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Early-life programming of susceptibility to dysregulation of glucose metabolism and the development of Type 2 diabetes mellitus.

机译:对葡萄糖代谢失调和2型糖尿病发展易感性的早期编程。

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摘要

There is increasing epidemiological evidence in humans which associates low birthweight with later metabolic disorders, including insulin resistance and glucose intolerance. There is evidence that nutritional and hormonal factors (e.g. maternal protein restriction, exposure to excess maternal glucocorticoids) markedly influence intra-uterine growth and development. A picture is also emerging of the biochemical and physiological mechanisms that may underlie these effects. This review focuses on recent research directed towards understanding the molecular basis of the relationship between indices of poor early growth and the subsequent development of glucose intolerance and Type 2 diabetes mellitus using animal models that attempt to recreate the process of programming via an adverse intra-uterine or neonatal environment. Emphasis is on the chain of events and potential mechanisms by which adverse adaptations affect pancreatic-beta-cell insulin secretion and the sensitivity to insulin of key metabolic processes, including hepatic glucose production, skeletal-muscle glucose disposal and adipose-tissue lipolysis. Unravelling the molecular details involved in metabolic programming may provide new insights into the pathogenesis of impaired glucoregulation and Type 2 diabetes.
机译:越来越多的人类流行病学证据表明,低出生体重与后来的代谢紊乱(包括胰岛素抵抗和葡萄糖耐受不良)相关。有证据表明营养和激素因素(例如母体蛋白质限制,母体糖皮质激素过量暴露)显着影响子宫内的生长和发育。也可能出现这些作用的生化和生理机制的图片。这篇综述着重于旨在通过动物模型试图通过不良子宫内重建编程过程的动物模型来理解不良早期生长指数与随后的葡萄糖耐量和2型糖尿病之间发展之间的关系的分子基础的研究。或新生儿环境。重点是一系列事件和潜在的机制,不良适应通过这些事件和机制影响胰腺β细胞胰岛素的分泌以及关键代谢过程对胰岛素的敏感性,这些代谢过程包括肝葡萄糖生成,骨骼肌葡萄糖处置和脂肪组织脂解。阐明代谢程序设计中涉及的分子细节可能会为糖调节异常和2型糖尿病的发病机理提供新的见解。

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