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Development of Anti-aging from Natural Materials by Inhibition of UV Stimulating

자외선 자극에 의한 피부노화 억제 천연물 소재 개발

  • Dang, Su-Min (Department of Beauty School, Yeungnam University College)
  • 당수민 (영남이공대학교 뷰티스쿨)
  • Received : 2020.11.11
  • Accepted : 2021.01.20
  • Published : 2021.01.28

Abstract

ln this study, natural extracts extracted from cypress sapiens, a natural material, were investigated as materials that could protect skin aging caused by ultraviolet rays, and experiments were conducted on the synthesis of filaggrins that make up the natural moisturizing factor of the skin, the synthesis of pro-colagen, a fibrous protein, which plays an important role in moisturizing the dermis, and elastin, which is an enzyme that decomposes collagen. As a result, cypress ethanol extract (COE) was a dependent inhibitor to collagenase and elastase, inhibiting the synthesis of filaggrin and the expression of MMP-1 for exfoliated cells damaged by ultraviolet rays. Therefore, it is estimated that ethanol extract will have the effect of delaying wrinkles and as a functional cosmetic material that inhibits skin aging convergence. Based on this study, we would like to further study the mechanism of the synthesis of filaggrin on the suppression of expression of MMP, which is the anti-wrinkle effect.

본 연구에서는 천연재료인 편백나무 수피에서 추출한 천연추출물이 자외선에 의한 피부 노화를 보호할 수 있는 소재로 조사하였는데, 피부의 천연보습인자를 구성하는 필라그린(filaggrin)의 합성과 진피의 보습에 중요한 역할을 하는 섬유단백질인 Pro-collagen의 합성과 콜라겐(collagen)을 분해하는 효소의 저해효과 및 탄력섬유인 엘라스틴(elastin)의 분해효소 저해 실험을 진행하였다. 결과적으로 편백에탄올추출물은 collagenase와 elastase를 농도의존적으로 저해하였으며, 자외선에 손상을 받은 각질형성세포에 대한 filaggrin의 합성과 MMP-1의 발현을 억제하였다. 따라서 이런한 결과는 에탄올추출물(COE)이 주름생성을 지연시키는 역할과 피부노화 융합 억제 하는 기능성 화장품 소재로서의 효과를 가질것으로 사료된다. 본 연구를 바탕으로 filaggrin의 합성이 항주름 효과인 MMP의 발현억제에 미치는 기전을 더 연구하고자 한다.

