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Antimutagenic Effects of Korean Bamboo Trees and Inhibitory Effect of Hepatic Toxicity of Bamboo Extracts Coated Rice

한국산 대나무의 항돌연변이 효과 및 대나무 코팅쌀의 간 독성 억제효과

  • Lee, Min-Ja (School of Food and Life Science, Biohealth Products Research Center and Food Science Institute, Inje University) ;
  • Kim, Eun-Young (School of Food and Life Science, Biohealth Products Research Center and Food Science Institute, Inje University) ;
  • Jeong, Keun-Ok (Dept. of Food Science and Nutrition, Pusan National University) ;
  • Park, Kun-Young (Dept. of Food Science and Nutrition, Pusan National University) ;
  • Moon, Gap-Soon (School of Food and Life Science, Biohealth Products Research Center and Food Science Institute, Inje University)
  • 이민자 (인제대학교 식품생명과학부, 바이오헬스 소재연구센터, 식품과학연구소) ;
  • 김은영 (인제대학교 식품생명과학부, 바이오헬스 소재연구센터, 식품과학연구소) ;
  • 정근옥 (부산대학교 식품영양학과) ;
  • 박건영 (부산대학교 식품영양학과) ;
  • 문갑순 (인제대학교 식품생명과학부, 바이오헬스 소재연구센터, 식품과학연구소)
  • Published : 2004.10.01

Abstract

To evaluate the antimutagenic effect and hepato protective of bamboo trees and bamboo byproduct, hot-water extracts from four kinds of bamboo [wang-dae (Phyllostachys bambusoides S. et Z.), som-dae (Phyllostachys nigra var. henonis), maengjong-juk (Phyllostachys pubescens) and o-juk (Phyllostachys nigra Munro)] and maengjong-juk extract coated rice were evaluated for antimutagenicity by Ames test using Salmonella typhimurium TA100. Bamboo extracts showed strong antimutagenic activity in the Ames test which MNNG was used as mutagen in the absence and presence of S9 mix. Maengjong-juk extract coated rice diet suppressed the loss of body weight significantly. Food intake was increased in maengjong-juk extract coated rice supplemented group but showed no significant differences between control and maengjong-juk extract coated rice diet groups. Food efficiency of maengjong-juk extract coated rice supplemented group was significantly higher than that of the control group. Liver weight was significantly increased by maengjong-juk extract coated rice diet administration. Plasma GOT & GPT activities of rabbit were significantly suppressed in maengjong-juk extract coated rice supplemented group. These results suggest that bamboo trees extracts and maengjong-juk extract coated rice are bioavailable resource on treatment of cardiovascular disease, such as atherosclerosis and hypercholesterolemia.

대나무 열수 추출물의 독성 및 항돌연변이 활성을 Ames test를 통해 평가하고 이 중 맹종죽 열수 추출물을 쌀에 코팅한 맹종죽 코팅쌀의 간 독성 억제효과를 고콜레스테롤을 섭취한 NZW계 토끼를 이용한 동물실험을 통해 시험한 결과 다음과 같은 결론을 얻었다. 왕대, 솜대, 맹종죽, 오죽 추출물의 독성 및 돌연변이 억제 효과를 관찰한 결과 대나무 추출물을 0.25∼5.0 mg/plate 농도로 Salmonella typhimurium TA100에 처리하였을 때 독성을 전혀 나타내지 않았다. 또한 대나무 추출물은 S9 mix를 필요로 하거나 또는 필요로 하지 않는 돌연변이원에 대해 강한 저해효과를 나타내었다. 또한 대나무 추출물이 MNNG 투여에 의한 돌연변이 생성율 감소에 미치는 영향을 관찰한 결과 왕대, 솜대 및 맹종죽 추출물을 2.0 mg/plate 농도로 처리하였을 때 96%의 저해 효과를 나타내어 강한 항돌연변이 효과를 보였다. 한편, 맹종죽 코팅쌀을 고콜레스테롤 섭취 토끼에게 16주간 급식한 결과 맹종죽 코팅쌀은 토끼의 체중감소를 유의적으로 억제하였으며 식이섭취량은 유의적인 차이는 나타나지 않았으나 다소 증가하였고 식이효율은 HC군에 비해 HR+MR군에서 유의적으로 높았다. 토끼 조직의 무게에 있어서도 간 무게의 경우 HC군에 비해 HC+MR군에서 유의적으로 높게 나타났고 심장, 신장, 비장 및 폐 조직의 무게에 있어서는 두 군간에 유의적인 차이가 관찰되지 않았다. 또한 혈장에서의 GOT 및 GPT 농도를 관찰한 결과 맹종죽 코팅쌀이 두 효소의 활성을 현저히 억제하여 간 보호 효과를 지니는 것으로 사료되었다. 이로써, 대나무 추출물은 독성이 없고 항돌연변이 활성을 나타내며 맹종죽 코팅쌀은 동물의 성장에 있어 해로운 영향을 미치지 않아 안전한 것으로 나타났다.

