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氧化还原生物学在神经功能、功能障碍和衰老中的作用。

Redox Biology in Neurological Function, Dysfunction, and Aging.

机构信息

1 Redox Biology Center, University of Nebraska-Lincoln , Lincoln, Nebraska.

2 School of Veterinary Medicine and Biomedical Sciences, University of Nebraska-Lincoln , Lincoln, Nebraska.

出版信息

Antioxid Redox Signal. 2018 Jun 20;28(18):1583-1586. doi: 10.1089/ars.2018.7509. Epub 2018 Apr 23.

Abstract

Reduction oxidation (redox) reactions are central to life and when altered, they can promote disease progression. In the brain, redox homeostasis is recognized to be involved in all aspects of central nervous system (CNS) development, function, aging, and disease. Recent studies have uncovered the diverse nature by which redox reactions and homeostasis contribute to brain physiology, and when dysregulated to pathological consequences. Redox reactions go beyond what is commonly described as oxidative stress and involve redox mechanisms linked to signaling and metabolism. In contrast to the nonspecific nature of oxidative damage, redox signaling involves specific oxidation/reduction reactions that regulate a myriad of neurological processes such as neurotransmission, homeostasis, and degeneration. This Forum is focused on the role of redox metabolism and signaling in the brain. Six review articles from leading scientists in the field that appraise the role of redox metabolism and signaling in different aspects of brain biology including neurodevelopment, neurotransmission, aging, neuroinflammation, neurodegeneration, and neurotoxicity are included. An original research article exemplifying these concepts uncovers a novel link between oxidative modifications, redox signaling, and neurodegeneration. This Forum highlights the recent advances in the field and we hope it encourages future research aimed to understand the mechanisms by which redox metabolism and signaling regulate CNS physiology and pathophysiology. Antioxid. Redox Signal. 28, 1583-1586.

摘要

氧化还原(redox)反应是生命的核心,当它们发生改变时,可能会促进疾病的进展。在大脑中,氧化还原稳态被认为涉及中枢神经系统(CNS)发育、功能、衰老和疾病的各个方面。最近的研究揭示了氧化还原反应和稳态通过多种方式对大脑生理学产生影响,以及当它们失调时会导致病理后果。氧化还原反应超出了通常所说的氧化应激的范围,涉及与信号转导和代谢有关的氧化还原机制。与氧化损伤的非特异性性质相反,氧化还原信号转导涉及特定的氧化/还原反应,这些反应调节着众多神经过程,如神经传递、内稳态和变性。本论坛专注于氧化还原代谢和信号转导在大脑中的作用。来自该领域的六位顶尖科学家的六篇综述文章评估了氧化还原代谢和信号转导在大脑生物学的不同方面的作用,包括神经发育、神经传递、衰老、神经炎症、神经退行性变和神经毒性。一篇原创研究文章例证了这些概念之间的新联系,揭示了氧化修饰、氧化还原信号和神经退行性变之间的新联系。本论坛强调了该领域的最新进展,我们希望它能鼓励未来的研究,旨在了解氧化还原代谢和信号转导调节中枢神经系统生理学和病理生理学的机制。抗氧化。氧化还原信号。28,1583-1586。

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Methylglyoxal, the dark side of glycolysis.甲基乙二醛,糖酵解的阴暗面。
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