神经科学
奖励制度
多巴胺
中边缘通路
门控
心理学
伏隔核
神经网络
光遗传学
生物
摄食行为
被盖腹侧区
动力学(音乐)
迷走神经张力
神经可塑性
适应性行为
神经系统
脑刺激奖励
体内
多巴胺受体
感觉门控
神经递质
迷走神经
作者
Oriane Onimus,Faustine Arrivet,Tinaïg Le Borgne,Sylvie Pérez,Julien Castel,Anthony Ansoult,Benoit Bertrand,Nejmeh Mashhour,Camille de Almeida,Linh‐Chi Bui,Marie Vandecasteele,Serge Luquet,Laurent Venance,Nicolas Heck,Fabio Marti,Giuseppe Gangarossa
出处
期刊:Science Advances
[American Association for the Advancement of Science]
日期:2026-01-30
卷期号:12 (5): eadz0828-eadz0828
被引量:10
标识
DOI:10.1126/sciadv.adz0828
摘要
Reward processes have traditionally been ascribed to dopamine (DA)-associated circuits. While external stimuli, such as food and drugs of abuse, are activators of DA-neuron activity, growing evidence indicates that interoceptive signals also play a critical role. Among these, the gut-brain vagal axis has emerged as a key regulator, although its precise contribution to mesolimbic DA signaling and behavior remains unclear. Here, we combine complementary ex vivo and in vivo approaches across multiple scales to show that gut-brain vagal tone is essential for gating mesolimbic DA system activity and functions, modulating DA-dependent molecular and cellular processes, and scaling both food- and drug-induced reinforcement. These findings challenge the traditional brain-centric view of reward processing, supporting a more integrated model in which vagus-mediated interoceptive signals intrinsically shape motivation and reinforcement. By uncovering the influence of gut-brain vagal communication on DA functions, this work provides insights into the neurobiology of adaptive and maladaptive reward, with broad relevance for eating disorders and addiction.
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