Keywords

References

  1. Frank MS, Martijn K. 2002. Randomized clinical trials on the effects of dietary fat and carbohydrate on plasma lipoproteins and cardiovascular disease. Am J Med 113: 13s- 24s https://doi.org/10.1016/S0002-9343(01)00987-1
  2. Frank MS, Martijn K. 2002. Randomized clinical trials on the effects of dietary fat and carbohydrate on plasma lipoproteins and cardiovascular disease. Am J Med 113: 13s- 24s https://doi.org/10.1016/S0002-9343(01)00987-1
  3. Penny M, Kris E, Kari DH, Andrea B, Stacie MC, Amy EB, Kirsten FH, Amy EG, Terry DE. 2002. Bioactive compounds in foods: their role in the prevention of cardiovascular disease and cancer. Am J Med 113: 71-88 https://doi.org/10.1016/S0002-9343(01)00995-0
  4. Barbara EM, Paula AQ, Nam BH, Catherine EO, Joseph FP, Ralph BD. 2002. Dietary patterns and the odds of carotid atherosclerosis in women: The Framingham Nutrition Studies. Prev Med 35: 540-547 https://doi.org/10.1006/pmed.2002.1116
  5. Richard CH, Loren C. 2000. The potential role of biotin insufficiency on essential fatty acid metabolism and cardiovascular disease risk. Nutrition Research 20: 1201-1212 https://doi.org/10.1016/S0271-5317(00)00201-3
  6. Michiko F. 1990. Difference between bamboo shoots and vegetables in thermal disintegration of tissues and polysaccharides fractionated by successive extraction. J Food Sci 55: 739-745 https://doi.org/10.1111/j.1365-2621.1990.tb05219.x
  7. Kweon M, Hwang HJ, Sung HC. 2001. Identification and antioxidant activity of novel chlorogenic acid derivatives from bamboo (Phyllostachys edulis). J Agric Food Chem 49: 4646-4655 https://doi.org/10.1021/jf010514x
  8. Hu C, Zhang Y, Kitts DD. 2000. Evaluation of antioxidant and prooxidant activities of bamboo (Phyllostachys nigra var.). Henonis leaf extract in vitro. J Agric Food Chem 48: 3170-3176 https://doi.org/10.1021/jf0001637
  9. Kim MJ, Byun MW, Jang MS. 1996. Physiological and antibacterial activity of bamboo (Sasa coreana Nakai) leaves. J Korean Soc Food Sci Nutr 25: 135-142
  10. Kim NK, Cho SH, Lee SD, Ryu JS, Shim KH. 2001. Functional properties and antimicrobial activity of bamboo (Phyllostachys sp.) extracts. Korean J Postharvest Sci Technol 8: 475-480
  11. Baek JW, Jung SH, Moon GS. 2002. Antimicrobial activities of ethanol extracts from Korean bamboo culms and leaves. Korean J Food Sci Technol 34: 1073-1078
  12. Kim MJ, Kim BK, Jang MS. 1996. Effect of bamboo (Pseudosasa japonica Makino) leaves on the quality and sensory characteristics of Dongchimi. J Food Sci Nutr 1: 159-167
  13. Chung DK, Yu RN. 1995. Antimicrobial activity of bamboo leaves extract on microorganisms related to kimchi fermentation. Korean J Food Sci Technol 27: 1035-1038
  14. Zang, Y, Wu X, Yu ZY. 2002. Comparison study on total flavonoid content and anti-free radical activity of leaves of bamboo, Phyllostachys nigra, and Ginko biloba. China Journal of Chinese Materia Medica 27: 254-257
  15. Lee MJ, Moon GS. 2003. Antioxidative effects of Korean bamboo trees, wang-dae, som-dae, maengjong-juk, jolit- dae and o-juk. Korean J Food Sci Technol 35: 1226-1232
  16. Olga S, Joachim T, Yechezkiel S. 2002. Is there a genetic basis for resistance to atherosclerosis? Atherosclerosis 160: 1-10 https://doi.org/10.1016/S0021-9150(01)00664-5
