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Hypothalamic circuits regulating appetite and energy homeostasis: pathways to obesity

机译:下丘脑回路调节食欲和能量稳态:肥胖的途径

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The ‘obesity epidemic’ represents a major global socioeconomic burden that urgently calls for a better understanding of the underlying causes of increased weight gain and its associated metabolic comorbidities, such as type 2 diabetes mellitus and cardiovascular diseases. Improving our understanding of the cellular basis of obesity could set the stage for the development of new therapeutic strategies. The CNS plays a pivotal role in the regulation of energy and glucose homeostasis. Distinct neuronal cell populations, particularly within the arcuate nucleus of the hypothalamus, sense the nutrient status of the organism and integrate signals from peripheral hormones including pancreas-derived insulin and adipocyte-derived leptin to regulate calorie intake, glucose metabolism and energy expenditure. The arcuate neurons are tightly connected to other specialized neuronal subpopulations within the hypothalamus, but also to various extrahypothalamic brain regions, allowing a coordinated behavioral response. This At a Glance article gives an overview of the recent knowledge, mainly derived from rodent models, regarding the CNS-dependent regulation of energy and glucose homeostasis, and illustrates how dysregulation of the neuronal networks involved can lead to overnutrition and obesity. The potential impact of recent research findings in the field on therapeutic treatment strategies for human obesity is also discussed.
机译:“肥胖症流行病”是全球主要的社会经济负担,迫切需要对体重增加增加的根本原因及其相关的代谢合并症(例如2型糖尿病和心血管疾病)有更好的了解。增进我们对肥胖的细胞基础的理解可以为开发新的治疗策略奠定基础。中枢神经系统在调节能量和葡萄糖稳态方面起着关键作用。不同的神经元细胞种群,尤其是在下丘脑弓状核内,可以感知生物体的营养状况,并整合来自周围激素的信号,包括胰腺衍生的胰岛素和脂肪细胞的瘦素,以调节卡路里的摄入,葡萄糖的代谢和能量消耗。弓形神经元与下丘脑内其他专门的神经元亚群紧密连接,但也与下丘脑外各种大脑区域紧密连接,从而可以协调行为响应。这篇概述文章概述了最近的知识,这些知识主要来自啮齿动物模型,涉及能量和葡萄糖稳态的中枢神经系统依赖性调节,并阐明了所涉及的神经元网络失调如何导致营养过剩和肥胖。还讨论了该领域最新研究成果对人类肥胖的治疗策略的潜在影响。

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