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铁在缺血性神经退行性变中的作用:机制与见解。

Role of iron in ischemia-induced neurodegeneration: mechanisms and insights.

作者信息

Minhas Gillipsie, Modgil Shweta, Anand Akshay

机构信息

Neuroscience Research Laboratory, Department of Neurology, Postgraduate Institute of Medical Education and Research, Chandigarh, India.

出版信息

Metab Brain Dis. 2014 Sep;29(3):583-91. doi: 10.1007/s11011-014-9522-7. Epub 2014 Mar 11.

Abstract

Iron is an important micronutrient for neuronal function and survival. It plays an essential role in DNA and protein synthesis, neurotransmission and electron transport chain due to its dual redox states. On the contrary, iron also catalyses the production of free radicals and hence, causes oxidative stress. Therefore, maintenance of iron homeostasis is very crucial and it involves a number of proteins in iron metabolism and transport that maintain the balance. In ischemic conditions large amount of iron is released and this free iron catalyzes production of more free radicals and hence, causing more damage. In this review we have focused on the iron transport and maintenance of iron homeostasis at large and also the effect of imbalance in iron homeostasis on retinal and brain tissue under ischemic conditions. The understanding of the proteins involved in the homeostasis imbalance will help in developing therapeutic strategies for cerebral as well retinal ischemia.

摘要

铁是神经元功能和存活所必需的微量营养素。由于其具有两种氧化还原状态,它在DNA和蛋白质合成、神经传递以及电子传递链中起着至关重要的作用。相反,铁也会催化自由基的产生,从而导致氧化应激。因此,维持铁稳态非常关键,这涉及到许多参与铁代谢和运输的蛋白质,它们维持着平衡。在缺血条件下,大量铁被释放出来,这种游离铁会催化产生更多的自由基,进而造成更多损伤。在这篇综述中,我们主要关注了铁的运输和铁稳态的维持,以及缺血条件下铁稳态失衡对视网膜和脑组织的影响。对参与稳态失衡的蛋白质的了解将有助于开发针对脑缺血和视网膜缺血的治疗策略。

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