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首页> 外文期刊>Medical hypotheses >Exenatide and biotin in conjunction with a protein-sparing fast for normalization of beta cell function in type 2 diabetics.
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Exenatide and biotin in conjunction with a protein-sparing fast for normalization of beta cell function in type 2 diabetics.

机译:艾塞那肽和生物素与蛋白质保留快速结合,用于2型糖尿病患者中β细胞功能的正常化。

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摘要

The dysdifferentiation of beta cells in type 2 diabetes appears to be caused and maintained by a vicious cycle of glucolipotoxicity: chronic elevations of glucose and free fatty acids induce beta cell dysdifferentiation as well as apoptosis; the resulting failure of glucose-stimulated insulin secretion tends to maintain the elevations of glucose and free fatty acids. Since extended fasts restore normoglycemia in diabetics, the resulting relief from glucotoxicity has been associated with a marked improvement in beta cell function that can be conserved after the fast if the factors precipitating diabetes--obesity, fatty and high-glycemic-index diets, sedentary lifestyle--have been adequately addressed. The new drug exenatide, an analog of the incretin hormone glucagon-like peptide-1, may be a worthwhile adjuvant to such fasting therapy, since it tends to counteract the glucolipotoxicity-induced down-regulation of the crucially important beta cell transcription factor IDX-1. Exenatide also exerts trophic effects on beta cell mass that in the longer term might help to restore diminished beta cell mass. Supraphysiological concentrations of biotin, possibly because they activate the soluble guanylate cyclase, also promote induction of IDX-1 and counteract the adverse impact of glucolipotoxicity in this regard; thus, high-dose biotin, which is well tolerated, may represent an additional adjuvant for therapeutic fasting intended to normalize beta cell function in type 2 diabetics.
机译:2型糖尿病患者中β细胞的去分化似乎是由糖脂毒性的恶性循环引起和维持的:葡萄糖和游离脂肪酸的长期升高会引起β细胞去分化以及凋亡。葡萄糖刺激的胰岛素分泌的失败导致倾向于维持葡萄糖和游离脂肪酸的升高。由于延长的禁食可恢复糖尿病患者的正常血糖,因此,糖毒性的缓解与β细胞功能的显着改善有关,如果诱发糖尿病的因素(肥胖,高脂和高血糖指数饮食,久坐不动),则禁食后可以保持β细胞功能的改善。生活方式-已得到适当解决。新药物艾塞那肽是肠降血糖素激素胰高血糖素样肽1的类似物,可能是这种禁食疗法的有价值的佐剂,因为它倾向于抵消糖脂毒性诱导的至关重要的β细胞转录因子IDX-的下调。 1。艾塞那肽对β细胞质量也具有营养作用,从长远来看可能有助于恢复减少的β细胞质量。生物素的超生理学浓度可能是因为它们激活了可溶性鸟苷酸环化酶,还促进了IDX-1的诱导并抵消了糖脂毒性在这方面的不利影响;因此,耐受性良好的高剂量生物素可能代表了用于治疗禁食的另一种佐剂,旨在使2型糖尿病患者的β细胞功能正常化。

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