神经炎症
小胶质细胞
安普克
炎症
医学
调解人
药理学
线粒体
细胞凋亡
脑出血
内分泌学
促炎细胞因子
米诺环素
信号转导
细胞因子
细胞生物学
AMP活化蛋白激酶
化学
肿瘤坏死因子α
内科学
莫里斯水上航行任务
氧化应激
癌症研究
胶质增生
脑损伤
TLR4型
神经科学
二甲双胍
作者
Rui Yin,Caixia Qiu,Qikai Shen,Zhong Wang
标识
DOI:10.5483/bmbrep.2025-0175
摘要
Microglial activation driving neuroinflammation is a key factor in secondary brain injury after intracerebral hemorrhage (ICH); however, the regulatory mechanisms remain unknown. This study investigates how corin influences microglial inflammatory activation and its underlying mechanisms. Corin expression in rat ICH brain tissue was assessed at multiple time points. To assess corin's effect on neurological function and microglial inflammation, ICH rats and oxygen-glucose deprivation plus hemin (OGD/H)-stimulated HAPI microglia were treated with corin-encoding lentivirus. Neurobehavioral performance was evaluated using the Morris water maze (MWM). Microglial activation was assessed via Iba-1, iNOS, and Arg-1 expression, cytokine secretion, and migration assays. To determine whether AMPK mediates corin's effects, cells were co-treated with Compound C (an AMPK inhibitor) and corin lentivirus. Corin expression decreased in ICH rat brain tissue, reaching its lowest level on day 3 post-ICH. Corin overexpression protected against ICH-induced neuronal apoptosis and improved neurological deficits as confirmed by MWM. Moreover, corin overexpression reduced microglial activation and inflammation in both ICH rats and OGD/H-stimulated microglial cells, ameliorated mitochondrial dysfunction, and increased the p-AMPK/AMPK ratio. The protective effects of corin on cell migration, inflammation, and mitochondrial function were reversed by Compound C, indicating AMPK is a downstream mediator of corin. Targeting corin offers a promising therapeutic strategy for ICH by reducing neuroinflammation and mitochondrial damage through AMPK activation and modulation of microglial inflammatory phenotype polarization. [BMB Reports 2026; 59(2): 143-150].
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