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谷氨酸神经毒性中与一氧化氮途径相关的线粒体功能障碍。

Mitochondrial dysfunction associated with nitric oxide pathways in glutamate neurotoxicity.

作者信息

Manucha Walter

机构信息

Institute of Medical and Experimental Biology of Cuyo, National Scientific and Technical Research Council (IMBECU-CONICET), Argentina; Pharmacology Area, Pathology Department, Medical Sciences College, National University of Cuyo, Argentina.

出版信息

Clin Investig Arterioscler. 2017 Mar-Apr;29(2):92-97. doi: 10.1016/j.arteri.2016.04.002. Epub 2016 May 27.

Abstract

Multiple mechanisms underlying glutamate-induced neurotoxicity have recently been discussed. Likewise, a clear deregulation of the mitochondrial respiratory mechanism has been described in patients with neurodegeneration, oxidative stress, and inflammation. This article highlights nitric oxide, an atypical neurotransmitter synthesized and released on demand by the post-synaptic neurons, and has many important implications for nerve cell survival and differentiation. Consequently, synaptogenesis, synapse elimination, and neurotransmitter release, are nitric oxide-modulated. Interesting, an emergent role of nitric oxide pathways has been discussed as regards neurotoxicity from glutamate-induced apoptosis. These findings suggest that nitric oxide pathways modulation could prevent oxidative damage to neurons through apoptosis inhibition. This review aims to highlight the emergent aspects of nitric oxide-mediated signaling in the brain, and how they can be related to neurotoxicity, as well as the development of neurodegenerative diseases development.

摘要

最近已经讨论了谷氨酸诱导神经毒性的多种潜在机制。同样,在神经退行性变、氧化应激和炎症患者中也描述了线粒体呼吸机制的明显失调。本文重点介绍一氧化氮,一种由突触后神经元按需合成和释放的非典型神经递质,对神经细胞的存活和分化有许多重要影响。因此,突触形成、突触消除和神经递质释放均受一氧化氮调节。有趣的是,已经讨论了一氧化氮途径在谷氨酸诱导的细胞凋亡所致神经毒性方面的新作用。这些发现表明,调节一氧化氮途径可以通过抑制细胞凋亡来防止神经元的氧化损伤。本综述旨在强调大脑中一氧化氮介导信号传导的新方面,以及它们如何与神经毒性以及神经退行性疾病的发展相关。

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