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"不完全氧糖剥夺"对A型γ-氨基丁酸受体介导的抑制性突触后膜电流的增强作用
引用本文:李红斌,韩会丽,马文裴,董志芳,徐林."不完全氧糖剥夺"对A型γ-氨基丁酸受体介导的抑制性突触后膜电流的增强作用[J].动物学研究,2007,28(5):491-496.
作者姓名:李红斌  韩会丽  马文裴  董志芳  徐林
作者单位:1. 中国科学院昆明动物研究所,学习与记忆室,云南,昆明,650223;中国科学院研究生院,北京,100049
2. 中国科学院昆明动物研究所,学习与记忆室,云南,昆明,650223
基金项目:国家自然科学基金(30530250,30470549,30500150),国家973项目(2006CB500800),云南省科技平台项目基金(2006PT08)
摘    要:"氧糖剥夺"模型作为研究脑缺血的离体模型被广泛使用,该模型模拟了局灶性脑缺血的主要病理变化。然而在缺血病灶核心区与正常脑组织之间称为缺血半暗带的区域,脑血流也有程度不一的降低。为了模拟这种病理变化,发展了一种"不完全氧糖剥夺"的离体脑片模型,该模型满足两个条件,灌流液里氧气部分剥夺而葡萄糖含量降低;"氧糖剥夺"可以导致谷氨酸介导的兴奋性毒性,从而引起神经细胞的坏死。而A型γ-氨基丁酸受体(GABAAR)介导的神经元抑制性活动可以对抗谷氨酸引起的兴奋性毒性,因此近年来引起广泛的研究兴趣。而谷氨酸受体和γ-氨基丁酸受体功能在缺血半暗带是否有改变尚不得而知。因此本文采用海马脑片全细胞膜片钳的记录方法,研究"不完全氧糖剥夺"对海马CA1区神经元的A型γ-氨基丁酸受体介导的抑制性突触后膜电流(IPSCs)的影响。研究发现"不完全氧糖剥夺"使GABAAR介导的IPSCs的峰值增加而衰减时程延长。进一步研究发现该电流的峰值增加是由于GABAAR-氯离子通道的电导增加所致,而与氯离子的反转电位变化无关。这些发现提示在脑缺血的缺血半暗带区域GABAAR介导的神经元抑制性活动可能是增强的,这可能是神经元面对缺血状态产生自我保护的一种内稳态机制。

关 键 词:不完全氧糖剥夺  A型γ-氨基丁酸受体  抑制性突触后膜电流  峰值  衰减时程
文章编号:0254-5853(2007)05-0491-06
修稿时间:2007-04-03

Enhancement of GABAA Receptor-Mediated Inhibitory Postsynaptic Currents Induced by "Partial Oxygen-Glucose Deprivation"
LI Hong-bin,HAN Hui-li,MA Wen-pei,DONG Zhi-fang,XU Lin.Enhancement of GABAA Receptor-Mediated Inhibitory Postsynaptic Currents Induced by "Partial Oxygen-Glucose Deprivation"[J].Zoological Research,2007,28(5):491-496.
Authors:LI Hong-bin  HAN Hui-li  MA Wen-pei  DONG Zhi-fang  XU Lin
Institution:1. Laboratory of Learning and Memory, Kunming Institute of Zoology; the Chinese Academy of Sciences, Kunming 650223; 2. Graduate School of the Chinese Academy of Sciences, Beijing 100049, China
Abstract:Oxygen/glucose deprivation (OGD) has been widely used as an in vitro model of focal ischemia, where residual blood flow remains oxygen and glucose supplies are at low levels. To model this pathological genesis, we developed a partial OGD (pOGD) protocol in a rat brain slice. This model met two requirements: oxygen was partially deprived and glucose was reduced in the perfusion buffer. Therefore we investigated the effect of pOGD on gama-aminobutyric acid (GABAA) receptor-mediated inhibitory postsynaptic currents (IPSCs) in CA1 neurons of a hippocampal slice through whole-cell patch-clamp technique. We found that the amplitude and decay time of IPSCs were increased immediately during pOGD treatment. And the enhancement of IPSCs amplitude resulted from an increase of the synaptic conductance without a significant change in the reversal potential of chloride. These results suggested that the nervous system could increase inhibitory neurotransmission to offset excitation by homeostasis mechanisms during the partial oxygen and glucose attack.
Keywords:Partial oxygen-glucose deprivation (pOGD)  GABAA receptor  IPSCs  Amplitude  Decay time
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