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应激动态过程中外侧缰核厌恶效价的输入-输出特异性调控

Input-output specific orchestration of aversive valence in lateral habenula during stress dynamics.

作者信息

Huang Taida, Guo Xiaonan, Huang Xiaomin, Yi Chenju, Cui Yihui, Dong Yiyan

机构信息

Department of Neurology and International Institutes of Medicine, the Fourth Affiliated Hospital, Zhejiang University School of Medicine, Yiwu 322000, China.

Department of Neurology of Sir Run Run Shaw Hospital and School of Brain Science and Brain Medicine, Zhejiang University School of Medicine, Hangzhou 310058, China.

出版信息

J Zhejiang Univ Sci B. 2024 Apr 3;25(12):1055-1065. doi: 10.1631/jzus.B2300933.

Abstract

Stress has been considered as a major risk factor for depressive disorders, triggering depression onset via inducing persistent dysfunctions in specialized brain regions and neural circuits. Among various regions across the brain, the lateral habenula (LHb) serves as a critical hub for processing aversive information during the dynamic process of stress accumulation, thus having been implicated in the pathogenesis of depression. LHb neurons integrate aversive valence conveyed by distinct upstream inputs, many of which selectively innervate the medial part (LHbM) or lateral part (LHbL) of LHb. LHb subregions also separately assign aversive valence via dissociable projections to the downstream targets in the midbrain which provides feedback loops. Despite these strides, the spatiotemporal dynamics of LHb-centric neural circuits remain elusive during the progression of depression-like state under stress. In this review, we attempt to describe a framework in which LHb orchestrates aversive valence via the input-output specific neuronal architecture. Notably, a physiological form of Hebbian plasticity in LHb under multiple stressors has been unveiled to incubate neuronal hyperactivity in an input-specific manner, which causally encodes chronic stress experience and drives depression onset. Collectively, the recent progress and future efforts in elucidating LHb circuits shed light on early interventions and circuit-specific antidepressant therapies.

摘要

应激被认为是抑郁症的主要风险因素,通过诱导特定脑区和神经回路的持续功能障碍引发抑郁症发作。在大脑的各个区域中,外侧缰核(LHb)在应激积累的动态过程中作为处理厌恶信息的关键枢纽,因此与抑郁症的发病机制有关。LHb神经元整合由不同上游输入传递的厌恶效价,其中许多输入选择性地支配LHb的内侧部分(LHbM)或外侧部分(LHbL)。LHb亚区域还通过向中脑下游靶点的可分离投射分别赋予厌恶效价,中脑提供反馈回路。尽管取得了这些进展,但在应激下类似抑郁状态的进展过程中,以LHb为中心的神经回路的时空动态仍然难以捉摸。在这篇综述中,我们试图描述一个框架,其中LHb通过输入-输出特异性神经元结构协调厌恶效价。值得注意的是,在多种应激源下,LHb中一种生理形式的赫布可塑性已被揭示,以输入特异性方式孵育神经元过度活跃,这因果性地编码慢性应激经历并驱动抑郁症发作。总的来说,在阐明LHb回路方面的最新进展和未来努力为早期干预和针对特定回路的抗抑郁治疗提供了线索。

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