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计算视角下谷胱甘肽在氧化应激中的作用。

Computational insights into the role of glutathione in oxidative stress.

机构信息

Department of Biomedical Engineering, Wayne State University, 2152 Engineering Bldg, 5050 Anthony Wayne Dr., Detroit, MI 48202, USA.

出版信息

Curr Neurovasc Res. 2013 May;10(2):185-94. doi: 10.2174/1567202611310020011.

Abstract

Excess reactive oxygen species (ROS) generation and oxidative stress in vascular tissue is associated with many diseases. Glutathione (GSH), one of the most abundant low molecular weight non-protein thiols, modulates physiological levels of ROS and is involved in the cell's oxidative stress response. The GSH/GSSG redox couple is commonly used in measuring oxidative stress status. The imbalance of GSH is reported in many disease states including atherosclerosis, cancer, neurodegenerative disease, and aging. The importance of GSH in modulation of intracellular ROS involves both its protective defense against the damaging effects of oxidative stress and its role in facilitating ROS cell signaling. In this paper, we review significant results obtained from mass balance and kinetic reactions based computational and mathematical models of GSH participation in oxidative stress. The focus is on the mediation of ROS and oxidative stress with respect to the antioxidant capacity of the cell. We discuss the role of GSH in the redox state of the cell, maintaining homeostasis through GSH synthesis, scavenging of free radicals, modulating hydrogen peroxide level and interacting with nitric oxide pathways.

摘要

过量的活性氧(ROS)生成和血管组织中的氧化应激与许多疾病有关。谷胱甘肽(GSH)是最丰富的低分子量非蛋白巯基之一,它调节生理水平的 ROS,并参与细胞的氧化应激反应。GSH/GSSG 氧化还原对常用于测量氧化应激状态。在包括动脉粥样硬化、癌症、神经退行性疾病和衰老在内的许多疾病状态中都报道了 GSH 的失衡。GSH 对细胞内 ROS 的调节作用既涉及到其对氧化应激损伤的保护防御作用,也涉及到其在促进 ROS 细胞信号转导中的作用。本文综述了基于质量平衡和动力学反应的 GSH 参与氧化应激的计算和数学模型所获得的重要结果。重点是探讨 ROS 和氧化应激与细胞抗氧化能力的关系。我们讨论了 GSH 在细胞氧化还原状态中的作用,通过 GSH 合成、清除自由基、调节过氧化氢水平以及与一氧化氮途径相互作用来维持体内平衡。

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