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Physiological Activities of Korean and Chinese Viola mandshurica Extracts

국내산과 중국산 자화지정(Viola mandshurica) 추출물의 생리활성

  • 최복동 (대구한의대학교 한방생약자원학과) ;
  • 박창수 (상주시청) ;
  • 주은영 (대구한의대학교 한방생약자원학과)
  • Published : 2008.09.30

Abstract

This study was carried out to compare the physiological activities of the extracts from Korean and Chinese Viola mandshurica W. Baker. The water extract from leaves of Chinese V. mandshurica exhibited the highest extraction yields of 30.45 g/100 g and the highest content of total flavonoids as 102.30 mg/g. Also, its ethanol extract showed the best content of polyphenol compounds as 136.16 mg/g. The leaf extract of Korean V. mandshurica produced higher electron donating abilities (EDA) of 92.69% (KLW) and 93.61% (KLE) than the other fractions. The strongest SOD-like activity was shown in the ethanol extract from Korean leaves of 17.28% at the concentration of 1.0 mg/mL. The nitrite scavenging abilities (NSA) of the leaf extracts of V. mandshurica from China were intense over 50% at pH 1.2 and 3.0. In the results of inhibitory rates of xanthine oxidase (XO), both ethanol extracts from Korean and Chinese leaves were higher than the other fractions as 98.67% and 93.80% respectively. Effect of tyrosinase inhibition was the highest in the water extract (45.04%) of Chinese leaves, followed by its ethanol extract (31.36%). The results of EDA, SOD-like activity and XO inhibition of the leaf extracts from Korean V. mandshurica were higher than those of Chinese, on the other hand, determinations on total polyphenol contents, NSA and tyrosinase inhibition were higher in those of Chinese.

국내에서 채집된 자화지정(V. mandshurica)의 잎과 뿌리 그리고 한방생약재로 유통, 판매되고 있는 중국산 자화지정의 생리활성을 측정 비교하였다. 중국산 자화지정의 물 추출물의 수율이 30.45 g/100 g으로 가장 높은 추출수율을 나타내었으며, 플라보노이드 함량도 102.30 mg/g으로 가장 많이 함유하였다. 추출물의 폴리페놀 함량은 중국산 자화지정의 에탄올 추출물에서 136.16 mg/g으로 가장 많이 함유된 것으로 분석되었다. 전자공여능은 국내에서 채집된 자회지정 잎의 물과 에탄올 추출물이 각각 92.69%와 93.61%를 나타내었다. SOD 유사활성능은 1.0 mg/mL의 농도에서 국내산 잎의 에탄올 추출물이 17.28%를 나타내었다. 아질산염 소거능은 중국산 잎 추출물이 pH 1.2와 pH 3.0의 조건에서 50% 이상의 소거율을 보였으며, xanthine oxidase 저해율은 국내산과 중국산 모두 잎의 에탄올 추출물에서 98.67%와 93.80%로 가장 높은 저해효과를 나타내었다. Tyrosinase 저해 활성을 측정한 결과에서는 중국산 잎의 물과 에탄올 추출물이 45.04%와 31.36%로 국내산 자화지정 잎과 뿌리보다 tyrosinase 저해율이 매우 높았다. 이상의 결과 추출물의 수율, 폴리페놀과 플라보노이드 화합물 함량 및 아질산염 소거능 그리고 tyrosinase 저해 활성은 중국산 자화지정이 국내산 자화지정보다 높은 함량과 활성을 나타내었으며, 전자공여능과 SOD 유사활성능 그리고 xanthine oxidase 저해 효과는 국내산이 중국산보다 높은 활성을 나타내었다. 그리고 자화지정의 뿌리 추출물은 국내산과 중국산의 자화지정 잎추출물보다 낮은 생리활성 효과를 나타내었다. 이상의 생리활성 결과는 자화지정이 훌륭한 기능성식품 소재임을 나타낸다고 할 수 있다.

