神经科学
多巴胺
加巴能
前额叶皮质
下丘脑
神经基质
核心
外侧下丘脑
受体
生物神经网络
压力(语言学)
神经元
心理学
焦虑
光遗传学
多巴胺受体
化学
神经元放电
母亲被剥夺
生物
脑刺激奖励
内分泌学
伏隔核
运动前神经元活动
内科学
神经递质
高架加迷宫
皮质神经元
细胞生物学
慢性应激
皮质(解剖学)
作者
Yuchuan Hong,Shirui Jun,Tianjiao Deng,Gaojie Shao,Dan Liu,Y W Sun,Yuehua Chen,Qian Xiao,Jie Shao,Sheng Wang,Tianwen Huang,Fan Yang,Jie Tu
摘要
ABSTRACT Stress is a major precipitating factor for emotional disorders, including anxiety. To cope with stress, individuals frequently engage in hedonic behaviors, such as eating palatable food, which provide transient relief from psychological distress and may protect against the development of pathology. However, the neural mechanisms by which hedonic experience counteracts stress‐induced anxiety remain poorly understood. Here, we identify a neural circuit functionally connecting the prefrontal cortex (PFC) to the paraventricular nucleus (PVN) of the hypothalamus that mediates stress mitigation through palatable food intake. Activation of this circuit suppresses stress‐induced hyperactivity of PVN corticotropin‐releasing factor (CRF) neurons and prevents the development of anxiety‐like behaviors. This effect is driven by palatable‐food‐induced dopamine release in the PFC, which activates dopamine D1 receptor (D1R)‐expressing neurons projecting to corticotropin‐releasing factor receptor 1 (CRFR1)‐expressing neurons in the PVN and peri‐PVN. Notably, GABAergic CRFR1 neurons are enriched in the peri‐PVN, with minimal presence within the PVN proper, suggesting that inhibition of PVN CRF neurons is mediated indirectly via peri‐PVN GABAergic inputs. These findings define a previously uncharacterized PFC→peri‐PVN→PVN circuit through which hedonic experience modulates stress responses and reveal a neural substrate for behavioral resilience, providing a potential avenue for anxiety intervention.
科研通智能强力驱动
Strongly Powered by AbleSci AI