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首页> 外文期刊>Molecular and Cellular Biochemistry: An International Journal for Chemical Biology >Inhibition of ROS-activated ERK1/2 pathway contributes to the protection of H2S against chemical hypoxia-induced injury in H9c2 cells.
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Inhibition of ROS-activated ERK1/2 pathway contributes to the protection of H2S against chemical hypoxia-induced injury in H9c2 cells.

机译:ROS激活的ERK1 / 2途径的抑制作用有助于保护H2S免受H9c2细胞中化学低氧诱导的损伤。

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Hydrogen sulfide (H(2)S) has been shown to exert cardioprotective effects. However, the roles of extracellular signal-regulated protein kinases 1/2 (ERK1/2) in H(2)S-induced cardioprotection have not been completely elucidated. In this study, cobalt chloride (CoCl(2)), a chemical hypoxia mimetic agent, was applied to treat H9c2 cells to establish a chemical hypoxia-induced cardiomyocyte injury model. The results showed that pretreatment with NaHS (a donor of H(2)S) before exposure to CoCl(2) attenuated the decreased cell viability, the increased apoptosis rate, the loss of mitochondrial membrane potential (ΔΨm), and the intracellular accumulation of reactive oxygen species (ROS) in H9c2 cells. Exposure of H9c2 cells to CoCl(2) or hydrogen peroxide (H(2)O(2)) upregulated expression of phosphorylated (p) ERK1/2, which was reduced by pretreatment with NaHS or N-acetyl-L-cysteine, a ROS scavenger. More importantly, U0126, a selective inhibitor of ERK1/2, mimicked the above cytoprotection of H(2)S against CoCl(2)-induced injury in H9c2 cells. In conclusion, these results indicate that H(2)S protects H9c2 cells against chemical hypoxia-induced injury partially by inhibiting ROS-mediated activation of ERK1/2.
机译:硫化氢(H(2)S)已显示出心脏保护作用。但是,尚未完全阐明细胞外信号调节蛋白激酶1/2(ERK1 / 2)在H(2)S诱导的心脏保护中的作用。在这项研究中,氯化钴(CoCl(2)),一种化学性的缺氧模拟剂,被用于治疗H9c2细胞,以建立化学性缺氧引起的心肌细胞损伤模型。结果表明,在暴露于CoCl(2)之前,用NaHS(H(2)S的供体)进行预处理可以减弱细胞活力的下降,细胞凋亡率的增加,线粒体膜电位(ΔΨm)的丧失以及细胞内的积累。 H9c2细胞中的活性氧(ROS)。 H9c2细胞暴露于CoCl(2)或过氧化氢(H(2)O(2))上调了磷酸化(p)ERK1 / 2的表达,该表达通过用NaHS或N-乙酰-L-半胱氨酸进行预处理而降低ROS清除剂。更重要的是,U0126,ERK1 / 2的选择性抑制剂,模仿了H(2)S对Co9(2)诱导的H9c2细胞损伤的细胞保护作用。总之,这些结果表明,H(2)S通过抑制ROS介导的ERK1 / 2活化来部分保护H9c2细胞免受化学低氧诱导的损伤。

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