitoring the hydrolysis of AMC from Suc-LLVY-AMC using a fluorescent peptide. Suc-LLVY-AMC is a 7-amino-4-methylcoumarin (AMC)-labeled fluorescent substrate that can be used to measure the chymotrypsin-like activity of the 20S and 26S proteasomes, as well as calpain and other chymotrypsin-like proteases. Upon enzymatic cleavage of the peptide, the fluorophore AMC is released, resulting in a strong increase in fluorescence.

[0036] (3) Judgment process The determination step is a step of determining that the test substance is a skin condition improving agent based on the proteasome activity measured in the measurement step. Specifically, the test substance is determined to be the skin condition improving agent when the proteasome activity in the tendon cells cultured in the presence of the test substance is higher than the proteasome activity in the tendon cells cultured in the absence of the test substance.

[0037] Here, the test substance determined in the determination step may be determined as an active ingredient as is, or may be determined as a candidate active ingredient to be subjected to secondary screening.

[0038] The skin condition improving agent obtained by the screening method of the present invention can be used to improve skin support.

[0039] In the present invention, improvement of skin support specifically refers to the prevention and / or improvement of wrinkles, sagging skin, loss of firmness, and loss of skin elasticity.

[0040] The skin condition improving agent obtained by the screening method of the present invention can be preferably used to enhance mimecan expression.

[0041] It is known that the density of the retina cutis correlates with age and the degree of skin sagging. Furthermore, mimecan, a protein that makes up the retina cutis, is a component that decreases with age, and a decrease in mimecan is known to cause wrinkles and sagging.

[0042] The skin condition improving agent obtained by the screening method of the present invention can be more preferably used to enhance OGN gene expression.

[0043] The screening method of the present invention also relates to a method for screening for a skin support band improving agent using proteasome activity and mitochondrial activity in tendon cells as indicators.

[0044] It is known that inhibiting proteasome activity leads to the accumulation of oxidative stress within cells, damaging mitochondria, which are the source of energy (ATP) production (Journal of Japanese Biochemistry, Society 88(2): 211-214). In addition, proteasome activity is known to be dependent on ATP concentration (Nature volume 331, pages 192-194).

[0045] Based on the above findings, the inventors investigated genes whose expression is reduced in cells in which proteasome activity and mitochondrial activity are inhibited, and found that OGN gene expression is reduced in tendon cells.

[0046] That is, the present invention can also be embodied as a screening method for skin condition improving agents using proteasome activity and mitochondrial activity in tendon cells as indicators.

[0047] The screening method of the present invention makes it possible to determine that the test substance is an excellent skin condition improving agent when the proteasome activity and mitochondrial activity in tendon cells cultured in the presence of the test substance are higher. By using both proteasome activity and mitochondrial activity as indicators rather than using proteasome activity alone as an indicator, it is possible to select better candidates for skin support improving agents.

[0048] The present invention can also be embodied as a method for screening skin support improving agents by using proteasome activity and mitochondrial activity in tendon cells as indicators.

[0049] Specifically, the screening method of the present invention makes it possible to determine that the test substance is an excellent skin support improvement agent when the proteasome activity and mitochondrial activity in tendon cells cultured in the presence of the test substance are higher.

[0050] Furthermore, preferably, if the proteasome activity and mitochondrial activity in tendon cells cultured with the addition of the test substance are statistically significantly greater than the proteasome activity and mitochondrial activity in tendon cells cultured without the addition of the test substance, the test substance can be determined to be a candidate for a skin support band improvement agent. More specifically, if the proteasome activity and mitochondrial activity in tendon cells cultured with the test substance is greater than one-fold the proteasome activity and mitochondrial activity in tendon cells cultured without the test substance, the tendon cells can be selected as a candidate for a skin support band improvement agent.

[0051] The method for measuring mitochondrial activity in cells is not particularly limited, and for example, it can be measured using a mitochondrial membrane potential detection kit ("JC-1 MitoMP Detection Kit" manufactured by Dojindo).

[0052] In the present invention, the proteasome activity and mitochondrial activity of a specific test substance can be measured separately, and the test substance can be screened based on the results of each measurement.

[0053] The skin support band improving agent obtained by the screening method of the present invention can be used to prevent and / or improve increased wrinkles, sagging skin, loss of firmness, and loss of skin elasticity.

[0054] The skin support band improving agent obtained by the screening method of the present invention can be preferably used to enhance mimecan expression.

