한국산 감잎의 Polyphenol 화합물의 생리활성물질의 화학구조 및 효소저해효과

Identification of Biologically Effect and Chemical Structure of Polyphenol Compounds from the Leaves of Korea Persimmon (Diospyrus kaki L. Folium)

  • 안봉전 (경산대학교 생명자원공학부) ;
  • 최희진 (영남대학교 생물산업공학부) ;
  • 손준호 (영남대학교 생물산업공학부) ;
  • 우희섭 (동주대학 식품과학계열) ;
  • 한호석 (영남대학교 생물산업공학부) ;
  • 박정혜 (영남대학교 생물산업공학부) ;
  • 손규목 (창원전문대학 식품영양과) ;
  • 최청 (영남대학교 생물산업공학부)
  • An, Bong-Jeon (Faculty of Life Resources and Engineering, Kyungsan University) ;
  • Choi, Hee-Jin (Department of Food Science and Technology, Yeungnam University) ;
  • Son, Jun-Ho (Department of Food Science and Technology, Yeungnam University) ;
  • Woo, Hee-Seob (School of Food science, Dongju College) ;
  • Han, Ho-Suk (Department of Food Science and Technology, Yeungnam University) ;
  • Park, Jung-Hye (Department of Food Science and Technology, Yeungnam University) ;
  • Son, Gyu-Mok (Department of Food & Nutrition, Changwon Junior College) ;
  • Choi, Cheong (Department of Food Science and Technology, Yeungnam University)
  • 발행 : 2003.10.30

초록

The lyophilization of the solution extracted from 60 percent of acetone applied to persimmon leaves, the compounding process in accordance with the solution's concentration, and the gel filteration through Sephadex G-50 of biologically activated substances obstructing enzyme activity, such as tyrosinase, xanthine oxidase, and angiotesin converting enzyme (ACE) led to the assumption that polyphenol was the compound serving as biologically activated substances obstructing enzyme activity. Xanthine oxidase involved in pruine metabolism oxidizes hypoxanthine to xanthine and xanthine to uric acid. In the continuous study for natural compound, nine flavan-3-ols have been isolated from the persimmon leaves. The structures of (+)-catechin, (+)-gallocatechin, procyanidin B-1, pyrocyanidin C-1, prodelphinidin B-3, gallocatechin-$(4{\alpha}{\rightarrow}8)$-catechin, procyanidin B-7-3-O-gallate, procyanidin C-1-3'-3'-3'-O-trigallate and (-)-epigallocatechin-$(4{\alpha}{\rightarrow}8)$-epigallocatechin-$(4{\alpha}{\rightarrow}8)$-catechin were established by NMR and their inhibitory effect on xanthine oxidase activity was investigated. Procyanidin B-7-3-O-gallate, (-)-epigallocatechin-$(4{\alpha}{\rightarrow}8)$-epigallocatechin-$(4{\alpha}{\rightarrow}8)$-catechin and procyanidin C-1-3'-3'-3'-O-trigallate showed 94%, 90.69%, 80.90% inhibition at $100\;({\mu})M$ and inhibited on the angiotensin converting enzyme respectively. Procyanidin B-7-3-O-gallate and procyanidin C-1-3'-3'-3'-O-trigallate showed 66%, 63% inhibition at $100\;({\mu})M$ and inhibited on the xanthine oxidase competitively. Procyanidin C-1-3'-3'-3'-O-trigallate showed 70% inhibition at $100\;({\mu})M$ and inhibited on the tyrosinase competitively.

