伏隔核
谷氨酸的
神经科学
大麻素
中棘神经元
大麻素受体
抗抑郁药
内科学
兴奋性突触后电位
神经传递
受体
扁桃形结构
生物
基底神经节
多巴胺
医学
谷氨酸受体
海马体
中枢神经系统
敌手
抑制性突触后电位
作者
C. Shen,Di Zheng,Kexin Li,Jian‐Ming Yang,Haoqi Pan,Xiaodan Yu,Jiayu Fu,Yi Zhu,Qixin Sun,Mengyu Tang,Ying Zhang,Peng Sun,Yi Xie,Shumin Duan,Hailan Hu,Xiao‐Ming Li
出处
期刊:Nature Medicine
[Nature Portfolio]
日期:2019-01-08
卷期号:25 (2): 337-349
被引量:197
标识
DOI:10.1038/s41591-018-0299-9
摘要
Major depressive disorder is a devastating psychiatric disease that afflicts up to 17% of the world's population. Postmortem brain analyses and imaging studies of patients with depression have implicated basal lateral amygdala (BLA) dysfunction in the pathophysiology of depression. However, the circuit and molecular mechanisms through which BLA neurons modulate depressive behavior are largely uncharacterized. Here, in mice, we identified that BLA cholecystokinin (CCK) glutamatergic neurons mediated negative reinforcement via D2 medium spiny neurons (MSNs) in the nucleus accumbens (NAc) and that chronic social defeat selectively potentiated excitatory transmission of the CCKBLA-D2NAc circuit in susceptible mice via reduction of presynaptic cannabinoid type-1 receptor (CB1R). Knockdown of CB1R in the CCKBLA-D2NAc circuit elevated synaptic activity and promoted stress susceptibility. Notably, selective inhibition of the CCKBLA-D2NAc circuit or administration of synthetic cannabinoids in the NAc was sufficient to produce antidepressant-like effects. Overall, our studies reveal the circuit and molecular mechanisms of depression.
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