谷氨酸的
前额叶皮质
下丘脑
外侧下丘脑
神经科学
加巴能
食物摄入量
刺激
过度消费
兴奋性突触后电位
内分泌学
内科学
脑刺激奖励
生物
摄食行为
光遗传学
压力(语言学)
化学
神经元
社会压力
被盖腹侧区
战斗或逃跑反应
运动前神经元活动
谷氨酸受体
海马结构
信号转导
微量注射
作者
L. F. Supiot,K. L. Kooij,W. Du,A. A. C. Benschop,A. S. J. Nicolson,R. Haak,I. G. Wolterink-Donselaar,M. C. M. Luijendijk,D. Riga,R. A. H. Adan,R. B. Poorthuis,F. J. Meye
标识
DOI:10.1038/s41467-026-71073-z
摘要
Stress can drive overconsumption of high-fat foods. The medial prefrontal cortex (mPFC) is implicated in such stress-eating, but the underlying circuit mechanisms remain unclear. Here, we show that mPFC projections to the lateral hypothalamus (LHA) are required for stress-induced fat intake in male mice. We find that mPFC-LHA stimulation in sated states increases fat intake. Social stress acutely engages mPFC-LHA neurons, and inhibiting this pathway selectively prevents stress-driven excess fat intake. Circuit mapping shows that mPFC neurons innervate GABAergic and glutamatergic LHA (LHAVGLUT2) neurons, but that social stress preferentially engages mPFC-LHAVGLUT2 neurons and causes plasticity at mPFC-LHAVGLUT2 synapses. Specifically, stress weakens mPFC synapses onto LHAVGLUT2 neurons that curtail food intake, while strengthening mPFC synapses onto midbrain-projecting LHAVGLUT2 neurons linked to stress-eating. We show that LHAVGLUT2 neurons are required downstream mPFC targets for transforming stress into heightened fat intake. Overall, we identify the mPFC-LHA as a multi-branched network, indispensable for stress-eating.
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