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Attenuation of oxidative stress in HL-1 cardiomyocytes improves mitochondrial function and stabilizes Hif-1alpha.

机译:HL-1心肌细胞中氧化应激的减弱可改善线粒体功能并稳定Hif-1alpha。

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摘要

HL-1 cardiomyocytes were subjected to simulated hypoxia, in the presence of cobalt chloride, which resulted in reduction of cell viability and induction of DNA laddering, indicating the activation of the apoptotic cascade. In the presence of trolox, ascorbic acid, melatonin and the hybrid compound of trolox and lipoic acid (LaT 3a), cell viability was increased, with LaT 3a exhibiting the best effect. Antioxidant treatment restored ATP levels, abolished laddering of DNA, abrogated MPTP opening, Bax translocation to the mitochondria and cytochrome c release to the cytoplasm. Moreover, severe hypoxia, was found to destabilize hypoxia inducible factor-1alpha (Hif-1alpha) mRNA. Reduction of oxidative stress attenuated this effect, implying a possible anti-apoptotic action of the master regulator of hypoxia response. Our data suggest that antioxidants can maintain cell function and survival by inhibiting the mitochondrial apoptotic pathway and stabilizing Hif-1alpha.
机译:HL-1心肌细胞在氯化钴的存在下经历了模拟的缺氧,这导致细胞活力降低和DNA梯形诱导,表明凋亡级联反应的激活。在trolox,抗坏血酸,褪黑激素以及trolox和硫辛酸的杂化化合物(LaT 3a)的存在下,细胞活力得以提高,其中LaT 3a表现出最佳效果。抗氧化剂治疗可恢复ATP的水平,消除DNA的阶梯,取消MPTP的开放,Bax易位至线粒体,细胞色素c释放至细胞质。此外,发现严重的缺氧会破坏缺氧诱导因子-1α(Hif-1alpha)mRNA的稳定性。氧化应激的降低减弱了这种作用,这意味着低氧反应的主要调节因子可能具有抗凋亡作用。我们的数据表明抗氧化剂可以通过抑制线粒体的凋亡途径和稳定Hif-1alpha来维持细胞功能和存活。

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