首页> 外文期刊>Antioxidants and redox signalling >Nitric oxide/reactive oxygen species generation and nitroso/redox imbalance in heart failure: from molecular mechanisms to therapeutic implications.
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Nitric oxide/reactive oxygen species generation and nitroso/redox imbalance in heart failure: from molecular mechanisms to therapeutic implications.

机译:心力衰竭中一氧化氮/活性氧的产生和亚硝基/氧化还原失衡:从分子机制到治疗意义。

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摘要

Adaptation of the heart to intrinsic and external stress involves complex modifications at the molecular and cellular levels that lead to tissue remodeling, functional and metabolic alterations, and finally to failure depending upon the nature, intensity, and chronicity of the stress. Reactive oxygen species (ROS) have long been considered as merely harmful entities, but their role as second messengers has gradually emerged. At the same time, our comprehension of the multifaceted role of nitric oxide (NO) and the related reactive nitrogen species (RNS) has been upgraded. The tight interlay between ROS and RNS suggests that their imbalance may implicate the impairment in physiological NO/redox-based signaling that contributes to the failing of the cardiovascular system. This review initially provides basic concepts on the role of nitroso/oxidative stress in the pathophysiology of heart failure with a particular focus on sources of ROS/RNS, their downstream targets, and endogenous modulators. Then, the role of NO/redox regulation of cardiomyocyte function, including calcium homeostasis, electrogenesis, and insulin signaling pathways, is described. Finally, an overview of old and emerging therapeutic opportunities in heart failure is presented, focusing on modulation of NO/redox mechanisms and discussing benefits and limitations.
机译:心脏适应内在和外在压力涉及分子和细胞水平的复杂修饰,导致组织重塑,功能和代谢改变,最终导致衰竭,具体取决于压力的性质,强度和长期性。长期以来,人们一直认为活性氧(ROS)仅是有害物质,但它们逐渐成为第二信使的角色。同时,我们对一氧化氮(NO)和相关活性氮物种(RNS)的多重作用的理解得到了提升。 ROS和RNS之间的紧密联系表明,它们之间的不平衡可能暗示了基于生理性NO /氧化还原的信号传导受损,从而导致心血管系统衰竭。这篇综述最初提供了有关亚硝基/氧化应激在心力衰竭的病理生理中的作用的基本概念,特别着重于ROS / RNS的来源,其下游靶标和内源性调节剂。然后,描述了NO /氧化还原调节心肌细胞功能(包括钙稳态,电生成和胰岛素信号通路)的作用。最后,介绍了心力衰竭中新出现的治疗机会,重点关注NO /氧化还原机制的调节并讨论了益处和局限性。

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