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首页> 外文期刊>European review for medical and pharmacological sciences. >Retigabine attenuates focal cerebral ischemic injury through inhibiting mitochondria-dependent apoptotic pathway
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Retigabine attenuates focal cerebral ischemic injury through inhibiting mitochondria-dependent apoptotic pathway

机译:瑞替加滨通过抑制线粒体依赖性凋亡途径减轻局灶性脑缺血损伤

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OBJECTIVE: We explored the protective effect of retigabine (RTG) on focal cerebral ischemic injury and the potential molecular mechanism. MATERIALS AND METHODS: A mouse model of middle cerebral artery occlusion (MCAO) was established to induce cerebral ischemic injury. Blood samples were collected for the measurement of malondialdehyde (MDA), superoxide dismutase (SOD) and reduced glutathione (GSH). The brain infarct volume was stained by triphenyltetrazolium chloride. The cell apoptosis was observed by terminal deoxynucleotidyl transferase (TdT)-mediated dUTP nick-end labeling (TUNEL) staining. The expression of B-cell lymphoma-2 (Bcl-2), BCL2-Associated X (Bax), cleaved caspase 3, p-p38 and p-JNK, were determined by Western blot. RESULTS: RTG treatment reduced the MCAO-induced increase in brain infarct volume and neurological deficit scores. RTG treatment reduced the level of MDA and increased the activity of SOD and GSH. RTG treatment also decreased the Bax/Bcl-2 ratio and cleaved caspase 3 expression in the ischemic tissues. Further, RTG treatment decreased the phosphorylation levels of p38 and JNK in the ischemic tissues. CONCLUSIONS: RTG attenuated cerebral ischemic injury through reducing oxidative stress and mitochondria-mediated apoptosis via inhibiting p38 and JNK phosphorylation.
机译:目的:探讨瑞格他滨(RTG)对局灶性脑缺血损伤的保护作用及其潜在的分子机制。材料与方法:建立了小鼠中脑动脉阻塞模型,以诱导脑缺血性损伤。收集血液样本以测量丙二醛(MDA),超氧化物歧化酶(SOD)和还原型谷胱甘肽(GSH)。用三苯基氯化四氮唑染色脑梗塞体积。通过末端脱氧核苷酸转移酶(TdT)介导的dUTP缺口末端标记(TUNEL)染色观察到细胞凋亡。通过Western印迹测定B细胞淋巴瘤2(Bcl-2),BCL2-Associated X(Bax),半胱天冬酶3,p-p38和p-JNK的表达。结果:RTG治疗减少了MCAO引起的脑梗死体积和神经功能缺损评分的增加。 RTG处理降低了MDA的水平,并增加了SOD和GSH的活性。 RTG处理还降低了缺血组织中的Bax / Bcl-2比和裂解的caspase 3表达。此外,RTG处理降低了缺血组织中p38和JNK的磷酸化水平。结论:RTG通过抑制p38和JNK磷酸化而减少氧化应激和线粒体介导的细胞凋亡,从而减轻了脑缺血损伤。

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