首页> 外文期刊>RSC Advances >Down-regulation of lncRNA GAS5 attenuates neuronal cell injury through regulating miR-9/FOXO3 axis in cerebral ischemic stroke
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Down-regulation of lncRNA GAS5 attenuates neuronal cell injury through regulating miR-9/FOXO3 axis in cerebral ischemic stroke

机译:lncRNA GAS5的下调通过调节脑缺血性中风的miR-9 / FOXO3轴来减轻神经元细胞损伤

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Cerebral ischemic stroke is a leading cause of neurological disability worldwide. Previous study reported that long noncoding RNA (lncRNA) growth arrest-specific transcript 5 (GAS5) was highly expressed in ischemic stroke. However, the mechanism underlying GAS5 in an inflammatory injury during an ischemic stroke remains poorly understood. An in vivo mouse model of middle cerebral artery occlusion (MCAO) and an in vitro cell model of oxygen-glucose deprivation (OGD) were established to induce cerebral ischemic stroke condition. The expressions of GAS5, microRNA-9 (miR-9) and forkhead box O3 (FOXO3) were measured by quantitative real-time polymerase chain reaction (qRT-PCR) or western blot analysis, respectively. The neurological injury in vivo was investigated by neurological score and TTC staining. Cell apoptosis and inflammatory injury were analyzed by western blot, flow cytometry and enzyme-linked immunosorbent assay (ELISA), respectively. The interaction between miR-9 and GAS5 or FOXO3 was explored by luciferase activity, RNA pull-down and RNA immunoprecipitation (RIP) assays. GAS5 expression was enhanced in the cerebral ischemic stroke model. Knockdown of GAS5 attenuated the cerebral infarct, neurological injury, apoptosis and inflammatory injury in the mouse MCAO model. miR-9 was bound to GAS5 and its overexpression inhibited cell apoptosis and inflammatory response in OGD-treated bEnd.3 cells, which was attenuated by GAS5. FOXO3 was a target of miR-9 and its restoration reversed the miR-9-mediated suppression of apoptosis and inflammation. Moreover, GAS5 promoted FOXO3 expression by competitively sponging miR-9. GAS5 knockdown alleviated neuronal cell injury by regulating miR-9/FOXO3, providing a new theoretical foundation for cerebral ischemic stroke.
机译:脑缺血性中风是全世界神经系统残疾的主要原因。先前的研究报道,长非编码RNA(lncRNA)生长停滞特异性转录本5(GAS5)在缺血性中风中高度表达。然而,尚不清楚在缺血性中风期间炎性损伤中GAS5的潜在机制。建立了小鼠中脑动脉闭塞的体内模型(MCAO)和氧葡萄糖剥夺的体外细胞模型(OGD),以诱导脑缺血性中风。分别通过定量实时聚合酶链反应(qRT-PCR)或蛋白质印迹分析来测量GAS5,microRNA-9(miR-9)和叉头盒O3(FOXO3)的表达。通过神经学评分和TTC染色研究体内神经损伤。分别通过蛋白质印迹,流式细胞仪和酶联免疫吸附测定(ELISA)分析细胞凋亡和炎症损伤。通过荧光素酶活性,RNA下拉和RNA免疫沉淀(RIP)分析探索了miR-9与GAS5或FOXO3之间的相互作用。 GAS5表达在脑缺血性中风模型中得到增强。敲除GAS5可减轻小鼠MCAO模型中的脑梗塞,神经损伤,细胞凋亡和炎性损伤。 miR-9与GAS5结合,其过表达抑制了OGD处理的bEnd.3细胞的细胞凋亡和炎症反应,而GAS5减弱了它的表达。 FOXO3是miR-9的靶标,其还原可逆转miR-9介导的凋亡和炎症抑制。此外,GAS5通过竞争性地刺激miR-9促进了FOXO3的表达。 GAS5敲低可通过调节miR-9 / FOXO3减轻神经元细胞损伤,为脑缺血性中风提供了新的理论基础。

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