小胶质细胞
缺血
纹状体
小RNA
化学
冲程(发动机)
神经科学
梗塞
医学
药理学
内科学
炎症
生物
生物化学
心肌梗塞
基因
物理
多巴胺
热力学
作者
Jingshu Ni,Xiaoyu Wang,Shuangshuang Chen,Huihui Liu,Yun Wang,Xingshun Xu,Jian Cheng,Jia Jia,Xuechu Zhen
标识
DOI:10.1016/j.bbi.2015.04.014
摘要
The present study was designed to reveal the potential role of let-7c-5p, a highly conserved miRNA in stroke. We found that the content of let-7c-5p was significantly decreased in the plasma of patients with ischemic stroke as well as in experimental animals. Moreover, we also observed a significant decrease of let-7c-5p in ipsilateral cortex and striatum in mice that were subjected to middle cerebral artery occlusion (MCAO) at 24 h reperfusion. Overexpression of let-7c-5p via ICV injection decreased the infarction volume and attenuated the neurological deficits, and most interestingly, inhibited microglial activation. To further explore the mechanism, we checked let-7c-5p expression in BV2 cells and primary microglia in an OGD condition and in LPS-induced microglial activation. The results indicated that decreased let-7c-5p was evidenced in the activated microglia. Overexpression of let-7c-5p in BV2 cells remarkably inhibited the microglial activation. The inhibition of microglial activation by overexpression of let-7c-5p was also observed in mice with experimental stroke, which is in line with the decreased infarction volume and improved neurological deficits. We identified that let-7c-5p directly targeted to the 3′-untranslated region of the caspase 3 mRNA to reduce caspase 3 levels, which may underline the miRNA – modulated microglial activity. The present study revealed that suppression of microglia activation by let-7c-5p overexpression may be involved in the protection effects of ischemic damage. The mechanism may include the miRNA-mediated caspase 3 pathway.
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