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Effects of Polymannuronate on Cholesterol Contents of Liver Tissue and Feces in Rats

Polymannuronate가 흰쥐의 간장조직과 분변 중의 콜레스테롤 함량에 미치는 영향

  • Kim, In-Hye (Faculty of Food Science and Biotechnology, Pukyong National University) ;
  • Nam, Taek-Jeong (Faculty of Food Science and Biotechnology, Pukyong National University)
  • 김인혜 (부경대학교 식품생명공학부) ;
  • 남택정 (부경대학교 식품생명공학부)
  • Published : 2005.12.01

Abstract

This study investigated the effects of polymannuronate feeding on cholesterol levels of serum, liter tissue, and feces in rats. After one week of general diet feeding, four week old S.D. rats were fed basal group, cholesterol diet group (1$\%$ cholesterol), and rolymannuronate diet group (1$\%$ cholesterol,5$\%$ polymannuronate). The total cholesterol levels in the serum and liver tissue was significantly decreased in the polymannuronate diet group. The polymannuronate diet group showed increased amounts of feces, total fecal bile acid and dietary fiber contents compared to basal diet group and cholesterol diet groups. Also, the histology of liver showed serious localized fat drops in the cholesterol diet group, but the polymannuronate diet group showed fewer localized fat drops. These results suggest that feeding of polymannuronate improves the lipid metabolism profile of rats by changing the serum and liver tissue cholesterol levels with increased level of the total bile acid, total dietary fiber and total cholesterol level in the feces.

Polymannuronate를 첨가한 사료를 흰쥐에 각각 기초식이군, 콜레스테롤식이군과 5$\%$ polymannuronate가 함유된 콜레스테롤식이군을 4주간 급이한 후 혈청, 간장조직 및 분변에 미치는 영향을 살펴보았다. 콜레스테롤식이군에 비해 polymannuronate식이군에서는 혈청 및 간장조직의 총콜레스테롤 함량이 유의적으로 감소하였으며, 간장조직 중의 지방분포도 동일한 경향을 보였다. Polymannuronate식이군은 콜레스테롤식이군보다 일일 분변량이 유의적으로 증가하였는데, polymannuronate가 답즙산 및 콜레스테롤과 결합하여 분변으로 배출되어 분변 중의 총담즙산과 총콜레스테롤 및 총식이섬유 함량이 증가한 것으로 보여진다. 이상의 결과에서, polymannuronate는 체내에서 담즙산 및 총콜레스테롤과 결합하여 분변 중으로 배출함으로써 흰쥐의 혈청 및 간장조직 중의 총콜레스테롤 함량을 감소시켜 지질개선의 효과를 나타내는 것으로 보여 진다.

