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氯胺酮对胎鼠大脑皮层神经元缺氧复氧损伤时一氧化氮的影响
引用本文:王惠军,薛玉良,高春霖,李兰英.氯胺酮对胎鼠大脑皮层神经元缺氧复氧损伤时一氧化氮的影响[J].医学临床研究,2011,28(4):608-610.
作者姓名:王惠军  薛玉良  高春霖  李兰英
作者单位:1. 首都医科大学附属北京同仁医院麻醉科,北京,100730
2. 天津医科大学第二医院麻醉科,天津,300070
3. 天津医科大学内分泌研究所,天津,300070
摘    要:目的]了解氯胺酮对神经元缺氧复氧损伤时的保护作用和机制.方法]应用无血清原代培养的胎鼠大脑皮层神经元,进行缺氧结合无糖处理.对照组及缺氧组分别于缺氧即刻和复氧不同时间取培养上清液测定NO浓度;并将缺氧1h组细胞于缺氧处理开始时分别给予1、20、100 μmol/L氯胺酮,于缺氧后复氧24 h测定细胞外液NO浓度....

关 键 词:大脑皮质  氯胺酮/药理学  一氧化氮

Effect of Ketamine on Nitric Oxide Released from Cerebral Cortex Neurons of Fetal Rats Induced by Anoxia-reoxygenation
WANG Hui-jun,XUE Yu-liang,LI Lan-ying.Effect of Ketamine on Nitric Oxide Released from Cerebral Cortex Neurons of Fetal Rats Induced by Anoxia-reoxygenation[J].Journal of Clinical Research,2011,28(4):608-610.
Authors:WANG Hui-jun  XUE Yu-liang  LI Lan-ying
Institution:,et al ( Department of Anesthesiology, Affiliated Beijing Tongren Hospital of Capital Medical University, Beijing 1000730, China )
Abstract:Objective] To understand the protective effects of ketamine on neuron in anoxia-reoxygenation injury and its mechanism. Methods]The primary cultured cerebral cortex neurons in embryonic rat were deprived of both oxygen and glucose. The supernatant liquid in control group and anoxic group were obtained at immediate time of anoxia and different time of reoxygenation to detect the level of nitric oxide(NO). The 1- hour anoxia group was given 1, 20 and 100μmol/L ketamine at the beginning of anoxia, respectively. NO level in extracellutar fluid was measured at 24h after anoxia-reoxygenation. Results] NO level after anoxia in- creased as the time went up, and reached the peak at 24h. As the time of anoxia went up, NO level increased gradually compared with the control group( P〈0.01), and reached the peak at 5h. In 1-hour anoxia group, the extracellular concentration of NO gradually decreased in a dose-dependent manner after the administration of different concentration of ketamine at the beginning of anoxia, and there was significant difference between 1-hour anoxia group and anoxia group( P 〈0.05). When ketamine was 100μmol/L, NO concentration closed to the level of the control group( P 〉0.05). Conclusion] NO is closely correlated with the genesis of anoxiareoxygenation injury of cerebral cortex. Ketamine has the protective effect on neuron through regulating the production of NO or blocking its synthesis path.
Keywords:cerebral cortex  ketamine/PD  nitric oxide
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