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Cooperation between brain and islet in glucose homeostasis and diabetes

机译:脑和胰岛之间在葡萄糖稳态和糖尿病方面的合作

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摘要

Although a prominent role for the brain in glucose homeostasis was proposed by scientists in the nineteenth century, research throughout most of the twentieth century focused on evidence that the function of pancreatic islets is both necessary and sufficient to explain glucose homeostasis, and that diabetes results from defects of insulin secretion, action or both. However, insulin-independent mechanisms, referred to as ‘glucose effectiveness’, account for roughly 50% of overall glucose disposal, and reduced glucose effectiveness also contributes importantly to diabetes pathogenesis. Although mechanisms underlying glucose effectiveness are poorly understood, growing evidence suggests that the brain can dynamically regulate this process in ways that improve or even normalize glycaemia in rodent models of diabetes. Here we present evidence of a brain-centred glucoregulatory system (BCGS) that can lower blood glucose levels via both insulin-dependent and -independent mechanisms, and propose a model in which complex and highly coordinated interactions between the BCGS and pancreatic islets promote normal glucose homeostasis. Because activation of either regulatory system can compensate for failure of the other, defects in both may be required for diabetes to develop. Consequently, therapies that target the BCGS in addition to conventional approaches based on enhancing insulin effects may have the potential to induce diabetes remission, whereas targeting just one typically does not.
机译:尽管在19世纪科学家提出了大脑在葡萄糖稳态中的重要作用,但在整个20世纪的大部分时间里,研究都集中在证据上,即胰岛的功能对于解释葡萄糖稳态是必要且充分的,并且糖尿病是由糖尿病引起的胰岛素分泌,作用或两者兼有的缺陷。但是,不依赖胰岛素​​的机​​制(称为“葡萄糖功效”)约占总葡萄糖处置量的50%,而降低的葡萄糖功效也对糖尿病的发病机制起重要作用。尽管对葡萄糖有效性的基本机制了解甚少,但越来越多的证据表明,大脑可以以改善或什至使糖尿病啮齿动物模型中的血糖正常化的方式动态调节这一过程。在这里,我们提供了一种以大脑为中心的糖调节系统(BCGS)的证据,该系统可以通过胰岛素依赖性和非依赖性机制降低血糖水平,并提出了一个模型,其中BCGS与胰岛之间复杂而高度协调的相互作用促进了正常葡萄糖稳态。因为任一调节系统的激活都可以补偿另一个调节器的故障,所以糖尿病的发展可能需要两者中的缺陷。因此,除基于增强胰岛素作用的常规方法外,针对BCGS的疗法可能具有诱导糖尿病缓解的潜力,而仅针对一种通常不会。

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