低能
慢性应激
神经科学
弧(几何)
抑制性突触后电位
内科学
神经元
海马结构
运动前神经元活动
弓状核
神经可塑性
医学
神经传递
下丘脑
心理学
几何学
数学
受体
作者
Xing Fang,Shujun Jiang,Jiangong Wang,Yu Bai,Chung Sub Kim,David T. Blake,Neal L. Weintraub,Yun Lei,Xin‐Yun Lu
标识
DOI:10.1038/s41380-020-01004-x
摘要
Abstract Previous studies have shown that AgRP neurons in the arcuate nucleus (ARC) respond to energy deficits and play a key role in the control of feeding behavior and metabolism. Here, we demonstrate that chronic unpredictable stress, an animal model of depression, decreases spontaneous firing rates, increases firing irregularity and alters the firing properties of AgRP neurons in both male and female mice. These changes are associated with enhanced inhibitory synaptic transmission and reduced intrinsic neuronal excitability. Chemogenetic inhibition of AgRP neurons increases susceptibility to subthreshold unpredictable stress. Conversely, chemogenetic activation of AgRP neurons completely reverses anhedonic and despair behaviors induced by chronic unpredictable stress. These results indicate that chronic stress induces maladaptive synaptic and intrinsic plasticity, leading to hypoactivity of AgRP neurons and subsequently causing behavioral changes. Our findings suggest that AgRP neurons in the ARC are a key component of neural circuitry involved in mediating depression-related behaviors and that increasing AgRP neuronal activity coule be a novel and effective treatment for depression.
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