Keywords

References

  1. Halliwell B, Hoult RJ, Blake DR. 1988. Oxidants, inflammation, and anti-inflammatory drugs. FASEB J 2: 2867-2870
  2. Kitahara K, Matsumoto Y, Ueda H, Ueoka R. 1992. A remarkable antioxidation effect of natural phenol derivatives on the autoxidation of irradiated methyl linoleate. Chem Pharm Bull 40: 2208-2209 https://doi.org/10.1248/cpb.40.2208
  3. Hatano T. 1995. Constituents of natural medicines with scavenging effect on active oxygen species-tannins and related polyphenols. Nat Med 49: 357-363
  4. Pratt DE. 1992. Natural antioxidants from plant materials. In Phenolic Compounds in Food and Their Effects on Health (II). Huang MT, Hl ST, Lee CY, eds. Am Chem Soc, Washington DC. p 54-60
  5. 특허청. 2005. 지식재산 통계연보. 특허청
  6. Nam HY, Cho JS. 2006. Quality characteristics of white pan bread with ingredients of Sagoonja-Tang. Korean J Food Cookery Sci 22: 458-467
  7. Hong SP, Jeong HS, Jeong EJ, Shin DH. 2006. Quality characteristic of beverage with Gastrodia elata Blume extract. J Fd Hyg Safety 21: 31-35
  8. KHP. 2007. The Korean Herbal Pharmacopoeia. 식품의약안전청. p 294
  9. 成都中醫學院主編. 1982. 中象學. 上海科學技術出版社, 上海. p 78
  10. 中醫大辭典編輯委員會編. 1982. 中醫大辭典 (中象分冊). 人民衛生出版社, 北京. p 362
  11. 李時珍. 1983. 本草綱目. 고문사, 서울. p 647
  12. 江蘇新醫學院.1999. 中藥大辭典.上海科學技術出版社,上海. p 800-802
  13. 國家中医药管理局編委会. 1999 中華本草. 上海科學技術出版社, 上海. Vol 5, p 463-468
  14. 신민교. 1986. 원색임상본초학. 남산당, 서울. p 340
  15. Yook CS, Lee WC, Moon CK. 1989. Studies on flavonoid glycoside of the leaves of Viola diamantica. Yakhak Hoeji 33: 124-128
  16. 문관심. 1984. 약초의 성분과 이용. 일월서각, 서울. p 481-482
  17. 박성규, 안덕균. 1991. 자화지정 종류의 효능에 관한 비교 연구. 본초분과학회지 6: 77-83
  18. Ko WC, Shin MK. 1987. Experimental studies on the analgesic and antiphlogistic effects of Violae herba. Kor J Pharmacogn 18: 210-215
  19. Lee BW, Kim DH. 2003. Inhibitory effect of Violae herba extract on inflammatory cytokine production by IL-1$\beta$ and TNF-$\alpha$ in cultured human synovial cells. Kor J Herbology 18: 89-96
  20. Yun JS, Chung BH, Kim NY, Seong NS, Lee HY, Lee JH, Kim JD. 2003. Screening of 94 plant species showing ACE inhibitory activity. Korean J Medicinal Crop Sci 11: 246-251
  21. Witkowska-Banaszczak E, Bylka W, Matlawska I, Goślinska O, Muszynski Z. 2005. Antimicrobial activity of Viola tricolor herb. Fitoterapia 76: 458-461 https://doi.org/10.1016/j.fitote.2005.03.005
  22. Moon HI, Lee J, Zee OP, Chung JH. 2005. The effect of flavonol glycoside on the expression of matrix metalloproteinase-1 in ultraviolet-irradiated cultured human skin fibroblasts. J Ethnopharma 101: 176-179 https://doi.org/10.1016/j.jep.2005.04.032
  23. Moon HI, Jung JC, Lee J. 2006. Aldose reductase inhibitory effect by tectorigenin derivatives from Viola hondoensis. Bioorg Med Chem 14: 7592-7594 https://doi.org/10.1016/j.bmc.2006.07.002
  24. Moon CK, Yook CS. 1981. Ein flavonol-triglykosid aus herba Viola japonica. Kor J Pharmacog 12: 146
  25. AOAC. 2005. Official Method of Analysis. 18th ed. Association of Official Analytical Chemists, Washington DC, USA. Vol 45, p 21-22
  26. Nieva Moreno MI, Isla MI, Sampietro AR, Vattuone MA. 2000. Comparison of the free radical-scavenging activity of propolis from several regions of Argentina. J Ethnopharmacol 71: 109-114 https://doi.org/10.1016/S0378-8741(99)00189-0
  27. Blois MS. 1958. Antioxidant determination by the use of a stable free radical. Nature 181: 1199-1200 https://doi.org/10.1038/1811199a0