Keywords

References

  1. Burkitt DP, Trowell HC. 1975. Refined carbohydrate food and disease: The implications of dietary fiber. Academic Press, London
  2. Van Itallite TB. 1978. Dietary fiber and obesity. Am J Clin Nutr 31: S43-52 https://doi.org/10.1093/ajcn/31.10.S43
  3. Huh KB, Lee JH, Park IK, Ajn KJ, Jung YJ, Kim MJ, Lee HC, Lee YH, Lee YJ. 1993. Influence of total abnormal fat accumulation on serum lipidcs and lipoproteins in Korean middle-aged men. J Kor Nutr 26: 299-312
  4. Tsai AC, Elias J, Kelley JJ, Lin RC, Robson JRK. 1976. Influence of certain dietary fibers on serum and tissue cholesterol level in rats. J Nutr 106: 118-123 https://doi.org/10.1093/jn/106.1.118
  5. Gallaher DD, Hassel CA, Lee KJ, Gallaher CM. 1993. Viscosity and fermentability as attributes of dietary fiber responsible for the for the hypocholesterolemic effect in hamsters. J Nutr 123: 244-252
  6. Ikegami S, Tsuchihashi F, Harada H, Tsuchihashi N, Nishide E, Innami S. 1990. Effect of viscous indigestible polysaccharides on pancreatic-biliary secretion and digestive organs in the rats. J Nutr 120: 353-360 https://doi.org/10.1093/jn/120.4.353
  7. Vahouny GV, Roy T, Gallo LL, Story JA, Kritchevsky D, Cassidy MM. 1980. Dietary fiber: III. Effects of chronic intake on cholesterol absorption and metabolism in the rat. Am J Clin Nutr 33: 2182-2191 https://doi.org/10.1093/ajcn/33.10.2182
  8. Han JS, Han YE. 1994. The effect hight fat diet and dietary fiber on adipocyte of epidermal fat pads in rat. J Kor Nutr 7: 118-126
  9. Keim K, Kies C. 1979. Effects of dietary fiber on nutritional status of weaning mice. Cereal Chem 56: 73-78
  10. Muller MA, Cleary MP, Kritchevsky D. 1981. The effect of various type of dietary fiber on lipid storage in adipose tissue. Fed Oroc 40: 853-859
  11. Yang JL, Suh MJ, Song YS. 1996. Effect of dietary fibers on cholesterol metabolism in cholesterol-fed rats. J Kor Soc Food Nutr 25: 392-398
  12. Hwang HJ, Pyeun JH, Nam TJ, 2000. The effects of alginic acid on 3T3-L1 cell's differentiation. J Kor Fish Soc 33: 541-545
  13. Kang HJ, Suh MJ, Kim EH, Song YS. 1994. Effect of sodium alginate and cellulose on fasting plasma lipoprotein composition and cholesterol metabolism in rats (I). J Kor Soc Food Nutr 23: 879-886
  14. Haug A, Larsen B, Smidsrod O. 1974. Uronic acid sequence in alginate from different sources. Carbohydrate Research 32: 217-225 https://doi.org/10.1016/S0008-6215(00)82100-X
  15. Nishide E, Kinoshita Y, Anzai H, Uchida N. 1988. Distribution of hot-water extractable material, water-soluble alginate and alkali-soluble alginate in different parts of undaria pinnatifida. Nippon Suisan Gakkaishi 54: 1619-1622 https://doi.org/10.2331/suisan.54.1619
  16. Suzuki T, Nakai K, Yoshie Y, Shirai T, Hirano T. 1993. Effects of sodium alginates rich in guluronic and mannuronic acids on cholesterol levels and digestive organs of high-cholesterol-fed rats. Nippon Suisan Gakkaishi 59: 545-551 https://doi.org/10.2331/suisan.59.545
  17. Lee DS, Nam TJ, Pyeun JH. 1998. Effect of low molecular alginates on cholesterol levels and fatty acid compositions of serum and liver lipids in cholesterol-fed rats. J Kor Fish 31: 399-408
  18. Soloff LA, Rutenberg HL, Lacko AG. 1973. Sodium cholesterol esterfication in patients with coronary artery disease. Am Heart J 85: 153-131
  19. Tsuji E, Tsuji K, Suzuki S. 1974. Effect of polysaccharides on cholesterol metabolism. (part 6) Effect of various polysaccharides on serum and liver cholesterol levels in cholesterol-fed rats. Eiyogaku Zashi 33: 273-281
  20. Chung KH, Cho SH, Shin EN, Choi KH, Choi YS. 1988. Effects of alcohol consumption and fat content in diet on chemical composition and morphology of liver in rat. J Kor Nutr 21: 154-163
  21. Kang HJ, Suh MJ, Kim EH, Song YS. 1994. Effect of sodium alginate and cellulose on postprandial plasma lipoprotein and cholesterol metabolism in rats (II). J Kor Soc Food Nutr 23: 887-893
  22. Stephen AM, Cumming JH. 1986. Mechanism of action of dietary fiber in human colon. Nature 284: 283-284 https://doi.org/10.1038/284283a0
  23. Vahouny GV, Cassidy MM. 1994. Dietary fiber and intestinal adaptation. In Dietary fiber. Plenum Press, New York. p 181
  24. Harmuth-Hoene AE, Schwerdtfeger E. 1979. Effect of indigestible polysaccharides on protein digestibility and nitrogen retention in growing rats. Nutr Metab 23: 399-407 https://doi.org/10.1159/000176285
  25. Mirttinen TA. 1987. Dietary fiber and lipids. Am J Clin Nutr 45: 1237-1242 https://doi.org/10.1093/ajcn/45.5.1237
  26. Vahouny GV, Roy T, Gallo LL, Story JA, Kritchevsky D. 1978. Dietary fiber and lymphatic absorption of cholesterol in the rat. Am J Clin Nutr 31: 208-212 https://doi.org/10.1093/ajcn/31.10.S208
  27. Vahouny GV, Khalafi R, Satchithanandam S, Watkins DW, Story JA, Cassidy MM, Kritchevsky D. 1987. Dietary fiber supplementation and fecal bile acid, neutral steroids and divalent cations in rats. J Nutr 117: 2009-2015 https://doi.org/10.1093/jn/117.12.2009
  28. Overton PD, Furlonger N, Beety JM, Chakraborty J, Tredger JA, Morgan LM. 1994. The effects of dietary sugarbeet fiber and guar gum on lipid metabolism in Wistar rats. Br J Nutr 72: 385-395 https://doi.org/10.1079/BJN19940041
  29. Dietschy JM, Wilson JD. 1970. Regulation of cholesterol metabolism. N Engl J Med 282: 1128-1138 https://doi.org/10.1056/NEJM197005142822005
  30. Arjmandi BH, Ahn J, Nathani S, Reeves RD. 1992. Dietary soluble fiber and cholesterol affect serum cholesterol concentration, hepatic portal venous short-chain fatty acid concentration and fecal sterol excretion in rats. J Nutr 122: 246-253 https://doi.org/10.1093/jn/122.2.246
  31. Hilman LC, Peters SG, Fischer CA. 1985. The effects of fiber components, pectin, cellulose and lignin on serum cholesterol levels. Am J Clin Nutr 42: 207-212 https://doi.org/10.1093/ajcn/42.2.207
  32. Kelsay JL, Goering HK, Behall KM, Prather ES. 1981. Effect of fiber from fruits and vegetables on metabolic responses of human subject: Fiber intake, fecal excretion, and apparent digestibilities. Am J Clin Nutr 34: 2849-2852

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