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无镁诱导培养大鼠海马神经元癫痫放电模型中延迟整流钾电流的变化
引用本文:郭凤,孙威,姚阳,高青华,闵冬雨,封瑞,胡慧媛,蔡际群,郝丽英. 无镁诱导培养大鼠海马神经元癫痫放电模型中延迟整流钾电流的变化[J]. 中国医科大学学报, 2011, 40(3): 193-195
作者姓名:郭凤  孙威  姚阳  高青华  闵冬雨  封瑞  胡慧媛  蔡际群  郝丽英
作者单位:1. 中国医科大学药学院药物毒理教研室,沈阳,110001
2. 沈阳医学院生理教研室,沈阳,110034
基金项目:国家自然科学基金资助项目(81001429,31071004,30670761)
摘    要: 摘要:目的 利用无镁细胞外液诱导原代培养大鼠海马神经元癫痫放电模型来检测延迟整流钾电流的变化。方法 采用新生24h内Wistar大鼠,分离海马神经元进行原代培养。体外培养至12-16d时,无镁细胞外液处理神经元3h并恢复正常细胞外液,应用全细胞膜片钳技术记录神经元的放电情况及延迟整流钾电流。结果 无镁处理后的神经元存在自发的“癫痫样”放电;无镁诱导可使神经元延迟整流钾电流增大。结论 延迟整流钾电流增大可能与无镁诱导体外培养大鼠海马神经元自发异常放电的基础病理机制相关。

关 键 词:海马  膜片钳  癫痫放电  延迟整流钾电流  hippocampus  patch clamp  epileptiform discharge  delayed rectifier K+ current

Changes in Delayed Rectifier K~+ Current in Hippocampal Neurons Cultured in Mg~(2+)-free Medium in Rat Model of Epileptiform Discharge
GUO Feng , SUN Wei , YAO Yang , GAO Qing-hua , MIN Dong-yu , FENG Rui , HU Hui-yuan , CAI Ji-qun , HAO Li-ying. Changes in Delayed Rectifier K~+ Current in Hippocampal Neurons Cultured in Mg~(2+)-free Medium in Rat Model of Epileptiform Discharge[J]. Journal of China Medical University, 2011, 40(3): 193-195
Authors:GUO Feng    SUN Wei    YAO Yang    GAO Qing-hua    MIN Dong-yu    FENG Rui    HU Hui-yuan    CAI Ji-qun    HAO Li-ying
Affiliation:GUO Feng1,SUN Wei1,YAO Yang2,GAO Qing-hua1,MIN Dong-yu1,FENG Rui1,HU Hui-yuan1,CAI Ji-qun1,HAO Li-ying1(1.Department of Pharmaceutical Toxicology,School of Pharmaceutical Science,China Medical University,Shenyang 110001,China,2.Department of Physiology,Shenyang Medical College,Shenyang 110034,China)
Abstract:Objective To detect the changes in delayed rectifier K+ current in hippocampal neurons cultured in Mg2+-free medium in rat model of epileptiform discharge.Methods The hippocampal tissue was sampled from 1-day-old Wistar rats and used for the primary culture of hippocampla neurons.After 12 to 16 days of primary culture,the neurons were treated with Mg2+-free extracellular fluid for 3 hours,and then the discharge activity and delayed rectifier K+ current were recorded by patch clamp.Results After treated with...
Keywords:hippocampus  patch clamp  epileptiform discharge  delayed rectifier K current  
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