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首页> 外文期刊>The Journal of Nutritional Biochemistry >Effects of biotin supplementation in the diet on insulin secretion, islet gene expression, glucose homeostasis and beta-cell proportion.
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Effects of biotin supplementation in the diet on insulin secretion, islet gene expression, glucose homeostasis and beta-cell proportion.

机译:日粮中添加生物素对胰岛素分泌,胰岛基因表达,葡萄糖稳态和β细胞比例的影响。

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Besides its role as a carboxylase cofactor, biotin has a wide repertoire of effects on gene expression, development and metabolism. Pharmacological concentrations of biotin enhance insulin secretion and the expression of genes and signaling pathways that favor islet function in vitro. However, the in vivo effects of biotin supplementation on pancreatic islet function are largely unknown. In the present study, we investigated whether in vivo biotin supplementation in the diet has positive effects in rodent pancreatic islets. Male BALB/cAnN Hsd mice were fed a control or a biotin-supplemented diet over 8 weeks postweaning and tested for glucose homeostasis, insulin secretion, islet gene expression and pancreatic morphometry. Insulin secretion increased from the islets of biotin-supplemented mice, together with the messenger RNA (mRNA) expression of several transcription factors regulating insulin expression and secretion, including forkhead box A2, pancreatic and duodenal homeobox 1 and hepatocyte nuclear factor 4 alpha. The mRNA abundance of glucokinase, Cacna1d, acetyl-CoA carboxylase, and insulin also increased. Consistent with these effects, glucose tolerance improved, and glucose-stimulated serum insulin levels increased in biotin-supplemented mice, without changes in fasting glucose levels or insulin tolerance. Biotin supplementation augmented the proportion of beta cells by enlarging islet size and, unexpectedly, also increased the percentage of islets with alpha cells at the islet core. mRNA expression of neural cell adhesion molecule 1, an adhesion protein participating in the maintenance of islet architecture, decreased in biotin-supplemented islets. These findings provide, for the first time, insight into how biotin supplementation exerts its effects on function and proportion of beta cells, suggesting a role for biotin in the prevention and treatment of diabetes. All rights reserved, Elsevier.
机译:除了其作为羧化酶辅助因子的作用外,生物素还具有广泛的基因表达,发育和代谢作用。生物素的药理学浓度可增强胰岛素分泌以及有利于体外胰岛功能的基因和信号通路的表达。但是,生物素补充对胰岛功能的体内作用在很大程度上尚不清楚。在本研究中,我们调查了饮食中的体内生物素补充在啮齿类动物胰岛中是否具有积极作用。在断奶后8周内,给雄性BALB / cAnN Hsd小鼠喂食对照或添加生物素的饮食,并测试其葡萄糖稳态,胰岛素分泌,胰岛基因表达和胰腺形态。补充生物素的小鼠的胰岛中的胰岛素分泌增加,以及调节胰岛素表达和分泌的几种转录因子的信使RNA(mRNA)表达,包括叉头盒A2,胰腺和十二指肠同源盒1和肝细胞核因子4α。葡萄糖激酶,Cacna1d,乙酰辅酶A羧化酶和胰岛素的mRNA丰度也增加了。与这些作用一致,在补充了生物素的小鼠中,葡萄糖耐量得到改善,葡萄糖刺激的血清胰岛素水平增加,而空腹血糖水平或胰岛素耐受性没有变化。通过增加胰岛大小,生物素补充剂增加了β细胞的比例,并且出乎意料的是,还增加了在胰岛核心处有α细胞的胰岛百分比。在补充生物素的胰岛中,神经细胞粘附分子1(参与维持胰岛结构的粘附蛋白)的mRNA表达下降。这些发现首次提供了对生物素补充剂如何发挥其对β细胞功能和比例的影响的见解,暗示了生物素在糖尿病的预防和治疗中的作用。保留所有权利,Elsevier。

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