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Reactivity of an indolinonic aminoxyl with superoxide anion and hydroxyl radicals.

机译:吲哚啉氨基基与超氧阴离子和羟基自由基的反应性。

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The increasing knowledge on the participation of free radicals in many diverse clinical and pathological conditions, has consequently expanded the search for new and versatile antioxidants aimed at combating oxidative stress. Our interest in this field concerns aromatic indolinonic aminoxyls (nitroxides) which efficiently react with alkoxyl, peroxyl, aminyl, arylthiyl and alkyl radicals to give non-paramagnetic species. This prompted us to test their antioxidant activity on different biological systems exposed to free radical-induced oxidative stress and the results obtained so far have been very promising. However little is known about their behaviour towards superoxide and hydroxyl radicals. Here, we report on the reactivity of an indolinonic aminoxyl, with the two above mentioned radicals using hypoxanthine/xanthine oxidase and potassium superoxide for generating the former and the Fenton reagent for the latter. Besides performing the deoxyribose assay for studying the reaction of the aminoxyl with hydroxyl radical and monitoring spectral changes of the aminoxyl in the presence of superoxide radical, macroscale reactions were performed in both cases and the products of the reactions isolated and identified. The EPR technique was used in this study to help elucidate the data obtained. The results show that this compound efficiently reacts with both hydroxyl and superoxide radicals and furthermore, it is capable of maintaining iron ions in its oxidized form. The results thus contribute to increasing the knowledge on the reactivity of indolinonic aminoxyls towards free radical species and as a consequence, these compounds and/or other aminoxyl derivatives, may be considered as complementary, and sometimes alternative sources for combating oxidative damage.
机译:因此,有关自由基参与许多不同的临床和病理状况的知识的不断增长,因此扩大了对旨在对抗氧化应激的新型多功能抗氧化剂的探索。我们在该领域中的兴趣涉及芳族吲哚类氨基二甲苯(硝基氧化物),它们可以有效地与烷氧基,过氧基,氨酰基,芳基噻吩基和烷基反应生成非顺磁性物质。这促使我们测试它们在暴露于自由基诱导的氧化应激的不同生物系统上的抗氧化活性,迄今为止获得的结果非常有希望。然而,关于它们对超氧化物和羟基自由基的行为知之甚少。在这里,我们报告了吲哚啉氨基基与上述两个自由基的反应,使用次黄嘌呤/黄嘌呤氧化酶和超氧化钾生成前者和芬顿试剂用于后者。除了进行脱氧核糖分析以研究氨氧基与羟自由基的反应并监测超氧自由基存在下氨氧基的光谱变化外,在两种情况下均进行了大规模反应,并分离和鉴定了反应产物。在这项研究中使用了EPR技术来帮助阐明获得的数据。结果表明,该化合物与羟基和超氧化物自由基均有效地反应,此外,它能够将铁离子保持其氧化形式。因此,结果有助于增加对吲哚啉氨基基团对自由基种类的反应性的认识,因此,这些化合物和/或其他氨基基团衍生物可被认为是互补的,并且有时是对抗氧化损伤的替代来源。

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