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miR-1 通过调控 ERK 信号通路对脑梗死大鼠神经细胞凋亡的影响。

Influence of miR-1 on Nerve Cell Apoptosis in Rats with Cerebral Stroke via Regulating ERK Signaling Pathway.

机构信息

Department of Neurosurgery, The Second Affiliated Hospital of South China University, Hengyang, 421001 Hunan Province, China.

Department of Hemodialyses Room, The Second Affiliated Hospital of South China University, Hengyang, 421001 Hunan Province, China.

出版信息

Biomed Res Int. 2021 Aug 19;2021:9988534. doi: 10.1155/2021/9988534. eCollection 2021.

Abstract

To explore the effect of miR-1 on neuronal apoptosis in rats with stroke through the ERK signaling pathway. . Forty male rats (180-220 g) were selected and randomly divided into the sham, model, miR-1 inhibitor, and miR-1 mimic groups (10 rats per group) by average body weight. Cerebral ischemia/reperfusion (I/R) models were established using a modified middle cerebral artery wire thrombosis (MCAO) method in rats in the model group, miR-1 inhibitor group, and miR-1 mimic group. After the successful model establishment, the miR-1inhibitor group and miR-1 mimic group were intravenously injected with miR-1 inhibitor and miR-1 mimic, respectively, once a day for 3 days. The sham and model groups were given the same dose of normal saline. TTC staining was applied to detect the cerebral infarct size and calculate the infarct volume. Histopathological changes in the hippocampus of rat brains were observed by HE staining. Flow cytometry was used to detect neuronal apoptosis in rat brains. The mRNA expressions of miR-1, ERK1/2, Bcl-2, and Bax in rat brain tissues were determined by QRT PCR, and the protein levels of ERK1/2, Bcl-2, Bax, and caspase-3 were determined by Western blot analysis. . Compared with the sham group, the neurological impairment score, cerebral infarct size, and volume of rats in the model group were significantly increased ( < 0.05). Compared with the model group, the neurological impairment score, cerebral infarct size, and volume were significantly increased in the miR-1 mimic group and significantly decreased in the miR-1 inhibitor group ( < 0.05). In the model group, the hippocampal tissue of rats had malaligned cells, neuron cell atrophy became smaller, the intercellular spaces became larger, and vacuoles appeared. Compared with the model group, the miR-1 inhibitor group could effectively alleviate the pathological changes in the hippocampus, and the miR-1 mimic group could significantly add to the pathological changes in the rat hippocampus. Compared with the sham group, the mRNA expression of miR-1 and Bax in the brain of model rats increased significantly ( < 0.05), and the mRNA expression of ERK1/2 decreased significantly; Compared with the model group, the miR-1 and Bax mRNA expressions in the brain tissues of rats in the miR-1 inhibitor group were significantly decreased, the ERK1/2 and bcl-2 mRNA expressions were significantly increased, and the miR-1 and Bax mRNA expressions in the brain tissues of rats in the miR-1 inhibitor group were significantly decreased, and the Bcl-2 mRNA expression was significantly increased ( < 0.05). Compared with the sham group, neuronal apoptosis was increased in the brain tissues of rats in the model group and miR-1 mimic group. Compared with the model group, neuronal apoptosis was decreased in the brain tissues of rats in the miR-1 inhibitor group. Compared with the sham group, the ERK1/2 proteins in the model group were significantly decreased, the Bcl-2, Bax, and caspase-3 proteins were significantly increased, and the ERK1/2, Bcl-2, Bax, and caspase-3 proteins in the miR-1 inhibitor group and miR-1 mimic group were significantly increased. Compared with the model group, the protein levels of ERK1/2 and Bcl-2 in the miR-1 inhibitor group were significantly increased, the proteins of Bax and caspase-3 were significantly decreased, and the protein levels of ERK1/2 and Bcl-2 in the miR-1 inhibitor group were significantly increased ( < 0.05). . miR-1 can interfere with neuronal apoptosis in rats with stroke through the ERK signaling pathway.

摘要

探讨通过 ERK 信号通路 miR-1 对脑梗死大鼠神经元凋亡的影响。选取 40 只雄性大鼠(180-220g),按平均体重随机分为假手术组、模型组、miR-1 抑制剂组和 miR-1 模拟组(每组 10 只)。采用改良大脑中动脉线栓法建立大鼠脑缺血再灌注(I/R)模型。在模型组、miR-1 抑制剂组和 miR-1 模拟组大鼠成功建立模型后,分别静脉注射 miR-1 抑制剂和 miR-1 模拟物,每天 1 次,连续 3 天。假手术组和模型组给予等剂量生理盐水。TTC 染色检测脑梗死面积并计算梗死体积。HE 染色观察大鼠海马组织病理变化。流式细胞术检测大鼠脑神经元凋亡。采用 QRT-PCR 检测大鼠脑组织 miR-1、ERK1/2、Bcl-2、Bax 的 mRNA 表达,Western blot 分析检测 ERK1/2、Bcl-2、Bax、caspase-3 蛋白水平。与假手术组比较,模型组大鼠神经功能缺损评分、脑梗死体积及梗死体积明显增加( < 0.05)。与模型组比较,miR-1 模拟组大鼠神经功能缺损评分、脑梗死体积及梗死体积明显增加,miR-1 抑制剂组明显减少( < 0.05)。模型组大鼠海马组织细胞排列紊乱,神经元细胞萎缩变小,细胞间隙增大,出现空泡。与模型组比较,miR-1 抑制剂组可有效缓解海马区病理变化,miR-1 模拟组可明显加重大鼠海马区病理变化。与假手术组比较,模型组大鼠脑内 miR-1 和 BaxmRNA 表达明显升高( < 0.05),ERK1/2mRNA 表达明显降低;与模型组比较,miR-1 抑制剂组大鼠脑组织中 miR-1 和 BaxmRNA 表达明显降低,ERK1/2 和 bcl-2mRNA 表达明显升高,miR-1 抑制剂组大鼠脑内 miR-1 和 BaxmRNA 表达明显降低,Bcl-2mRNA 表达明显升高( < 0.05)。与假手术组比较,模型组大鼠脑组织中神经元凋亡增加,miR-1 模拟组大鼠脑组织中神经元凋亡增加。与模型组比较,miR-1 抑制剂组大鼠脑组织中神经元凋亡减少。与假手术组比较,模型组大鼠 ERK1/2 蛋白明显减少,Bcl-2、Bax、caspase-3 蛋白明显增加,miR-1 抑制剂组和 miR-1 模拟组大鼠 ERK1/2、Bcl-2、Bax、caspase-3 蛋白明显增加。与模型组比较,miR-1 抑制剂组大鼠脑组织 ERK1/2 和 Bcl-2 蛋白水平明显升高,Bax 和 caspase-3 蛋白明显降低,miR-1 抑制剂组大鼠脑组织 ERK1/2 和 Bcl-2 蛋白水平明显升高( < 0.05)。。miR-1 可通过 ERK 信号通路干扰脑梗死大鼠神经元凋亡。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/db6d/8397560/01b2aeb24a9d/BMRI2021-9988534.001.jpg

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