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Anti-aging Effects of Solvent Fraction from Agrimonia pilosa L. Extracts

선학초 용매 분획물의 항노화 효과

  • Yoon, Ji-Young (Department of Herbal Cosmetic Science, Hoseo University) ;
  • Lee, Soo-Yeon (Department of Herbal Cosmetic Science, Hoseo University) ;
  • Jun, Hye-Ji (Department of Herbal Cosmetic Science, Hoseo University) ;
  • Lee, Jin-Young (Department of Herbal Cosmetic Science, Hoseo University)
  • Received : 2011.10.13
  • Accepted : 2011.12.06
  • Published : 2012.03.31

Abstract

The purpose of this study was to research about the ingredients for anti-oxidation and anti-wrinkle effects of the solvent fractions from Agrimonia pilosa L. hot water (AW) and 70% ethanol (AE) extracts. The electron donating ability of the solvent fractions from AW and AE extracts showed 84.9, 92.5% in ethyl acetate layer of AW and AE at 1,000 ppm. The superoxide dismutase like activity of solvent fractions from AW and AE extracts showed 61.8% in ethyl acetate layer of AW extracts and 58.0% in buthanol layer of AE extracts at 1,000 ppm. For anti-wrinkle effect, elastase inhibition effect of the solvent fractions from AW and AE extracts showed 55.2, 70.1% in ethyl acetate layer of AW and AE extracts at 1,000 ppm. And collagenase inhibition effect of the solvent fractions from AW and AE extracts showed highest inhibition effect as 90.6% in ethyl acetate layer of AW extract and 88.6% in $n$-butyl alcohol layer of AE extract at 1,000 ppm. All these findings suggested that solvent fractions from AW and AE extracts has an anti-oxidation and anti-wrinkle effects.

선학초 열수 추출물과 에탄올 추출물의 분획물을 항산화 및 주름개선의 소재로 이용하기 위하여 생리활성을 검증하였다. 항산화효과를 확인하기 위하여 전자공여능을 측정한 결과 선학초 열수추출물(AW)과 에탄올추출물(AE) 모두 ethyl acetate층 1,000 ppm에서 각각 96.2, 92.3%의 효과를 나타내었고, SOD 유사활성능을 측정한 결과 AW의 ethyl acetate층에서 61.8%의 활성을 AE의 $n$-butyl alcohol 층에서 58.0%의 높은 활성을 각각 나타내었다. 또한 xanthine oxidase저해활성을 측정한 결과 AW와 AE에서 모두 ethyl acetate층 1,000 ppm일 때, 각각 84.9, 92.5%의 가장 높은 저해율을 나타내었다. 주름개선 효능 확인을 위해 elastase 저해활성을 측정한 결과 이 또한 AW와 AE 모두에서 ethyl acetate층이 각각 55.2, 70.1%의 효능을 나타내었으며, collagenase 저해활성을 측정한 결과 AW의 ethyl acetate층이 90.6%로 가장 높은 저해율을, AE는 88.6%로 $n$-butyl alcohol 층이 가장 높은 저해율을 나타내었다. 이상의 결과로 미루어 보아 선학초의 열수 추출물과 에탄올 추출물의 분획물이 in vitro상에서 항산화 및 주름개선의 활성이 있음을 확인할 수 있었다.

