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The regulation of body weight: lessons from the seasonal animal

机译:体重调节:季节性动物的经验教训

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摘要

The hypothalamus is a major regulatory centre involved in the control of many important physiological axes. One of these axes is the regulation of ingestive behaviour. Recent work using a combination of genetic-mutant mouse models together with targeted gene deletions has contributed much to our understanding of how neural pathways of the hypothalamus are involved in the regulation of energy balance in animals. These pathways are also relevant to human energy homeostasis, as mutations in key genes are correlated with obesity. Many of the genes identified mediate the effects of leptin, and are therefore primarily involved in sensing and responding to peripheral signals. In seasonal animals, such as the Siberian hamster (Phodopus sungorus), there is evidence for a higher level of regulation. The systems involved regulate body weight around an apparent 'set-point' through the action of photoperiod via the neurohormone, melatonin. The ability to manipulate energy balance through photoperiod (and melatonin) in the seasonal-animal model offers novel opportunities to identify further fundamental aspects of the control mechanisms involved in the central control of energy homeostasis and body weight.
机译:下丘脑是参与许多重要生理轴控制的主要调节中心。这些轴之一是摄取行为的调节。最近使用遗传突变小鼠模型与靶向基因缺失相结合的工作,为我们对下丘脑神经通路如何参与动物能量平衡调节的理解做出了很大贡献。这些途径也与人体能量稳态有关,因为关键基因的突变与肥胖症相关。鉴定出的许多基因介导瘦素的作用,因此主要参与感知和响应外围信号。在季节性动物中,例如西伯利亚仓鼠(Phodopus sungorus),有证据表明其监管水平较高。这些系统通过神经激素褪黑素的光周期作用,将体重控制在一个明显的“设定点”附近。通过季节性动物模型中的光周期(和褪黑激素)操纵能量平衡的能力提供了新的机会,可以确定参与能量稳态和体重中央控制的控制机制的其他基本方面。

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