[0055] The skin support band improving agent obtained by the screening method of the present invention can be more preferably used to enhance OGN gene expression. [Example]

[0056] The present invention will be described in more detail below with reference to examples, but it goes without saying that the present invention is not limited to these examples. In addition, the rice bran extract hydrolysate used in the examples can be, for example, a rice bran extract hydrolyzed solution obtained by the following production example, such as the technique described in JP-A-2022-138725.

[0057] Example of manufacturing rice bran extract hydrolyzed solution 1500 g of 0.1 M lactic acid solution was added to 500 g of rice bran, stirred to thoroughly mix the rice bran and lactic acid solution, and then allowed to stand at room temperature for one day. Insoluble matter was then removed by filtration, and the filtrate was treated with papain. The enzyme treatment was carried out using 1.2 mg of enzyme at the enzyme's optimal pH, by incubating at 80°C for one hour. The resulting insoluble matter was filtered off, and the filtrate was adjusted to pH 6.5 with phytic acid, yielding 731 g of a pale yellow, transparent rice bran extract hydrolyzed solution (solids concentration 3.7%).

[0058] <Test Example 1> Screening of test substances that enhance proteasome activity in human tendon-derived tenocytes Human tendon-derived tenocytes were cultured in a black 96-well plate at 8.0 × 10 3 The cells were seeded at 100 cells / well and cultured at 37°C in a 5% CO2 environment for 24 hours. 24 hours after seeding, a hydrolyzate of rice bran extract was added to a final concentration of 0.5%, and the culture was continued for another 24 hours.

[0059] The cell culture supernatant was then removed, and each well was washed with Tris-HCl buffer ((pH 8.0): 12 mM trishydroxymethylaminomethane, 5 mM EDTA, 150 mM NaCl, hydrochloric acid). Then, 100 μL of cell lysis solution (Tris-HCl buffer (pH 8.0): 12 mM trishydroxymethylaminomethane, 5 mM EDTA, 150 mM NaCl, hydrochloric acid containing 1% Triton X-100) was added to the wells used to measure total substrate degradation capacity, and 90 μL was added to the wells used to measure non-proteasome activity. The cells were disrupted and used as a crude enzyme solution. 10 μL of proteasome activity inhibitor solution (cell lysis solution containing 2 mM epigallocatechin gallate) was added to the wells used to measure non-proteasome activity, and the wells were left to stand at room temperature for 10 minutes.

[0060] 10 μL of a buffer containing 65 μM Suc-Leu-Leu-Val-Tyr-AMC as a substrate was added to each plate, and the mixture was allowed to react for 1 hour at 37° C. After the reaction was completed, the fluorescence intensity (excitation wavelength: 355 nm, emission wavelength: 460 nm) was measured using a fluorescent plate reader (ARVO X4, PerkinElmer).

[0061] Similarly, a black plate containing the extract but without cell disruption was prepared, the cell supernatant was removed, and each well was washed with PBS(-). 100 μL of PBS containing Hoechst 33342 was added, and the reaction was allowed to proceed at 37°C for 30 minutes. After the reaction was complete, the fluorescence intensity (excitation wavelength: 355 nm, emission wavelength: 460 nm) was measured using a fluorescent plate reader (ARVO X4, PerkinElmer) to measure the fluorescence intensity due to DNA staining.

[0062] The non-proteasome activity measurement results were subtracted from the total substrate degradation measurement results, and the value obtained was normalized by the fluorescence intensity of DNA staining to determine the proteasome activity. The same procedure as above was also performed for the control (PBS(-) sample), and the relative value of the proteasome activity obtained when each sample was added to the control was calculated, and this was used as the proteasome activity ratio. The results are shown in Table 1 and Figure 1.

[0063] [Table 1]

[0064] As shown in Table 1, it was confirmed that the hydrolysate of rice bran extract has the effect of enhancing proteasome activity in tendon cells. Thus, using proteasome activity as an indicator, it is possible to screen for substances involved in skin conditions caused by proteasome activity in skin tissue.

[0065] <Test Example 2> Inhibition of skin support-related gene expression by inhibiting proteasome activity Human tendon-derived tenocytes were cultured in a collagen I-coated 24-well plate at 3.0 × 10 4 The cells were seeded at 100 cells / well and cultured at 37°C in a 5% CO2 environment for 24 hours. 24 hours after seeding, MG-132 (Carbobenzoxy-L-leucyl-L-leucyl-L-leucinal, a proteasome activity inhibitor) diluted with DMSO was added to a concentration of 100 nM, and the cells were cultured for a further 72 hours, after which RNA was collected from the cells. The control was prepared under the same conditions as above except that MG-132 was not added.

