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Cyclic nitroxides inhibit the toxicity of nitric oxide-derived oxidants: mechanisms and implications

机译:环状一氧化氮抑制一氧化氮源性氧化剂的毒性:机理和意义

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The substantial therapeutic potential of tempol (4-hydroxy-2,2,6,6-tetramethyl-1-piperidinyloxy) and related cyclic nitroxides as antioxidants has stimulated innumerous studies of their reactions with reactive oxygen species. In comparison, reactions of nitroxides with nitric oxide-derived oxidants have been less frequently investigated. Nevertheless, this is relevant because tempol has also been shown to protect animals from injuries associated with inflammatory conditions, which are characterized by the increased production of nitric oxide and its derived oxidants. Here, we review recent studies addressing the mechanisms by which cyclic nitroxides attenuate the toxicity of nitric oxidederived oxidants. As an example, we present data showing that tempol protects mice from acetaminophen-induced hepatotoxicity and discuss the possible protection mechanism. In view of the summarized studies, it is proposed that nitroxides attenuate tissue injury under inflammatory conditions mainly because of their ability to react rapidly with nitrogen dioxide and carbonate radical. In the process the nitroxides are oxidized to the corresponding oxammonium cation, which, in turn, can be recycled back to the nitroxides by reacting with upstream species, such as peroxynitrite and hydrogen peroxide, or with cellular reductants. An auxiliary protection mechanism may be down-regulation of inducible nitric oxide synthase expression. The possible therapeutic implications of these mechanisms are addressed.
机译:tempol(4-羟基-2,2,6,6-四甲基-1-哌啶基氧基)和相关的环状硝基氧化物作为抗氧化剂的巨大治疗潜力激发了人们对其与活性氧的反应的众多研究。相比之下,对氮氧化物与一氧化氮衍生的氧化剂的反应的研究较少。然而,这是有意义的,因为还显示出tempol能保护动物免受与炎症性疾病相关的伤害,炎症性疾病的特征是一氧化氮及其衍生氧化剂的产量增加。在这里,我们回顾了有关环氧化氮减弱一氧化氮衍生氧化剂毒性的机理的最新研究。例如,我们提供的数据表明tempol保护小鼠免受对乙酰氨基酚诱导的肝毒性作用,并讨论了可能的保护机制。鉴于总结的研究,提出氮氧化物可减轻炎症条件下的组织损伤,这主要是由于它们能够与二氧化氮和碳酸盐自由基快速反应的能力。在此过程中,氮氧化物被氧化成相应的氧铵阳离子,而后者又可以通过与上游物种(如过氧亚硝酸盐和过氧化氢)或与细胞还原剂反应而再循环回到氮氧化物。辅助保护机制可能是下调诱导型一氧化氮合酶的表达。解决了这些机制可能的治疗意义。

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