氧自由基在阿尔茨海默病中的作用:以Tau蛋白为重点

A. Atlante, D. Valenti, V. Latina, G. Amadoro
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引用次数: 4

摘要

氧自由基爆发是阿尔茨海默病(AD)发病的重要早期事件。Tau蛋白的翻译后修饰,主要是超磷酸化和截断,被认为是AD病理的关键介质。这一发现被高水平的氧化应激标记物和在表达有毒Tau形式的转基因动物模型中培养的神经元和大脑中发现的对氧自由基的易感性增加所证实,同时它们的生存能力/存活率急剧降低。在这里,我们收集了关于氧自由基与病理Tau之间相互作用和动态相互作用的最新研究进展,讨论了这些有害物种在AD进展中的合作和/或协同作用。在这种情况下,更好地理解氧化应激在决定Tau病理中的作用,反之亦然,主要能够定义包括AD在内的人类Tau病变早期阶段的新生物标志物,然后制定旨在减轻,停止或逆转疾病进展的治疗策略。
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Role of Oxygen Radicals in Alzheimer’s Disease: Focus on Tau Protein
Oxygen free radical burst is a prominent early event in the pathogenesis of Alzheimer’s disease (AD). Posttranslational modifications of Tau protein, primarily hyper-phosphorylation and truncation, are indicated as critical mediators of AD pathology. This finding is confirmed by the high levels of oxidative stress markers and by the increased susceptibility to oxygen radicals found in cultured neurons and in brains from transgenic animal models expressing toxic Tau forms, in concomitance with a dramatic reduction in their viability/survival. Here, we collect the latest progress in research focused on the reciprocal and dynamic interplay between oxygen radicals and pathological Tau, discussing how these harmful species cooperate and/or synergize in the progression of AD. In this context, a better understanding of the role of oxidative stress in determining Tau pathology, and vice versa, primarily could be able to define novel biomarkers of early stages of human tauopathies, including AD, and then to develop therapeutic strategies aimed at attenuating, halting, or reversing disease progression.
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