Keywords

References

  1. Blois MS (1958) Antioxidant determination by the use of a stable free radical. Nature 26, 1199-1120.
  2. Cannell RJP, Kellan SJ, Owsianks AM, and Walker JM (1988) Results of a large scale screen of microalgae for the production of protease inhibitors. Planta Med 54, 10-14. https://doi.org/10.1055/s-2006-962319
  3. Cha WS, Ju IS, Yun DH, Chun SS, Kim JH, and Cho YJ (2009) Biological activity of extracts from Cherry sage. J Life Sci 19, 390-396. https://doi.org/10.5352/JLS.2009.19.3.390
  4. Cho WG, Kyung KY, and Yu SM (2009) Stability of paeoniflorin used as antiwrinkle agents in emulsions. J Korean Oil Chemists Soc 26, 191-198.
  5. Gang SR, Min KJ, and Kim YC (2009) The inhibitory effect of Saururus chinensis water extract on skin wrinkle in hairless mice. J Korean Soc Cosm 15, 1389-1398.
  6. Jeroma SP, Gabrielle L, and Raul F (1998) Identification of collagen fibrils in scleroderma skin. J Invent Dermatol 90, 48-54.
  7. Kim DS, Kim YM, Woo WH, and Mun YJ (2010) Study of inhibitory effect of melanogenesis and antioxidant activity of Agrimonia pilosa Ledeb. Korean J Oriental Physiology & Pathology 24, 236-241.
  8. Kim ID, Kwon RH, Heo YY, Jung HJ, Kang HY, and Ha BJ (2008) Supercritical extraction of oriental herb: Anti-aging and anti-wrinkle effects. Korean J Biotechnol Bioeng 23, 529-534.
  9. Kim JC (2010) Study on cosmeceutical activities of Pharbitis nil Choisy. MS Thesis, Daegu Haany University, Gyeongsan, Korea.
  10. Kim MJ, Kim JY, Jung TK, Choi SW, and Yoon KS (2006) Skin anti-aging effect of Forsythia viridissima L. extract. Korean J Biotechnol Bioeng 21, 444-450.
  11. Kim YS (2010) A study on verification of cosmeceutical activities from Theobroma cacao L. and cosmeceutical application. Ph. D Thesis, Daegu Haany University, Gyeongsan, Korea.
  12. Kwak JH, Choi GN, Park JH, Kim JH, Jeong HR, Jeong CH, and Heo HJ (2010) Antioxidant and neuronal cell protective effect of purple sweet potato extract. J Agric Life Sci 44, 57-66.
  13. Kwak YJ, Lee DH, Kim NM, and Lee JS (2005) Screening and extraction condition of anti-skin aging elastase inhibitor from medicinal plants. Korean J Medicinal Crop Sci 13, 213-216.
  14. Kwon GJ, Choi DS, and Wang MH (2007) Biological activities of hot water extracts from Euonymus alatus Leaf. Korean J Food Sci Technol 39, 569-574.
  15. Lee JW, Lee JS, and Lee JS (2008) Extraction and characterization of an antiwrinkle elastase inhibitor from Rheum undulatum L. Korean J Food & Nutr 21, 143-147.
  16. Lee SH, Jung H, Lee JA, Go HY, Choi YK, Park JH, Kim JH, Ko SK, and Jun CY (2009) The anticancer effects and drug metabolic enzyme change by oral intake of Agrimonia Pilosa Ledeb. Korean J Orient Prev Med Soc13, 51-64.
  17. Lee YS, Choi BD, Joo EY, Shin SR, and Kim NW (2009) Antioxidative activities and tyrosinase inhibition ability in various extracts of the Vitex rotundifolia seeds. Korea J Food Preserv 16, 101-108.
  18. Lim JD, Yu CY, Kim MJ, Yun SJ, Lee SJ, Kim NY, and Chung IM (2004) Comparision of SOD activity and phenolic compound contents in various Korean medicinal plants. Korean J Medicinal Crop Sci 12, 191−202.
  19. Lim SJ and Kim JD (2009) Skin-whitening awareness and whitening-care behavior in women. J Korean Soc Cosm 15, 463-474.
  20. Marklund S and Marklund G (1974) Involvement of the superoxide anion radical in the autoxidation of pyrogallol and a convenient assay for superoxide dismutase. Eur J Biochem 47, 469-474. https://doi.org/10.1111/j.1432-1033.1974.tb03714.x
  21. Min KJ, Song JW, and Cha CG (2008) The antioxidative and antitumor activity of extracts of Agrimonia pilosa. J Fd Hyg Safety 23, 149-156.
  22. Oh MH, Lee JE, Kim SY, Kim SY, Park KC, Yun HY, Baek KJ, Kwon NS, and Kim DS (2009) Screening system establishment for potential antiwrinkle agents using human fibroblast elastase. J Soc Cosmet Scientists Korea 35, 19-25.
  23. Seo IA (2010) Studies on cosmeceutical of Phaseolus radiatus. MS Thesis, Daegu Haany University, Gyeongsan, Korea.
  24. Song JW (2007) Antioxidative and antitumor activities of extracts from Saussurea lappa, Agrimonia pilosa and Prunnella vulgaris. MS Thesis, Keimyung University, Daegu, Korea.
  25. Stirpe F and Della Corte E (1969) The regulation of rat liver xanthine oxidase. conversion in vitro of the enzyme activity from dehydrogenase (type D) to oxidase (type O). J Biol Chem 244, 3855-3863.
  26. Wunsch E and Heindrich HG (1963) Zur quantitativen bestimmung der collagenase. Hoppe-Seyler's Physiol Chem 333, 149-151. https://doi.org/10.1515/bchm2.1963.333.1.149
  27. Yoon KY, Hong JY, Nam HS, Moon YS, and Shin SR (2007) Antioxidant activities and xanthine oxidase inhibitory effects of hot-water extracts from fruits of Elaeagnus multiflora Thunb. in maturity. J Korean Soc Food Sci Nutr 36, 14-19. https://doi.org/10.3746/jkfn.2007.36.1.014

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