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首页> 外文期刊>Brain research bulletin >miR-145 protects the function of neuronal stem cells through targeting MAPK pathway in the treatment of cerebral ischemic stroke rat
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miR-145 protects the function of neuronal stem cells through targeting MAPK pathway in the treatment of cerebral ischemic stroke rat

机译:MiR-145通过靶向MAPK途径来保护神经元干细胞的功能在治疗脑缺血性卒中大鼠

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This study is designed to investigate the function of the miR-145 in the protection of neural stem cells (NSCs) through targeting mitogen-activated protein kinase (MAPK) pathway in the treatment of cerebral ischemic stroke rat. In our study, rat NSCs were selected and cultured in complete medium. The light microscopy was used to observe the morphology of NSCs at different times. The quantitative reverse transcriptase real-time polymerise chain reaction (qRT-PCR) was used to detect the miR-145 and other related mRNAs of the MARK pathway. The Western blotting was used to detect the activation of MAPK pathway and neuronal specific markers. The Immunofluorescence was used to detect the expression of the neuron-specific enolase. And the cell viability was detected by Cell Counting Kit (CCK)-8 assay. The flow cytometry was used to test the cell cycle and apoptosis. The ischemic stroke rat models were established and neural stem cell transplantation was performed. The neurological function score, balance beam experiment, and cortical Nissl staining were used to evaluate the postoperative neurological function in rats. The expression of miR-145, extracellular signal-regulated kinase (ERK), and p38 mRNA in rat NSCs increased in a time-dependent manner. Compared with the Blank group, the over-expression of miR-145 promoted the expression of related mRNA and protein of the MAPK pathway in NSCs, while the decreased expression of miR-145 suppressed the MAPK Pathways. Compared with the Blank group, over-expression of miR-145 in NSCs promoted the up-regulation of Cyclin D1, Nestin, neuron-specific enolase (NSE), and Glial fibrillary acidic protein (GFAP) proteins, enhanced the activity of NSCs, and promoted cell proliferation and differentiation, while inhibited the cell apoptosis and the Cleaved-caspase 3 expression. After treatment of NSCs in the SB203580 group, the Nestin, NSE, and GFAP were decreased; cell viability, proliferation and differentiation were inhibited, while Cleaved-caspase 3 protein and cell apoptosis rate increased. The results of animal experiments showed that compared with the Blank group, the walking ability and neurological impairment recovered rapidly in the rats after transplantation of NSCs with over-expression of miR-145, and more neurons were generated in the cortex. After the transplantation of SB203580-treated NSCs, the walking ability and neurological impairment of the rats were slower and the cortical neurons were less. We conclude that miR-145 protects the function of neuronal stem cells through targeting MAPK pathway in the treatment of cerebral ischemic stroke rat.
机译:该研究旨在探讨MiR-145在治疗脑缺血性卒中大鼠的偶丝糖激活的蛋白激酶(MAPK)途径中保护神经干细胞(NSCs)的功能。在我们的研究中,在完全培养基中选择并培养大鼠NSC。光学显微镜检查用于在不同时间观察NSCs的形态。定量逆转录酶实时聚合链反应(QRT-PCR)用于检测MIR-145和标记途径的其他相关MRNA。蛋白质印迹用于检测MAPK途径的激活和神经元特异性标记。免疫荧光用于检测神经元特异性烯醇酶的表达。通过细胞计数试剂盒(CCK)-8测定检测细胞活力。流式细胞仪用于测试细胞周期和细胞凋亡。建立了缺血性卒中大鼠模型,进行神经干细胞移植。神经功能评分,平衡梁实验和皮质镍镉染色用于评估大鼠的术后神经功能。大鼠NSC中miR-145,细胞外信号调节激酶(ERK)和P38 mRNA的表达以时间依赖的方式增加。与空白组相比,miR-145的过表达促进了NSC中MAPK途径的相关mRNA和蛋白的表达,而MIR-145的表达降低抑制了MAPK途径。与空白组相比,NSCs中miR-145的过表达促进了细胞周期蛋白D1,巢蛋白,特异性烯醇酶(NSE)和胶质纤维酸性蛋白(GFAP)蛋白的上调,增强了NSC的活性,并促进细胞增殖和分化,同时抑制细胞凋亡和切割的胱天蛋白酶3表达。在SB203580组中治疗NSCs后,巢蛋白,NSE和GFAP减少;抑制细胞活力,增殖和分化,同时切割胱天蛋白酶3蛋白和细胞凋亡率增加。动物实验的结果表明,与空白组相比,在对MiR-145的过表达后,在NSCs移植后,在大鼠中迅速回收的行走能力和神经系统损伤,并且在皮质中产生更多神经元。在移植SB203580治疗的NSC后,大鼠的行走能力和神经损伤较慢,皮质神经元较小。我们得出结论,miR-145通过靶向MAPK途径来保护神经元干细胞的功能在治疗脑缺血性卒中大鼠中。

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