Copper imbalance and oxidative stress in neurodegeneration.

The Italian journal of biochemistry Pub Date : 2006-09-01
Luisa Rossi, Mario Arciello, Concetta Capo, Giuseppe Rotilio
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Abstract

Much experimental evidence demonstrates that the increased production of free radicals and oxidative damage due to alterations in copper homeostasis (because of either deficit or excess or aberrant coordination of the metal) are involved in the neurodegenerative processes occurring in many disorders of the central nervous system. This review outlines the systems that are involved in copper homeostasis and in the control of copper redox reactivity. The mechanisms underlying neurodegeneration in the acknowledged genetic disturbances of copper homeostasis, namely Menkes' and Wilson's diseases, and the involvement of copper in the aetiology of the major neurodegenerative disease of the aging brain, Alzheimer's disease, will be described, with particular focus on oxidative stress.

神经变性中的铜失衡和氧化应激。
大量实验证据表明,由于铜稳态的改变(由于铜的缺乏或过量或异常协调),自由基的产生增加和氧化损伤参与了许多中枢神经系统疾病中发生的神经退行性过程。本文综述了参与铜稳态和铜氧化还原反应性控制的系统。在已知的铜稳态遗传紊乱中神经退行性变的机制,即Menkes病和Wilson病,以及铜在衰老大脑的主要神经退行性疾病阿尔茨海默病的病因学中的作用,将被描述,特别关注氧化应激。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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