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Inhibition of miR-19a-3p decreases cerebral ischemia/reperfusion injury by targeting IGFBP3 in vivo and in vitro

机译:MIR-19A-3P的抑制通过靶向体内和体外IGFBP3来降低脑缺血/再灌注损伤

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Inflammation and apoptosis are considered to be two main factors affecting ischemic brain injury and the subsequent reperfusion damage. MiR-19a-3p has been reported to be a possible novel biomarker in ischemic stroke. However, the function and molecular mechanisms of miR-19a-3p remain unclear in cerebral ischemia/reperfusion (I/R) injury. The I/R injury model was established in vivo by middle cerebral artery occlusion/reperfusion (MCAO/R) in rats and in vitro by oxygen–glucose deprivation and reperfusion (OGD/R) induced SH-SY5Y cells. The expression of miR-19a-3p was determined by reverse transcription quantitative PCR. The infarction volumes, Neurological deficit scores, apoptosis, cell viability, pro-inflammatory cytokines and apoptosis were evaluated using Longa score, Bederson score, TTC, TUNEL staining, CCK-8, ELISA, flow cytometry assays. Luciferase reporter assay was utilized to validate the target gene of miR-19a-3p. We first found miR-19a-3p was significantly up-regulated in rat I/R brain tissues and OGD/R induced SH-SY5Y cells. Using the in vivo and in vitro I/R injury model, we further demonstrated that miR-19a-3p inhibitor exerted protective role against injury to cerebral I/R, which was reflected by reduced infarct volume, improved neurological outcomes, increased cell viability, inhibited inflammation and apoptosis. Mechanistically, miR-19a-3p binds to 3′UTR region of IGFBP3 mRNA. Inhibition of miR-19a-3p caused the increased expression of IGFBP3 in OGD/R induced SH-SY5Y cells. Furthermore, we showed that IGFBP3 overexpression imitated, while knockdown reversed the protective effects of miR-19a-3p inhibitor against OGD/R-induced injury. In summary, our findings showed miR-19a-3p regulated I/R-induced inflammation and apoptosis through targeting IGFBP3, which might provide a potential therapeutic target for cerebral I/R injury.
机译:炎症和细胞凋亡被认为是影响缺血性脑损伤的两个主要因素和随后的再灌注损伤。据报道,MIR-19A-3P是一种在缺血性中风中可能的新型生物标志物。然而,miR-19a-3p的功能和分子机制仍不清楚脑缺血/再灌注(I / R)损伤。通过氧 - 葡萄糖剥夺和再灌注(OGD / R)诱导的SH-SY5Y细胞,通过大鼠中脑动脉闭塞/再灌注(MCAO / R)在大鼠中和体外建立I / R损伤模型。通过逆转录定量PCR测定miR-19a-3p的表达。使用Longa评分,床均衡,TTC,TUNEL染色,CCK-8,ELISA,流式细胞术测定评估梗死体积,神经缺陷分数,细胞凋亡,细胞活力,促炎细胞因子和细胞凋亡。荧光素酶报告器测定用于验证miR-19a-3p的靶基因。我们首先发现MiR-19A-3P在大鼠I / R脑组织和OGD / R诱导的SH-SY5Y细胞中显着上调。使用体内和体外I / R损伤模型,我们进一步证明MIR-19A-3P抑制剂对脑I / R损伤的保护作用施加了对梗塞体积减少,改善神经原因,增加的细胞活力,抑制炎症和细胞凋亡。机械地,miR-19a-3p与IGFBP3 mRNA的3'UTR区域结合。 miR-19a-3p的抑制导致OGD / R诱导的SH-SY5Y细胞中IGFBP3的表达增加。此外,我们展示了IGFBP3过表达模仿,而敲低扭转了miR-19a-3p抑制剂对OGD / R诱导损伤的保护作用。总之,我们的研究结果显示了MiR-19a-3p调节的I / R诱导的炎症和凋亡,通过靶向IGFBP3,这可能为脑I / R损伤提供潜在的治疗靶标。

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