키워드

참고문헌

  1. Chung SH, Moon KD, Kim JK, Seong JH, Sohn TH. Change of chemical components in persimmon leaves during growth for processing persimmon leaves tea. Korean J Food Sci Technol 26: 141-146, 1994
  2. Choi HJ, Son JH, Woo HS, An BJ, Bae MJ, Choi C. Changes of composition in the species of persimmon leaves during growth. Korean J Food Sci Technol 30: 529-534, 1998
  3. Choi SH. The aroma components of duchung tea and persimmon leaf tea. Korean J Food Sci Technol 22(4): 405-410, 1990
  4. Choi SJ, Jun WJ, Yu KW, Shin DH, Hong BS, Cho HY, Yang HC. Purification and characterization of angiotensin Iconverting enzyme inhibitor from porphura yezoensis. J Korean Soc Food Sci Nutr 29: 719-725, 2000
  5. Park JY, Park EM, Lee MK, Jang JY, Kim MJ, Cho SY. Effect of persimmon leaves extract on serum and lever lipid concentrations in hypercholesterolemic rats. J Korean Soc Food Sci Nutr 29: 537-542, 2000
  6. Kameda K, Takaku T, Okuda H, Kimura Y. Inhibitory effects of various flavonoids isolated from leaves of persimmon on angiotensin-converting enzyme activity. J Natural Products 50: 680-686, 1978 https://doi.org/10.1021/np50052a017
  7. Kim BG, Rhew TH, Choe ES, Chung HY, Park KY, Rhee SH. Effect of selected persimmon leaf components against spontaneosly hypertensive rats (SHRSP) ingesting persimmon tannin. Chem Pharm Bull 38: 1049-1054, 1990 https://doi.org/10.1248/cpb.38.1049
  8. Cushman DW, Ondetti MA. Inhibitors of angiotensin converting enzyme for treatment of hypertension. Biochem Pharmacology 29: 1871-1877, 1980 https://doi.org/10.1016/0006-2952(80)90096-9
  9. Matsuo T, Ito S. The chemical structure of kaki tannin from immature fruit of the persimmon (Diospyros kaki L.)(in Japanese). Agric Biol Chem 42: 1637-1639, 1978 https://doi.org/10.1271/bbb1961.42.1637
  10. Funayama S, Hikino H. Hypotensive principles of Diospyros kaki leaves. Chem Pharm Bull 27: 2865-2870, 1979 https://doi.org/10.1248/cpb.27.2865
  11. Uchida S, Ohta H, Niwa M, Mori A, Nonaka G, Nishioka I, Ozaki M. Prolongation of life span of stroke-prone spontaneosly hypertensive rats (SHRSP) ingesting persimmon tannin. Chem Pharm Bull 38: 1049-1054, 1990 https://doi.org/10.1248/cpb.38.1049
  12. Osawa T, Namiki M. A novel type of antioxidant isolated from leaf wax of Eucalyptus leaves. Agric Biol Chem 45: 735-740, 1981 https://doi.org/10.1271/bbb1961.45.735
  13. Hashimoto F, Nonaka, Nishioka I. Novel Chalcan-flavan Dimers, Assamicans A, B and C and a New Flavan-3-ol and Proanthocyanidins from the Fresh Leaves of Camollia sinensis L. Chem Pharm Bull 37(1): 77-82, 1989 https://doi.org/10.1248/cpb.37.77
  14. An BI, Kim WK, Choi JY, Kwon IB, Choi C. Structure and Isolation of xanthine oxidase Inhibitor from Uolong Tea. Korean J Food Sci Technol 24: 558-562, 1992
  15. An BJ, Choi JY, Kwon IB, Nishioka I, Choi C. Structure and Isolation of Glucosyltransferase Inhibitor from Jack Fruit tea Leaf. Korean Biochem J 25: 347-353, 1992
  16. Storch J, Ferber E. Detergent-Amplified Chemiluminescence of Lucigenin for Determination of Superoxide Anion Production by NADH Oxide and Xanthine Oxidase. Analytical Biochemistry, 169: 262, 1988 https://doi.org/10.1016/0003-2697(88)90283-7
  17. Nonak G. Isolation and Structure elucidation of Tannins. Pure & Appl. Chem. 61(3): 357, 1989 https://doi.org/10.1351/pac198961030357
  18. Hashimoto F, Nonaka G, Nishioka I. Isolation of Four New Acylated Flavam-3-ols from Oolong Tea. Chem Pharm Bull 35(2): 611, 1987 https://doi.org/10.1248/cpb.35.611
  19. Wani MC, Taylor HL, Wall ME. The Isolation and Structure of Taxol, from Taxus brevifolia. American J Chem Soc 2325, 1971
  20. Haslam F. Galloyl ester in the Aceraceae. Phytochemistry, 4: 495, 1965 https://doi.org/10.1016/S0031-9422(00)86202-0
  21. Okauda T, Yoshida T, Hattano T. Ellagitannins as active constituents of medicinal Plants. Plant medica 55: 117(502)
  22. Morimoto Y, Nonaka G, Nishioka Ⅰ. Isolation and Structure of Novel bi-and triflavonoids from the leaves of Cassia fistula L. Chem Pharm Bull 38: 717, 1988
  23. Yagi K. Lipid peroxides and human disesse. Chem Phys Lipids. 45: 337-341, 1987 https://doi.org/10.1016/0009-3084(87)90071-5
  24. Stirpe F, Corte ED. The regulation of rat liver xanthine oxidase. J BioI Chem 244: 3855-3860, 1969
  25. Cushman DW, Ondetli MA. Inhibitors of angiotensin converting enzyme for treatment of hypertension. Biochem Pharm 29: 1871-1877, 1980 https://doi.org/10.1016/0006-2952(80)90096-9