Neuroscience Program, Michigan State University, East Lansing, Michigan, USA.
Department of Pharmacology and Toxicology, Michigan State University, East Lansing, Michigan, USA.
Endocrinology. 2021 May 1;162(5). doi: 10.1210/endocr/bqab038.
The small peptide neurotensin (Nts) is implicated in myriad processes including analgesia, thermoregulation, reward, arousal, blood pressure, and modulation of feeding and body weight. Alterations in Nts have recently been described in individuals with obesity or eating disorders, suggesting that disrupted Nts signaling may contribute to body weight disturbance. Curiously, Nts mediates seemingly opposing regulation of body weight via different tissues. Peripherally acting Nts promotes fat absorption and weight gain, whereas central Nts signaling suppresses feeding and weight gain. Thus, because Nts is pleiotropic, a location-based approach must be used to understand its contributions to disordered body weight and whether the Nts system might be leveraged to improve metabolic health. Here we review the role of Nts signaling in the brain to understand the sites, receptors, and mechanisms by which Nts can promote behaviors that modify body weight. New techniques permitting site-specific modulation of Nts and Nts receptor-expressing cells suggest that, even in the brain, not all Nts circuitry exerts the same function. Intriguingly, there may be dedicated brain regions and circuits via which Nts specifically suppresses feeding behavior and weight gain vs other Nts-attributed physiology. Defining the central mechanisms by which Nts signaling modifies body weight may suggest strategies to correct disrupted energy balance, as needed to address overweight, obesity, and eating disorders.
神经降压素(Nts)是一种小肽,涉及多种过程,包括镇痛、体温调节、奖励、觉醒、血压以及进食和体重的调节。最近在肥胖或饮食失调患者中描述了 Nts 的改变,表明 Nts 信号的中断可能导致体重紊乱。奇怪的是,Nts 通过不同的组织介导看似相反的体重调节。外周作用的 Nts 促进脂肪吸收和体重增加,而中枢 Nts 信号抑制进食和体重增加。因此,由于 Nts 是多效性的,必须采用基于位置的方法来了解其对紊乱体重的贡献,以及 Nts 系统是否可以被利用来改善代谢健康。在这里,我们回顾了 Nts 信号在大脑中的作用,以了解 Nts 可以促进改变体重的行为的部位、受体和机制。允许特定部位调节 Nts 和 Nts 受体表达细胞的新技术表明,即使在大脑中,并非所有 Nts 电路都发挥相同的功能。有趣的是,可能存在专门的大脑区域和回路,通过这些区域和回路,Nts 特异性地抑制进食行为和体重增加,而不是其他 Nts 归因的生理学。定义 Nts 信号改变体重的中枢机制可能会提示纠正能量平衡紊乱的策略,这对于解决超重、肥胖和饮食失调是必要的。