  17. Morganti M, Carpi A, Nicolini A, Gorini I, Glaviano B, Fini M, Giavaresi G, Mittermayer C, Giardino R. 2002. Atherosclerosis and cancer: common pathways on the vascular endothelium. Biomedecine & Pharmacotherapy 56: 317- 324 https://doi.org/10.1016/S0753-3322(02)00242-1
  18. Kadar A, Glasz T. 2001. Development of atherosclerosis and plaque biology. Cardiovascular Surgery 9: 109-121 https://doi.org/10.1016/S0967-2109(00)00097-1
  19. Jay WH. 1998. Oxidants and antioxidants in the pathogenesis of atherosclerosis: implications for the oxidized low density lipoprotein hypothesis. Atherosclerosis 141: 1-15
  20. Ames BN, Maron DM. 1983. Revised methods for the Samonella mutagenicity test. Mutat Res 113: 173-215 https://doi.org/10.1016/0165-1161(83)90010-9
  21. Park KY. 1995. The nutritional evaluation and antimutagenic and anticancer effects of kimchi. J Korean Soc Food Nutr 24: 169-182
  22. Verschaeve L, Kestens V, Taylor JLS, Elgorashi EE, Maes A, Van Puyvelde L, De Kimpe N, Van Staden J. 2004. Investigation of the antimutagenic effects of selected South African medicinal plant extracts. Toxicology in Vitro 18: 29-35 https://doi.org/10.1016/S0887-2333(03)00131-0
  23. Krul C, Luiten-Schuite A, Tenfelde A, Ommen B, Verhagen H, Havenaar R. 2001. Antimutagenic activity of green tea and black tea extracts studied in a dynamic in vitro gastrointestinal model. Mutation Research/Fundamental and Molecular Mechanisms of Mutagenesis 474: 71-85 https://doi.org/10.1016/S0027-5107(00)00158-5
  24. Negi PS, Jayaprakasha GK, Jena BS. 2003. Antioxidant and antimutagenic activities of pomegranate peel extracts. Food Chemistry 80: 393-397 https://doi.org/10.1016/S0308-8146(02)00279-0
  25. Chen SC, Chung KT. 2000. Mutagenicity and antimutagenicity studies of tannic acid and its related compounds. Food and Chemical Toxicology 38: 1-5
  26. Shin MK, Han SH. 2002. Effects of methanol extracts from bamboo (Pseudosasa japonica Makino) leaves extracts on lipid metabolism in rats fed high fat and high cholesterol diet. Korean J Dietary Culture 17: 30-36
  27. Achliya GS, Wadodkar SG, Dorle AK. 2004. Evaluation of hepatoprotective effect of Amalkadi ghrita against carbon tetrachloride-induced hepatic damage in rats. J Ethnopharmacol 90: 229-232 https://doi.org/10.1016/j.jep.2003.09.037
  28. Camandola S, Aragno M, Cutrin JC, Tamagno E, Danni O, Chiarpotto E, Parola M, Leonarduzzi G, Biasi F, Poli G. 1999. Liver AP-1 activation due to carbon tetrachloride is potentiated by 1,2-dibromoethane but is inhibited by $\alpha$-tocopherol or gadolinium chloride. Free Radic Biol Med 26: 1108-1116 https://doi.org/10.1016/S0891-5849(98)00298-6
  29. Gilani AH, Janbaz KH, Akhtar MS. 1996. Selective protective effect of an extract from Fumaria parviflora on paracetamol induced hepatotoxicity. General Pharmacology: The Vascular System 27: 979-983 https://doi.org/10.1016/0306-3623(95)02140-X
  30. Sung IS, Park EM, Lee MK, Han EK, Jang JY, Cho SY. 1997. Effect of acrn extracts on the antioxidative enzyme system. J Korean Soc Food Sci Nutr 26: 494-500
  31. Choi HS, Cha SS, Na MS, Shin KM, Lee MY. 2001. Effect of the ethanol extract of Cassia tora L. on antioxidative compounds and lipid metabolism in hepatotoxicity of rats- induced by ethanol. J Korean Soc Food Sci Nutr 30: 1177- 1183

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