Endothelial Cdk5 deficit leads to the development of spontaneous epilepsy through CXCL1/CXCR2-mediated reactive astrogliosis

内皮细胞 Cdk5 缺陷通过 CXCL1/CXCR2 介导的反应性星形胶质增生导致自发性癫痫的发展

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作者:Xiu-Xiu Liu #, Lin Yang #, Ling-Xiao Shao #, Yang He, Gang Wu, Yu-Huan Bao, Nan-Nan Lu, Dong-Mei Gong, Ya-Ping Lu, Tian-Tian Cui, Ning-He Sun, Dan-Yang Chen, Wei-Xing Shi, Kohji Fukunaga, Hong-Shan Chen, Zhong Chen, Feng Han, Ying-Mei Lu

Abstract

Blood-brain barrier (BBB) dysfunction has been suggested to play an important role in epilepsy. However, the mechanism mediating the transition from cerebrovascular damage to epilepsy remains unknown. Here, we report that endothelial cyclin-dependent kinase 5 (CDK5) is a central regulator of neuronal excitability. Endothelial-specific Cdk5 knockout led to spontaneous seizures in mice. Knockout mice showed increased endothelial chemokine (C-X-C motif) ligand 1 (Cxcl1) expression, decreased astrocytic glutamate reuptake through the glutamate transporter 1 (GLT1), and increased glutamate synaptic function. Ceftriaxone restored astrocytic GLT1 function and inhibited seizures in endothelial Cdk5-deficient mice, and these effects were also reversed after silencing Cxcl1 in endothelial cells and its receptor chemokine (C-X-C motif) receptor 2 (Cxcr2) in astrocytes, respectively, in the CA1 by AAV transfection. These results reveal a previously unknown link between cerebrovascular factors and epileptogenesis and provide a rationale for targeting endothelial signaling as a potential treatment for epilepsy.

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