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Pancreas-protective effects of chlorella in STZ-induced diabetic animal model: insights into the mechanism 被引量:3

Pancreas-protective effects of chlorella in STZ-induced diabetic animal model: insights into the mechanism
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摘要 The aim of this study is to examine the effect of intragastric administration of chlorella (1 g/kg body weight) for a period of 30 days to treat normal and diabetic male Wistar rats. Diabetes was induced by intraperitoneal injection of streptozotocin (STZ) (60 mg/kg - 1 body weight). A significant (p < 0.05) reduction of blood glucose level in diabetic chlorella-treated rats was observed compared to diabetic untreated. Chlorella increased the number of glutathione-positive cell in diabetic rats compared to untreated diabetics. Chlorella administration increased the percentage of insulin secreting pancreatic beta cells both in normal and diabetic treated rats. Percentage of glucagon producing alpha cells of the pancreas were reduced both in normal and diabetic chlorella-treated rats. Chlorella-induced regenerative ability on pancreas was mediated by up-regulation of Ki67 and down-regulation of P53 and by its potent anti-oxidant ability. The present results suggest that chlorella may play an important role in improving the overall condition of diabetic patients and delay its complication by restoring the function of pancreatic insulin-secreting cells. The aim of this study is to examine the effect of intragastric administration of chlorella (1 g/kg body weight) for a period of 30 days to treat normal and diabetic male Wistar rats. Diabetes was induced by intraperitoneal injection of streptozotocin (STZ) (60 mg/kg - 1 body weight). A significant (p < 0.05) reduction of blood glucose level in diabetic chlorella-treated rats was observed compared to diabetic untreated. Chlorella increased the number of glutathione-positive cell in diabetic rats compared to untreated diabetics. Chlorella administration increased the percentage of insulin secreting pancreatic beta cells both in normal and diabetic treated rats. Percentage of glucagon producing alpha cells of the pancreas were reduced both in normal and diabetic chlorella-treated rats. Chlorella-induced regenerative ability on pancreas was mediated by up-regulation of Ki67 and down-regulation of P53 and by its potent anti-oxidant ability. The present results suggest that chlorella may play an important role in improving the overall condition of diabetic patients and delay its complication by restoring the function of pancreatic insulin-secreting cells.
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出处 《Journal of Diabetes Mellitus》 2011年第3期36-45,共10页 糖尿病(英文)
关键词 CHLORELLA Diabetes GLUCOSE INSULIN BETA Cells. Chlorella Diabetes Glucose Insulin Beta Cells.
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  • 1Olmez E, Ilhan M. Evaluation of the alpha-adrenoceptor antagonistic action of berberine in isolated organs.Arzneimittelforschung 1992; 42: 1095-97.
  • 2Shin DH, Yu H, Hsu WH. A paradoxica! st:muLatory effcct of berberine on guinea-pig ileum contractility: possible involvement of acetylcholine release from the postganglionic parasympathetic nerve and cholinesterase inhibition. Life Sci 1993: 53: 1495-500.
  • 3Ahren B, Lundquist I. Effects of alpha-adrenoceptor blockade by phentolamine on basal and stimulated insulin secretion in the mouse. Acta Physiol Scand 1985; 125: 211-7.
  • 4MJ Dunne. Block of ATP-regulated potassium channels by phentolamine and other alpha-adrenoceptor antagonists. Br J Pharmacol 1991 : 103:1847-50.
  • 5Wang YX, Zheng YM, Zhou XB. Inhibitory effects of berberine on ATP-sensitive K^+ channels in cardiac myocytes.Eur J Pharmacol 1996; 316: 307-15.
  • 6Li BX, Yang BF, Zhou J, Xu CQ, Li YR. Inhibitory effects of berberine on I (K1), I (K) and HERG channels of cardiac myocytes. Acta Pharmacol Sin 2001; 22: 125-31.
  • 7Jin XL, Shao Y, Wang M J, Chen LJ, Jin GZ. Tetrahydroprotoberberines inhibit lipid peroxidation and scavenge hydroxyl free radicals. Acta Pharmacol Sin 2000; 21: 477-80.
  • 8Hui KK, Yu JL, Chan WF, Tse E. Interaction of berberine with human platelet alpha 2 adrenoceptors. Life Sci 1991;49: 315-24.
  • 9Mokuda O, Sakamoto Y. Peripheral insulin sensitivity is decreased by elevated non-esterified fatty acid level in dexamethasone-treated rats. Diabetes Nutr Metab 1999; 12:252-5.
  • 10Ashcroft S J, Hammonds P, Harrison DE. Insulin secretory responses of a clonal cell line of simian virus 40-transformed B cells. Diabetologia 1986; 29: 727-33.

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