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Effects of Pyeonggangaeuljihyeol-tang(PGJT) Extract on Anti-inflammatory, Antioxidant and Anti-aging

평간개울지혈탕(平肝開鬱止血湯)의 항염증, 항산화 및 항노화에 미치는 영향

  • Kyoung Won Lee (Dept. Of Ophtalmology & Otolaryngology & Dermatology of Korean Medicine, Semyung University College of Korean Medicine) ;
  • Young Chae Song (Dept. Of Ophtalmology & Otolaryngology & Dermatology of Korean Medicine, Semyung University College of Korean Medicine) ;
  • Hee Taek Kim (Dept. Of Ophtalmology & Otolaryngology & Dermatology of Korean Medicine, Semyung University College of Korean Medicine)
  • 이경원 (세명대학교 한의과대학 한방안이비인후피부과) ;
  • 송영채 (세명대학교 한의과대학 한방안이비인후피부과) ;
  • 김희택 (세명대학교 한의과대학 한방안이비인후피부과)
  • Received : 2024.01.05
  • Accepted : 2024.02.01
  • Published : 2024.02.25

Abstract

Objectives : The purpose of this study is to confirm the anti-inflammatory, antioxidant and anti-aging efficacy of Pyeonggangaeuljihyeol-tang(PGJT) extract. Methods : In order to confirm the anti-inflammatory activity of PGJT extract, the inhibitory effect on NO PGE2 production were evaluated and the expression level of iNOS, COX-2 and IL-6 mRNA were measured through qRT-PCR, Antioxidant activity was evaluated for radical scavenging activity using DPPH and ABTS, anti-aging activity was evaulated for collagenase, elastase, tyrosinase and L-DOPA oxidation inhibitory activity. Results : PGJT extract shows anti-inflammatory effect by inhibiting the production of NO and PGE2 by reducing the expression level of iNOS, COX-2 and IL-6 mRNA, antioxidant effect by increasing DPPH and ABTS scavenging abillity in a concentration dependent manner. In addition, the anti-aging effect was confirmed by inhibiting collagenase, elastase, tyrosinase production and L-DOPA oxidation. Conclusion : This suggests that PGJT showed an overall excellent anti-inflammatory effect and an inhibitory effect on the activity of antioxidant and anti-aging related enzymes.

