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Evidence That the Sympathetic Nervous System Elicits Rapid Coordinated and Reciprocal Adjustments of Insulin Secretion and Insulin Sensitivity During Cold Exposure

机译:冷感期间交感神经系统引起胰岛素分泌和胰岛素敏感性快速协调和相互调节的证据

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摘要

Dynamic adjustment of insulin secretion to compensate for changes of insulin sensitivity that result from alteration of nutritional or metabolic status is a fundamental aspect of glucose homeostasis. To investigate the role of the brain in this coupling process, we used cold exposure as an experimental paradigm because the sympathetic nervous system (SNS) helps to coordinate the major shifts of tissue glucose utilization needed to ensure that increased thermogenic needs are met. We found that glucose-induced insulin secretion declined by 50% in rats housed at 5°C for 28 h, and yet, glucose tolerance did not change, owing to a doubling of insulin sensitivity. These potent effects on insulin secretion and sensitivity were fully reversed by returning animals to room temperature (22°C) for 4 h or by intravenous infusion of the α-adrenergic receptor antagonist phentolamine for only 30 min. By comparison, insulin clearance was not affected by cold exposure or phentolamine infusion. These findings offer direct evidence of a key role for the brain, acting via the SNS, in the rapid, highly coordinated, and reciprocal changes of insulin secretion and insulin sensitivity that preserve glucose homeostasis in the setting of cold exposure.
机译:动态调节胰岛素分泌以补偿由于营养或代谢状态改变而引起的胰岛素敏感性变化,这是葡萄糖稳态的基本方面。为了研究大脑在这种耦合过程中的作用,我们使用冷暴露作为实验范例,因为交感神经系统(SNS)有助于协调组织葡萄糖利用的主要变化,以确保满足增加的产热需求。我们发现,在5°C饲养28 h的大鼠中,葡萄糖诱导的胰岛素分泌下降了50%,但由于胰岛素敏感性增加了一倍,葡萄糖耐量并未改变。通过将动物恢复至室温(22°C)4小时或静脉内输注α-肾上腺素受体拮抗剂苯妥拉明仅30分钟,可以完全逆转这些对胰岛素分泌和敏感性的有效作用。相比之下,冷清除或苯妥拉明输注不会影响胰岛素清除率。这些发现直接证明了大脑通过SNS在胰岛素分泌,胰岛素敏感性的快速,高度协调和相互变化中起关键作用,在寒冷暴露的情况下,葡萄糖的动态平衡得以保持。

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