小胶质细胞
星形胶质细胞
癫痫持续状态
神经科学
癫痫
补语(音乐)
生物
补体系统
替代补体途径
中枢神经系统
免疫学
炎症
免疫系统
遗传学
表型
基因
互补
作者
Yujia Wei,Tingjun Chen,Dale B. Bosco,Manling Xie,Jiaying Zheng,Aastha Dheer,Yanlu Ying,Qian Wu,Vanda A. Lennon,Long‐Jun Wu
出处
期刊:Glia
[Wiley]
日期:2020-12-14
卷期号:69 (5): 1155-1169
被引量:150
摘要
Abstract Gliosis is a histopathological characteristic of epilepsy that comprises activated microglia and astrocytes. It is unclear whether or how crosstalk occurs between microglia and astrocytes in the evolution of epilepsy. Here, we report in a mouse model of status epilepticus, induced by intracerebroventricular injection of kainic acid (KA), sequential activation of microglia and astrocytes and their close spatial interaction in the hippocampal CA3 region. Microglial ablation reduced astrocyte activation and their upregulation of complement C3. When compared to wild‐type mice, both C3−/− and C3aR−/− mice had significantly less microglia–astrocyte interaction in response to KA‐induced status epilepticus. Additionally, KA‐injected C3−/− mice had significantly less histochemical evidence of neurodegeneration. The results suggest that the C3‐C3aR pathway contributes to KA‐induced neurodegeneration by mediating microglia–astrocyte communication. The C3‐C3aR pathway may prove to be a potential therapeutic target for epilepsy treatment.
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