Keywords

References

  1. Text of Traditional Korean Dermatology & Surgery. Globooks. 2022;45-6,72-6.
  2. Uitto J. The role of elastin and collagen in cutaneous aging: intrinsic aging versus photoex posure. J drugs Dermatol. 2008;7(2 Suppl):s12-6.
  3. Yoon Y, Bae S, An S, Choe YB, Ahn KJ, An IS. Effects of Ultraviolet Radiation on the Skin and Skin Cell Signaling Pathways. Kor J Aesthet Cosmetol. 2013;11(3):417-26.
  4. Nam HJ, Kim YB. Aging and skin aging. J Korean Med Ophthalmol Otolaryngol Dermatol. 2004;17(1):16-33.
  5. Oh HK. Antioxidant and anti-inflammatory activities of Atractylodes japonica according to extract methods. Journal of the Korean Society of Applied Science and Technology. 2021;38(6):1543-52.
  6. Park HS, Ha HY, Kim HT. An Experimental Study on the Effect of Angelica gigas ethanol extract on Hyaluronic Acid synthesis. J Korean Med Ophthalmol Otolaryngol Dermatol. 2018;31(1):32-41.
  7. Park JY, Hwang JG, Yun JK, Han KH, Do EJ, Kim SO, et al. Effect of Ssanghwa-tang Extract on Antioxidant and Anti-aging Enzyme Activities. Kor. J. Herbology. 2012;27(3):67-74.
  8. Jeon BH, Song YC, Kim HT, Kim YM. Studies on Skin Anti-aging Effect of Chungpyesagan-tang(CPSGT). J Korean Med Ophthalmol Otolaryngol Dermatol. 2023;36(1):40-9.
  9. Bu C. Bucheongjunamnyeogua. Seoul:Daeseongmunhwa Publishing Co. 1989:88.
  10. Oh SK, Kim WH. Effect of Pyungangaeulgyhyul-tang on CCL4-induced liver cell injury. Dongeui Journal of the Institute of Oriental Medicine. 1998;2(1):193-204.
  11. Oh SK, Kim WH. Protective effects of Pyunggangaeuljihyul-Tang on toxic agent induced liver cell damage. The Journal of Internal Korean Medicine. 1999;20(2): 545-57.
  12. Yun JW, Lee TG. The Influence of Pyeongganggaeuljihyeoltang on Pathologic Models of Blood Stasis. The Journal of Oriental Obstetrics & Gynecology. 1995;8(1):131-269.
  13. Hur J, Nguyen TTH, Park N, Kim J, Kim D. Characterization of quinoa (Chenopodium quinoa) fermented by Rhizopus oligosporus and its bioactive properties. Amb Express. 2018;8(1):1-8.
  14. Kumar P, Nagarajan A, Uchil PD. Analysis of cell viability by the MTT assay. Cold spring harbor protocols. 2018;2018(6):pdb. prot095505.
  15. Kim HG, Shrestha B, Lim SY, Yoon DH, Chang WC, Shin DJ, et al. Cordycepin inhibits lipopolysaccharide-induced inflammation by the suppression of NF-κB through Akt and p38 inhibition in RAW 264.7 macrophage cells. European journal of pharmacology. 2006;545(2-3):192-9.
  16. Takano-Ishikawa Y, Goto M, Yamaki K. Structure-activity relations of inhibitory effects of various flavonoids on lipopolysaccharide-induced prostaglandin E2 production in rat peritoneal macrophages: Comparison between subclasses of flavonoids. Phytomedicine. 2006;13(5):310-7.
  17. Mackay IM, Arden KE, Nitsche A. Real-time PCR in virology. Nucleic acids research. 2002;30(6):1292-305.
  18. Hatano T, Edamatsu R, Hiramatsu M, MORI A, Fujita Y, Yasuhara T, et al. Effects of the interaction of tannins with co-existing substances. VI.: Effects of tannins and related polyphenols on superoxide anion radical, and on 1, 1-Diphenyl-2-picrylhydrazyl radical. Chemical and pharmaceutical bulletin. 1989;37(8):2016-21.
  19. Fellegrini N, Ke R, Yang M, Rice-Evans C. Screening of dietary carotenoids and carotenoid-rich fruit extracts for antioxidant activities applying 2, 2'-azinobis (3-ethylenebenzothia zoline-6-sulfonic acid radical cation decolorization assay. Methods in Enzymology. 1999;299:379-89.
  20. Wunsch E, Heidrich H-G. Zur quantitativen bestimmung der kollagenase. 1963.
  21. Kraunsoe JA, Claridge TD, Lowe G. Inhibition of Human Leukocyte and Porcine Pancreatic Elastase by Homologues of Bovine Pancreatic Trypsin Inhibitor. Biochemistry. 1996;35:9090-6.
  22. Vanni R, Peretti D, Bianchi U. Esame elettroforetico delle tirosinasi di Musca domestica L. Atti della Accademia Nazionale dei Lincei Classe di Scienze Fisiche, Matematiche e Naturali Rendiconti. 1975;59:961-8.
  23. Joshi P, Sarkar S, Soni SK, Kumar D. Label-free colorimetric detection of Cr (VI) in aqueous systems based on flower shaped silver nanoparticles. Polyhedron. 2016;120:142-9.
  24. Kim BH, Lee YT, Kang KH. Codonopsis Lanceolata Inhibits Inflammation through Regulation of MAPK in LPS-stimulated RAW264.7 cells. J Physiol & Pathol Korean Med. 2010;24(1):80-4.
  25. Lowenstein CJ, Snyder SH. Nitric oxide, a novel biologic messenger. Cell. 1992;70:705-7.
  26. Weisz A, Cicatiello L, Esumi H. Regulation of the mouse inducible type nitric oxide synthase gene promotor by interferon-gamma, bacterial lipopolysaccharide and NGmonomethyl-L-arginine. Biochem J. 1996;316(1):209.
  27. Smith WL, DeWitt DL, Garavito RM. Cyclooxygenases: structural, cellular, and molecular biology. Annu Rev Biochem. 2000;69:145-82.
  28. Wang MT, Honn KV, Nie D. Cyclooxygenases, prostanoids, and tumor progression. Cancer Metastasis Rev. 2007;26(3-4):525-34.
  29. Huang H, Patel DD, Manton KG. The immune system in aging: roles of cytokines, T cells and NK cells. Frontiers in Bioscience-Landmark. 2005;10(1):192-215.
  30. Brand-Williams W, Cuvelier ME, Berset C. Use of a free radical method to evaluate antioxidant activity. Food Sci. Technol-Leb. 1995;28(1):25-30.
  31. Re R, Pellegrini N, Proteggente A, Pannala A, Yang M, Rice-Evans C. Antioxidant activity applying an improved ABTS radical cation decolorization assay. Free Radic Biol Med. 1999;26:1231-7.
  32. Kim JK, Lee JH, Yang MS, Seo DB, Lee JS. Beneficial Effect of Collagen Peptide Supplement on Anti-aging Against Photodamage. Korean J. Food Sci. Technol. 2009;41(4):441-5.
  33. Tsukahara K, Nakagawa H, Moriwaki S, Takema Y, Fujimura T, Imokawa G. Inhibition of ultraviolet-B-induced wrinkle formation by an elastase-inhibiting herbal extract: Implication for the mechanism underlying elastase-as sociated wrinkles. Int J Dermatol. 2006;45:460-8.
  34. Tsuji N, Moriwaki S, Suzuki Y, Takema Y, Imokawa G. The role of elastases secreted by fibroblasts in wrinkle formation: implication through selective inhibition of elastase activity. Photochem Photobiol. 2001;74(2):283-90.
  35. Mo JH, Oh SJ. Tyrosinase Inhibitory Activity and Melanin Production Inhibitory Activity of the Methanol Extract and Fractions from Dendropanax morbifera Lev. Kor. J. Aesthet. Cosmetol. 2013;11(2):275-80.