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一氧化氮的多种作用。

The multiple actions of NO.

机构信息

Department of Physiology and Pathophysiology, Peking University Health Science Center, 38 Xue Yuan Road, Beijing, 100191, China.

出版信息

Pflugers Arch. 2010 May;459(6):829-39. doi: 10.1007/s00424-009-0773-9. Epub 2009 Dec 19.

Abstract

Studies in the last two decades have firmly established that nitric oxide (NO) exerts a broad range of effects on bodily functions including muscle contractility, platelet aggregation, metabolism, neuronal activity, and immune responses. The underlying mechanisms rely primarily on elevating guanosine 3',5'-cyclic monophosphate due to the stimulation of soluble guanylyl cyclase, inhibiting mitochondria respiration by the action on cytochrome C oxidase, and nitrosylating proteins and enzymes. Under pathophysiological conditions, an increased production of NO concurrently with an enhanced generation of superoxide leads to the formation of peroxynitrite, a potent oxidative agent, and thus tissue injuries. This article intends to provide a brief review on the effects of NO in the modulations of muscle contractility, platelet aggregation, metabolism, neuronal activity, and immune responses. The actions of NO vary depending on the interactions between this gaseous molecule, its derivates, and their effectors as well as the local redox environments. Considering the complexity of these interactions and the widespread presence of NO in various body systems and cell types, there is no doubt that this area of research will remain very challenging and rewarding in the foreseeable future.

摘要

过去二十年的研究已经明确确立,一氧化氮(NO)对包括肌肉收缩、血小板聚集、代谢、神经元活动和免疫反应在内的身体功能具有广泛的影响。其潜在机制主要依赖于通过刺激可溶性鸟苷酸环化酶来升高鸟苷酸 3',5'-环单磷酸,通过作用于细胞色素 C 氧化酶来抑制线粒体呼吸,以及通过硝化蛋白质和酶。在病理生理条件下,NO 产量增加同时超氧化物生成增强会导致过氧亚硝酸盐的形成,这是一种有效的氧化剂,从而导致组织损伤。本文旨在简要综述 NO 在肌肉收缩、血小板聚集、代谢、神经元活动和免疫反应调节中的作用。NO 的作用取决于这种气体分子及其衍生物与其效应物之间的相互作用以及局部氧化还原环境。考虑到这些相互作用的复杂性以及 NO 在各种身体系统和细胞类型中的广泛存在,毫无疑问,这一研究领域在可预见的未来仍将极具挑战性和回报。

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