神经科学
透视图(图形)
病态的
疾病
氧化应激
阿尔茨海默病
铁稳态
淀粉样蛋白(真菌学)
心理学
医学
生物信息学
生物
病理
内科学
计算机科学
新陈代谢
人工智能
作者
Paul J. Derry,Muralidhar L. Hegde,George R. Jackson,Rakez Kayed,James M. Tour,Ah-Lim Tsai,Thomas A. Kent
标识
DOI:10.1016/j.pneurobio.2019.101716
摘要
The complexity of Alzheimer's disease (AD) complicates the search for effective treatments. While the key roles of pathologically modified proteins has occupied a central role in hypotheses of the pathophysiology, less attention has been paid to the potential role for transition metals overload, subsequent oxidative stress, and tissue injury. The association of transition metals, the major focus heretofore iron and amyloid, the same can now be said for the likely pathogenic microtubular associated tau (MAPT). This review discusses the interplay between iron, pathologically modified tau and oxidative stress, and connects many related discoveries. Basic principles of the transition to pathological MAPT are discussed. Iron, its homeostatic mechanisms, the recently described phenomenon of ferroptosis and purported, although still controversial roles in AD are reviewed as well as considerations to overcome existing hurdles of iron-targeted therapeutic avenues that have been attempted in AD. We summarize the involvement of multiple pathological pathways at different disease stages of disease progression that supports the potential for a combinatorial treatment strategy targeting multiple factors.
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