1. The claustrum-prelimbic cortex circuit through dynorphin/κ-opioid receptor signaling underlies depression-like behaviors associated with social stress etiology.
- Author
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Wang, Yu-Jun, Zan, Gui-Ying, Xu, Cenglin, Li, Xue-Ping, Shu, Xuelian, Yao, Song-Yu, Xu, Xiao-Shan, Qiu, Xiaoyun, Chen, Yexiang, Jin, Kai, Zhou, Qi-Xin, Ye, Jia-Yu, Wang, Yi, Xu, Lin, Chen, Zhong, and Liu, Jing-Gen
- Subjects
SOCIAL defeat ,OPIOID receptors ,OPIOID peptides ,ETIOLOGY of diseases ,PYRAMIDAL neurons ,NEURAL transmission ,DYNORPHINS - Abstract
Ample evidence has suggested the stress etiology of depression, but the underlying mechanism is not fully understood yet. Here, we report that chronic social defeat stress (CSDS) attenuates the excitatory output of the claustrum (CLA) to the prelimbic cortex (PL) through the dynorphin/κ-opioid receptor (KOR) signaling, being critical for depression-related behaviors in male mice. The CSDS preferentially impairs the excitatory output from the CLA onto the parvalbumin (PV) of the PL, leading to PL micronetwork dysfunction by disinhibiting pyramidal neurons (PNs). Optogenetic activation or inhibition of this circuit suppresses or promotes depressive-like behaviors, which is reversed by chemogenetic inhibition or activation of the PV neurons. Notably, manipulating the dynorphin/KOR signaling in the CLA-PL projecting terminals controls depressive-like behaviors that is suppressed or promoted by optogenetic activation or inhibition of CLA-PL circuit. Thus, this study reveals both mechanism of the stress etiology of depression and possibly therapeutic interventions by targeting CLA-PL circuit. The stress etiology of depression remains elusive. Here, authors show that dynorphin/KOR signaling-mediated impairment of excitatory synaptic transmission from claustrum to prelimbic cortex PV interneurons contributes to stress-induced depression. [ABSTRACT FROM AUTHOR]
- Published
- 2023
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