[0066] The collected RNA was analyzed using real-time PCR to evaluate the expression of the OGN gene (a skin support-associated gene). Specifically, the gene expression level after the addition of MG-132 was calculated based on the gene expression level in cells without MG-132 added. The results are shown in Table 2 and Figure 2. Table 2 shows the ratio of the OGN gene expression level after the addition of MG-132, assuming that the OGN gene expression level in cells without MG-132 added is "1.00."

[0067] [Table 2]

[0068] As shown in Table 2, it was confirmed that inhibition of proteasome activity inhibited the expression of the OGN gene in tendon cells. This indicates that enhancing proteasome activity can increase the expression level of mimecan in tendon cells. Furthermore, enhancing proteasome activity is expected to improve skin support. In other words, it is possible to screen for substances involved in improving skin support using proteasome activity as an indicator.

[0069] <Test Example 3> Inhibition of skin support-related gene expression by inhibiting proteasome activity and mitochondrial activity Human tendon-derived tenocytes were cultured in a collagen I-coated 24-well plate at 3.0 × 10 4 The cells were seeded at 100 cells / well and cultured at 37°C in a 5% CO2 environment for 24 hours. 24 hours after seeding, MG-132 (Carbobenzoxy-L-leucyl-L-leucyl-L-leucinal, a proteasome inhibitor) diluted in DMSO was added to a concentration of 100 nM, and FCCP (Carbonyl cyanide 4-(trifluoromethoxy)phenylhydrazone, a mitochondrial activity inhibitor) diluted in DMSO was added to a concentration of 2 μM. The cells were then cultured for a further 72 hours, and RNA was extracted from the cells. The control was prepared under the same conditions as above except that MG-132 was not added.

[0070] The collected RNA was analyzed using real-time PCR to evaluate the expression of the OGN gene (a skin support-related gene). Specifically, the gene expression level in cells without MG-132 or FCCP was used as the standard, and the gene expression level after the addition of MG-132 and after the addition of MG-132 and FCCP was calculated. The results are shown in Table 3 and Figure 3. Table 3 shows the ratio of the OGN gene expression level after the addition of MG-132 and the ratio of the OGN gene expression level after the addition of MG-132 and FCCP, when the OGN gene expression level in cells without MG-132 was set to "1.00."

[0071] [Table 3]

[0072] As shown in Table 3, it was confirmed that inhibiting both proteasome activity and mitochondrial activity resulted in greater inhibition of OGN gene expression in tendon cells than inhibiting proteasome activity alone. This suggests that enhancing proteasome activity and mitochondrial activity can increase the expression of mimecan in tendon cells. Furthermore, enhancing proteasome activity and mitochondrial activity is expected to improve skin support. In other words, it is possible to screen for substances involved in improving skin support by using a combination of proteasome activity and mitochondrial activity as indicators. [Industrial Applicability]

[0073] According to the present invention, a method for screening skin condition improving agents using proteasome activity in tendon cells as an indicator can be provided.

Claims

1. A method for screening skin condition improving agents using proteasome activity in tendon cells as an indicator.

2. The screening method according to claim 1, wherein the test substance is judged to be a superior skin condition improving agent as the proteasome activity in tendon cells cultured in the presence of the test substance increases.

3. Culturing tendon cells in the presence of a test substance; measuring proteasome activity in the tendon cells; determining that the test substance is the skin condition improving agent when the proteasome activity is higher than the proteasome activity of tendon cells cultured in the absence of the test substance; The screening method according to claim 1, comprising:

4. The screening method according to any one of claims 1 to 3, wherein the skin condition improving agent is used to improve a skin support band.

5. The screening method according to any one of claims 1 to 3, wherein the skin condition improving agent is used to enhance expression of mimecan.

6. The screening method according to any one of claims 1 to 3, wherein the skin condition improving agent is used to enhance OGN gene expression.

7. The screening method according to any one of claims 1 to 3, wherein the skin condition is one or more selected from the group consisting of wrinkles, sagging skin, loss of firmness, and loss of skin elasticity.

8. Furthermore, we combined mitochondrial activity in tendon cells as an index. The screening method of claim 1, wherein the test substance is judged to be a skin condition improvement agent with excellent skin support improvement effect the higher the proteasome activity in tendon cells cultured in the presence of the test substance and the higher the mitochondrial activity in tendon cells cultured in the presence of the test substance.

9. A method for screening skin support improvement agents using proteasome activity and mitochondrial activity in tendon cells as indicators.

10. The screening method according to claim 9, wherein the skin support band improving agent is used to enhance mimecan expression.

Citation Information

Patent Citations

  • Cosmetics

    JP2016124827A