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Neuroprotection of antioxidant enzymes against transient global cerebral ischemia in gerbils

机译:抗氧化酶对沙土鼠短暂性全脑缺血的神经保护作用

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摘要

Experimentally transient global cerebral ischemia using animal models have been thoroughly studied and numerous reports suggest the involvement of oxidative stress in the pathogenesis of neuronal death in ischemic lesions. In animal models, during the reperfusion period after ischemia, increased oxygen supply results in the overproduction of reactive oxygen species (ROS), which are involved in the process of cell death. ROS, such as superoxide anions, hydroxyl free radicals, hydrogen peroxide and nitric oxide are produced as a consequence of metabolic reactions and central nervous system activity. These reactive species are directly involved in the oxidative damage of cellular macromolecules such as nucleic acids, lipids and proteins in ischemic tissues, which can lead to cell death. Antioxidant enzymes are believed to be among the major mechanisms by which cells counteract the deleterious effect of ROS after cerebral ischemia. Consequently, antioxidant strategies have been long suggested as a therapy for experimental ischemic stroke; however, clinical trials have not yet been able to promote the translation of this concept into patient treatment regimens. This article focuses on the contribution of oxidative stress or antioxidants to the post-ischemic neuronal death following transient global cerebral ischemia by using a gerbil model.
机译:已经使用动物模型对实验性短暂性全脑缺血进行了深入研究,许多报告表明氧化应激参与了缺血性病变神经元死亡的发病机制。在动物模型中,在缺血后的再灌注期间,增加的氧气供应导致活性氧(ROS)的过量产生,而活性氧与细胞死亡过程有关。代谢反应和中枢神经系统活动的结果是产生了ROS,例如超氧阴离子,羟基自由基,过氧化氢和一氧化氮。这些反应性物种直接参与缺血性组织中细胞大分子(例如核酸,脂质和蛋白质)的氧化损伤,从而导致细胞死亡。人们认为抗氧化酶是细胞抵消脑缺血后ROS有害作用的主要机制之一。因此,长期以来一直提出抗氧化剂策略作为实验性缺血性卒中的治疗方法。但是,临床试验尚未能够将这一概念转化为患者治疗方案。本文通过使用沙鼠模型研究短暂性全脑缺血后,氧化应激或抗氧化剂对缺血后神经元死亡的影响。

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