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脂质过氧化中的一氧化氮与过氧亚硝酸盐。

Nitric oxide and peroxynitrite in lipid peroxidation.

作者信息

Rubbo H

机构信息

Departamento de Bioquímica, Facultad de Medicina, Universidad de la República, Montevideo, Uruguay.

出版信息

Medicina (B Aires). 1998;58(4):361-6.

PMID:9816697
Abstract

Nitric oxide (.NO) can mediate tissue protective reactions during oxidant stress, as well as toxic and tissue prooxidant effects. Nitric oxide regulates critical lipid membrane and lipoprotein oxidation events, by 1) contributing to the formation of more potent secondary oxidants from superoxide (i.e. peroxynitrite) and 2) termination of lipid radicals to possibly less reactive secondary nitrogen-containing products (LONO, LOONO) which are in part organic peroxynitrites and are expected to be produced in vivo. Relative rates of production and steady state concentrations of superoxide and .NO and cellular sites of production will profoundly influence expression of the differential oxidant injury-enhancing and protective effects of .NO. Full understanding of the physiological roles of .NO, coupled with detailed insight into .NO regulation of oxygen radical-dependent reactions, will yield a more rational basis for the use of .NO donors for therapeutic purposes.

摘要

一氧化氮(·NO)在氧化应激期间可介导组织保护反应,以及毒性和组织促氧化作用。一氧化氮通过以下方式调节关键的脂质膜和脂蛋白氧化事件:1)促进超氧化物形成更强效的二级氧化剂(即过氧亚硝酸盐);2)将脂质自由基终止为反应性可能较低的含氮二级产物(LONO、LOONO),这些产物部分是有机过氧亚硝酸盐,预计在体内产生。超氧化物和·NO的相对生成速率、稳态浓度以及细胞生成部位将深刻影响·NO增强氧化损伤和保护作用的差异表达。全面了解·NO的生理作用,以及深入洞察·NO对氧自由基依赖性反应的调节,将为使用·NO供体进行治疗提供更合理的依据。

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