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首页> 外文期刊>Apoptosis: An international journal on programmed cell death >Mitochondrial KATP channels-derived reactive oxygen species activate pro-survival pathway in pravastatin-induced cardioprotection
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Mitochondrial KATP channels-derived reactive oxygen species activate pro-survival pathway in pravastatin-induced cardioprotection

机译:线粒体KATP通道衍生的活性氧激活普伐他汀诱导的心脏保护中的促生存途径

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Reactive oxygen species (ROS) are important intracellular signaling molecules and are implicated in cardioprotective pathways including ischemic preconditioning. Statins have been shown to have cardioprotective effects against ischemia/reperfusion injury, however, the precise mechanisms remain to be elucidated. We hypothesized that ROS-mediated signaling cascade may be involved in pravastatin-induced cardioprotection. Cultured rat cardiomyocytes were exposed to H_2O_2 for 30 min to induce cell injury. Pravastatin significantly suppressed H_2O_2-induced cell death evaluated by propidium iodide staining and the MTT assay. Incubation with pravastatin activated catalase, and prevented a ROS burst induced by H _2O_2, which preserved mitochondrial membrane potential. Protective effects were induced very rapidly within 10 min, which was concordant with the up-regulation of phosphorylated ERK1/2. L-NAME, 5HD, N-acetylcysteine (NAC) and staurosporine inhibited ERK1/2 phosphorylation and also reduced pravastatin-induced cardioprotection, suggesting NO, mitochondrial K _(ATP) (mitoK_(ATP)) channels, ROS and PKC should be involved in the cardioprotective signaling. We also demonstrated that pravastatin moderately up-regulated ROS generation in a 5HD-inhibitable manner. In isolated perfused rat heart experiments, pravastatin administered 10 min prior to no-flow global ischemia significantly improved left ventricular functional recovery, and also reduced infarct size, which were attenuated by the treatment with NAC, 5HD, L-NAME or staurosporine. Administration of pravastatin from the beginning of reperfusion also conferred cardioprotection. Pravastatin protected the cardiomyocytes against oxidative stress by preventing the ROS burst and preserving mitochondrial function. Moderately up-regulated ROS production by mitoK_(ATP) channels opening is involved in the pro-survival signaling cascade activated by pravastatin.
机译:活性氧(ROS)是重要的细胞内信号分子,与包括缺血预处理在内的心脏保护途径有关。他汀类药物已显示出对缺血/再灌注损伤的心脏保护作用,但是,确切的机制尚待阐明。我们假设ROS介导的信号传导级联可能参与普伐他汀诱导的心脏保护作用。将培养的大鼠心肌细胞暴露于H_2O_2 30分钟以诱导细胞损伤。普伐他汀通过碘化丙啶染色和MTT分析显着抑制了H_2O_2诱导的细胞死亡。与普伐他汀孵育可激活过氧化氢酶,并防止了H _2O_2诱导的ROS爆发,从而保留了线粒体膜电位。在10分钟内非常迅速地诱导了保护作用,这与磷酸化ERK1 / 2的上调一致。 L-NAME,5HD,N-乙酰半胱氨酸(NAC)和星形孢菌素抑制ERK1 / 2磷酸化并降低普伐他汀诱导的心脏保护作用,提示应参与NO,线粒体K_(ATP)(mitoK_(ATP))通道,ROS和PKC在心脏保护信号中。我们还证明了普伐他汀以5HD抑制的方式适度上调了ROS的产生。在孤立的灌流大鼠心脏实验中,普伐他汀在无流动性全脑缺血前10分钟给药,可显着改善左心室功能恢复,并缩小梗塞面积,这可通过用NAC,5HD,L-NAME或星形孢菌素治疗来减轻。从再灌注开始就给予普伐他汀也可以保护心脏。普伐他汀可通过防止ROS破裂并保持线粒体功能来保护心肌细胞免受氧化应激。通过mitoK_(ATP)通道开放适度上调ROS的产生与普伐他汀激活的促生存信号级联有关。

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