Keywords

References

  1. B. A. Gilchrest. (1990). Skin aging and photoaging. Dermatol. Nurs. 2, 79-82.
  2. T. Y. Ha. (2006). Development of functional food materials for healthy Life. Korea Journal crop Sci., 51, 26-39.
  3. H. Sies. (2003). Biochemistry of oxidative stress. Angewandte Chemie International Edition in English. 25(12), 1058-1071. https://doi.org/10.1002/anie.198610581
  4. J. Fantone & P. Ward. (1982). Role of oxygen-derived free radicals and metabolites in leukocyte-dependent inflammatory reactions. The American Journal of Pathology, 107(3), 395.
  5. S. Park. (2003). Protective effect of Isoflavone, genistein from soybean on singlet oxygen induced photohemolysis of human erythrocytes. Korean Journal of food science and technology, 35(3), 510-518.
  6. J. H. Jang, C. Lee, S. C. Kim, J. W. Chung & C. I. Park. (2010). Protecive effect of marine natural products against UVB-induced damages in human skin fibroblast via antioxidant mechanism. J. Soc. Cosmet. Scientists Korea, 36(1), 79.
  7. W. Ma, M. Wlaschek, P. Brenneisen, L. A. Schneider, C. Hommel, C. Hellweg, H. Sauer, M. Wartenberg, G. Herrmann, C. Meewes, P. Boukamp & K. Scharffetter-Kochanek. (2002). Human dermal fibroblasts escape from the long-term phenocopy of senescence induced by psoralen photoactivation, Experimental Cell Research, 274, 299. https://doi.org/10.1006/excr.2002.5476
  8. S. N. Park. (1997). Skin aging and antioxidant, J. Soc. Cosmet. Sci. Korea, 23(1), 75.
  9. R. G. Allen & M. Tresini. (2000). Oxidative stress and gene regulation, Free Radical Biology and Medicine, 28(3), 463. https://doi.org/10.1016/S0891-5849(99)00242-7
  10. Y. R. Cha. (2012). Effect of cypress extract on skin changes in Chamaecyparis obtusa, Seokyeong. 11-12.
  11. Rural Development Administration. (2007). Development of Technology for the Use of Antibacterial, Vibacterial and Mammatic Functional Materials in Tree Oil, 20-22.
  12. H. J. Kim. (2014). The Efects of Inhibitory Efect of NiricOxide Production by Hinoki Cypress Leaf Oil with Superfcial Extraction and Lymph Drainage on the Facil Skin, Nambu University. 2-5.
  13. R. J. Cannell, S. J. P, A. M. Kellan, Owsianks & J. M. Walker, (1988). Results of a large scale scrren of microalgae for the production of protease inhibitors. Planta Med. 54, 10-14. https://doi.org/10.1055/s-2006-962319
  14. W. Widowati, A. P. Rani, R. A. Hamzah, S. Arumwardana, E. Afifah, H. S. W. Kusuma, D. D. Rihibiha. H. Nufus & A. N. Amalia. (2017). Antioxidant and antiaging assays of Hibiscus sabdariffa extract and its compounds. Nat Prod Sci., 23, 192-200. https://doi.org/10.20307/nps.2017.23.3.192
  15. Y. Jia, M. Yang & I. S. Park. (2015). Antioxidative activities and inhibition effects on tyrosinase and elastase by water extracts of Allium sp. Korean J. Food Nutr., 28, 247-252. https://doi.org/10.9799/ksfan.2015.28.2.247
  16. D. H. K, J. W. K & K. S. Y. (2011). Antioxidant activities of extracts from fermented mulberry (Cudrania tricuspidata) fruit, and inhibitory actions on elastase and tyrosinase. Korean J. Food Preserv., 18, 236-243. https://doi.org/10.11002/kjfp.2011.18.2.236
  17. G. R. Fanger, N. L. Johnson & G. L. Johnson. (1997). MEK kinases are regulated by EGF and selectively interact with ac/Cdc42. EMBO J. 16, 4961-4972. https://doi.org/10.1093/emboj/16.16.4961
  18. E. G. Min, Y. H. Kim, S. I. Kum & Y. H. Han. (2004). Inhibition of growth and collagenase activity of the extract from Salvia miltiorrhiza against microorganisms causing periodontal diseases. The Korea J. Microbiol., 40(2), 111-114.
  19. J. Gross & C. M. Lapiere. (1962). Collagenolytic activity in amphibian tissues: a tissue culture assay. Proc Natl Acad Society. 54, 1197-1204.
  20. G. J. Fisher, Z. Q. Wang, S. C. Datta, J. Varani, S. Kang & J. J. Voorhees. (1997). Pathophysiology of premature skin aging induced by ultraviolet light. N Engl. J Med. 337, 1419-1428. https://doi.org/10.1056/NEJM199711133372003
  21. C. E. Brinckerhoff, J. L. Rutter & U. Benbow. (2000). Interstitial collagenases as markers of tumor progression. Clin Cancer Res. 6, 4823-4830.
  22. P. M. Elias, S. K. Ahn, M. Denda, B. E. Brown, D. Crumrine, L. K. Kimutai, L. Komuves, S. H. Lee & K. R. Feingold. (2002). Modulations in epidermal calcium regulate the expression of differentiation specific markers. J. Invest Dermatol. 119, 1128-1136. https://doi.org/10.1046/j.1523-1747.2002.19512.x
  23. A. Sandilands, C. Sutherland, A. D. Irvine, McLean W. H & M. c. Lean. (2009). Filaggrin in the frontline: role in skin barrier function and disease. J. Cell Sci., 122, 1285-1294. https://doi.org/10.1242/jcs.033969
  24. J. Koyama, I. Horii, K. Kawasaki, Y. Nakayama, Y. Morikawa, T. Mitsui & H. Kumagai. (1984). Free amino acids of stratum corneum as a biochemical marker to evaluate dry skin. J. Soc Cosmet Chem., 35, 183-195.
  25. A. V. Rawlings & C. R. Harding. (2004). Moisturization and skin barrier function. Dermatol Ther. 17(Suppl 1), 43-48. https://doi.org/10.1111/j.1396-0296.2004.04S1005.x