  28. Marklund S, Marklund G. 1975. Involvement of superoxide amino radical in the oxidation of pyrogallol and a convenient assay for superoxide dismutase. Eur J Biochem 47: 468-474
  29. Kato H, Lee IE, Chuyen, NV, Kim SB, Hayase F. 1987. Inhibition of nitrosamine formation by nondialyzable melanoidins. Agric Biol Chem 51: 1333-1338 https://doi.org/10.1271/bbb1961.51.1333
  30. Stirpe F, Corte ED. 1969. The regulation of rat liver xanthine oxidase. J Biol Chem 244: 3855-3861
  31. Yagi A, Kanbara T, Morinobu N. 1987. Inhibition of mushroom-tyrosinase by aloe extract. Planta Medica 53: 517-519 https://doi.org/10.1055/s-2006-962798
  32. Moon JS, Kim SJ, Park YM, Hwang IS, Kim EY, Park JW, Park IB, Kim SW, Kang WG, Park YK, Jung ST. 2004. Antimicrobial effect of methanol extracts from some medicinal herbs and content of phenolic compounds. Korean J Food Preserv 11: 207-213
  33. Miliauskas G, Venskutonis PR, Been TAV. 2004. Screening of radical scavenging activity of some medicinal and aromatic plant extracts. Food Chem 85: 231-237 https://doi.org/10.1016/j.foodchem.2003.05.007
  34. Lee SO, Lee HJ, Yu MH, Im HG, Lee IS. 2005. Total polyphenol contents and antioxidant activities of methanol extracts from vegetables produced in Ullung island. Korean J Food Sci Technol 37: 233-240
  35. Kim EY, Baik IH, Kim JH, Kim SR, Rhyu MR. 2004. Screening of the antioxidant activity of some medicinal plants. Korean J Food Sci Technol 36: 338-338
  36. Jung SJ, Lee JH, Song HN, Seong NS, Lee SE, Baek NI. 2004. Screening for antioxidant activity of plant medicinal extracts. J Korean Soc Appl Biol Chem 47: 135-140
  37. Lim JD, Yu CY, Kim MJ, Yun SJ, Lee SJ, Kim NY, Chung IM. 2004. Comparison of SOD activity and phenolic compound contents in various Korean medicinal plants. Korean J Medicinal Crop Sci 12: 191-202
  38. Moon JS, Kim SJ, Park YM, Hwang IS, Kim EH, Park JW. 2004. Activities of antioxidation and alcohol dehydrogenase inhibition of methanol extracts from some medicinal herbs. Korean J Food Preserv 11: 201-206
  39. Kim HK, Kim YE, Do JR, Lee YC, Lee BY. 1995. Antioxidative activity and physiological activity of some Korean medical plants. Korean J Food Sci Technol 27: 80-85
  40. Kytopoulos SA. 1987. Ascorbic acid and formation of N-nitroso compounds; possible role of ascorbic acid in cancer prevention. Am J Clin Nutr 45: 1344-1350
  41. Takashi Y, Yamamoto M, Tamura A. 1978. Studies on the formation of nitrosamines; The effects of some polyphenols on nitrosation of diethylamine. J Food Hyg Soc 19: 224-229 https://doi.org/10.3358/shokueishi.19.224
  42. Cooney RW, Ross PD. 1987. N-nitrosation and N-nitration of morphpline by notrogen dioxide in aqueous solution: effect of vanillin and related phenols. J Agric Food Chem 35: 789-793 https://doi.org/10.1021/jf00077a036
  43. Yeo SG, Park YB, Kim IS, Kim SB, Park YH. 1995. Inhibition of xanthine oxidase by tea extracts from green tea, oolong tea and black tea. J Korean Soc Food Nutr 24: 154-159
  44. Kim MH, Kang WW, Lee NH, Kwoen DJ, Choi UK. 2007. antioxidant activities of extract with water and ethanol of Perilla frutescens var. acuta kudo leaf. J Korean Soc Appl Biol Chem 50: 327-333
  45. Kim SJ, Heo MY, Kang SS, Kim HP. 2003. Tyrosinase inhibitory activity of plant extracts (III): Fifty Korean indigenous plants. J Appl Pharmacol 11: 245-248
  46. Choi BW, Kee BH, Kang JH. 1998. Screening of the tyrosinase inhibitors from marine algae and medicinal plants. Kor J Pharmacogn 29: 237-242

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