神经科学
长时程增强
抗抑郁药
神经可塑性
海马结构
海马体
生物神经网络
变质塑性
突触可塑性
调解人
脑深部刺激
刺激
生物
心理学
可塑性
脑刺激
树突棘
光遗传学
运动前神经元活动
医学
神经网络
功能连接
难治性抑郁症
机制(生物学)
中枢神经系统
抑郁症动物模型
稳态可塑性
萧条(经济学)
核心
皮质(解剖学)
作者
Maxime Veleanu,Louise E. Schuberth,Antje Kilias,Jakob Weber,Jan Warneke,Lovis Würz,Tim Schwär,Rebecca Heck,Joelle Müller,David H. Sarrazin,Marguerite Anselin,Lukas Rutke,Guillermo A. Suárez,S. Zimmermann,Zoe Borgeest,Martin Balzinger,Alina Blendinger,Anna Catarata,Samira Assaad Dib,Yaroslav Sych
标识
DOI:10.1038/s41467-026-77248-y
摘要
The pathophysiology of depression involves multiple biological processes, including circuit dysfunction and impaired neuroplasticity, yet an integrative view linking these processes remains elusive. Here, we identify a convergent circuit for antidepressant response and plasticity modulation. We demonstrate that chemogenetic activation of the infralimbic cortex (IL) exerts rapid antidepressant-like effects across multiple behavioral domains in a mouse model of stress-induced depression. IL stimulation exerts top-down control over the hippocampus, enhancing structural plasticity, restoring long-term potentiation deficits and improving state-dependent network dynamics in the ventral hippocampus (vHIPP). We identify the thalamic nucleus reuniens (RE) as a necessary mediator of these effects. Notably, direct inhibition of RE, its inputs from IL or projections to vHIPP, blocks both IL stimulation-induced antidepressant response and the therapeutic and neuroplastic effects of ketamine. Our findings demonstrate that the functional IL → RE→vHIPP circuit plays a central role in the antidepressant response, linking circuit activity, hippocampal plasticity, and depressive-like behaviors.
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