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Induction of reactive oxygen species in neurons by haloperidol.

机译:氟哌啶醇诱导神经元中的活性氧。

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Haloperidol (HP) is widely prescribed for schizophrenia and other affective disorders but has severe side effects such as tardive dyskinesia. Because oxidative stress has been implicated in the clinical side effects of HP, rat primary cortical neurons and the mouse hippocampal cell line HT-22 were used to characterize the generation of reactive oxygen species (ROS) and other cellular alterations caused by HP. Primary neurons and HT-22 cells are equally sensitive to HP with an IC50 of 35 microM in the primary neurons and 45 microM in HT-22. HP induces a sixfold increase in levels of ROS, which are generated from mitochondria but not from the metabolism of catecholamines by monoamine oxidases. Glutathione (GSH) is an important antioxidant for the protection of cells against HP toxicity because (1) the intracellular GSH decreases as the ROS production increases, (2) the exogenous addition of antioxidants, such as beta-estradiol and vitamin E, lowers the level of ROS and protects HT-22 cells from HP, and (3) treatments that result in the reduction of the intracellular GSH potentiate HP toxicity. The GSH decrease is followed by the increase in the intracellular level of Ca2+, which immediately precedes cell death. Therefore, HP causes a sequence of cellular alterations that lead to cell death and the production of ROS is the integral part of this cascade.
机译:氟哌啶醇(HP)被广泛用于精神分裂症和其他情感障碍,但具有严重的副作用,如迟发性运动障碍。由于氧化应激与HP的临床副作用有关,因此使用大鼠原代皮层神经元和小鼠海马细胞系HT-22表征了由HP引起的活性氧(ROS)的生成和其他细胞改变。原发神经元和HT-22细胞对HP敏感,原发神经元的IC50为35 microM,HT-22为45 microM。 HP诱导的ROS水平增加了六倍,ROS是由线粒体产生的,而不是由单胺氧化酶代谢儿茶酚胺产生的。谷胱甘肽(GSH)是保护细胞免受HP毒性的重要抗氧化剂,因为(1)随着ROS产量的增加,细胞内GSH降低;(2)外源添加抗氧化剂,例如β-雌二醇和维生素E,降低了ROS水平升高,保护HT-22细胞免受HP侵害;(3)导致细胞内GSH降低的治疗增强了HP毒性。 GSH降低后,细胞内Ca2 +水平升高,而细胞内Ca2 +水平紧随细胞死亡。因此,HP引起一系列细胞改变,导致细胞死亡,而ROS的产生是该级联反应不可或缺的部分。

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