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Abnormal Ca2+ Cycling in Failing Ventricular Myocytes: Role of NOS1-Mediated Nitroso-Redox Balance

机译:失败的心室肌细胞中异常的Ca2 +循环:NOS1介导的亚硝基氧化还原平衡的作用

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摘要

>Significance: Heart failure (HF) results from poor heart function and is the leading cause of death in Western society. Abnormalities of Ca2+ handling at the level of the ventricular myocyte are largely responsible for much of the poor heart function. >Recent Advances: Although studies have unraveled numerous mechanisms for the abnormal Ca2+ handling, investigations over the past decade have indicated that much of the contractile dysfunction and adverse remodeling that occurs in HF involves oxidative stress. >Critical Issues: Regrettably, antioxidant therapy has been an immense disappointment in clinical trials. Thus, redox signaling is being reassessed to elucidate why antioxidants failed to treat HF. >Future Directions: A recently identified aspect of redox signaling (specifically the superoxide anion radical) is its interaction with nitric oxide, known as the nitroso-redox balance. There is a large nitroso-redox imbalance with HF, and we suggest that correcting this imbalance may be able to restore myocyte contraction and improve heart function. Antioxid. Redox Signal. 21, 2044–2059.
机译:>意义:心力衰竭(HF)是由于心脏功能不佳引起的,是西方社会死亡的主要原因。心室肌细胞水平Ca 2 + 的异常处理是造成大部分心脏功能不佳的原因。 >最近的进展:尽管研究已经阐明了许多处理Ca 2 + 异常的机制,但过去十年的研究表明,许多收缩功能障碍和不良重塑发生在HF涉及氧化应激。 >关键问题:令人遗憾的是,抗氧化剂治疗在临床试验中一直令人失望。因此,正在重新评估氧化还原信号,以阐明抗氧化剂为何无法治疗HF。 >未来方向:最近确定的氧化还原信号(特别是超氧阴离子自由基)的方面是其与一氧化氮的相互作用,称为亚硝基-氧化还原平衡。 HF存在大量的亚硝基氧化还原失衡,我们建议纠正这种失衡可能能够恢复心肌细胞收缩并改善心脏功能。抗氧化。氧化还原信号。 20、21、2044年至2059年。

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