首页> 外文OA文献 >Oxidation of nitric oxide by oxomanganese-salen complexes: a new mechanism for cellular protection by superoxide dismutase/catalase mimetics.
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Oxidation of nitric oxide by oxomanganese-salen complexes: a new mechanism for cellular protection by superoxide dismutase/catalase mimetics.

机译:一氧化氮锰-salen配合物氧化一氧化氮:通过超氧化物歧化酶/过氧化氢酶模拟物进行细胞保护的新机制。

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摘要

Manganese-salen complexes (Mn-Salen), including EUK-8 [manganese N,N'-bis(salicylidene)ethylenediamine chloride] and EUK-134 [manganese 3-methoxy N,N'-bis(salicylidene)ethylenediamine chloride], have been reported to possess combined superoxide dismutase (SOD) and catalase mimetic functions. Because of this SOD/catalase mimicry, EUK-8 and EUK-134 have been investigated as possible therapeutic agents in neurological disorders resulting from oxidative stress, including Alzheimer's disease, Parkinson's disease, stroke and multiple sclerosis. These actions have been explained by the ability of the Mn-Salen to remove deleterious superoxide (O(2)(-)) and H(2)O(2). However, in addition to oxidative stress, cells in models for neurodegenerative diseases may also be subjected to damage from reactive nitrogen oxides (nitrosative stress), resulting from elevated levels of NO and sister compounds, including peroxynitrite (ONOO(-)). We have been examining the interaction of EUK-8 and EUK-134 with NO and ONOO(-). We find that in the presence of a per-species (H(2)O(2), ONOO(-), peracetate and persulphate), the Mn-Salen complexes are oxidized to the corresponding oxo-species (oxoMn-Salen). OxoMn-Salens are potent oxidants, and we demonstrate that they can rapidly oxidize NO to NO(2) and also oxidize nitrite (NO(2)(-) to nitrate (NO(2)(-)). Thus these Mn-Salens have the potential to ameliorate cellular damage caused by both oxidative and nitrosative stresses, by the catalytic breakdown of O(2)(-), H(2)O(2), ONOO(-) and NO to benign species: O(2), H(2)O, NO(2)(-) and NO(3)(-).
机译:锰-salen配合物(Mn-Salen),包括EUK-8 [锰N,N'-双(水杨基)亚乙基二胺氯化物]和EUK-134 [3-甲氧基N,N'-双(水杨基)亚乙基二胺氯化锰],据报道具有组合的超氧化物歧化酶(SOD)和过氧化氢酶模拟功能。由于这种SOD /过氧化氢酶的拟态,已经研究了EUK-8和EUK-134作为可能由氧化应激引起的神经系统疾病的治疗剂,包括阿尔茨海默氏病,帕金森氏病,中风和多发性硬化症。 Mn-Salen去除有害超氧化物(O(2)(-))和H(2)O(2)的能力已解释了这些动作。但是,除了氧化应激外,神经退行性疾病模型中的细胞还可能受到反应性氮氧化物(亚硝化应激)的损害,这是由于NO和姊妹化合物(包括过氧亚硝酸盐(ONOO(-)))水平升高所致。我们一直在研究EUK-8和EUK-134与NO和ONOO(-)的相互作用。我们发现在存在每种物种(H(2)O(2),ONOO(-),过乙酸盐和过硫酸盐)的情况下,Mn-Salen复合物被氧化为相应的羰基物种(oxoMn-Salen)。 OxoMn-Salens是有效的氧化剂,我们证明它们可以将NO快速氧化为NO(2),也可以将亚硝酸盐(NO(2)(-)氧化为硝酸盐(NO(2)(-))。通过氧化分解O(2)(-),H(2)O(2),ONOO(-)和NO到良性物种O(2)具有改善氧化和亚硝化应力引起的细胞损伤的潜力),H(2)O,NO(2)(-)和NO(3)(-)。

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