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癫痫海马神经元中突触后钙对GABAA受体介导的抑制作用的调节

Modulation of GABAA receptor-mediated inhibition by postsynaptic calcium in epileptic hippocampal neurons.

作者信息

Isokawa M

机构信息

Brain Research Institute, Center for Health Sciences, University of California, Los Angeles, CA 90095-1761, USA.

出版信息

Brain Res. 1998 Nov 9;810(1-2):241-50. doi: 10.1016/s0006-8993(98)00922-6.

Abstract

Visualization of neurons during patch clamp recordings from slices provides concurrent neuroanatomical information for physiological studies. Although, the technique becomes increasingly popular in immature brains, it has not been fully utilized in aged/adult and diseased brains including post-surgical human specimen. In the present study, glutamatergic modulation of GABAA receptor-mediated inhibition was investigated by whole-cell patch clamp recordings from visualized hippocampal dentate granule cells (DGCs) in slices that were prepared from surgically-removed human medial temporal lobe specimens and the rat pilocarpine model of temporal lobe epilepsy. GABAA receptor-mediated synaptic inhibition was recorded by isolating inhibitory postsynaptic currents (IPSCs) at a membrane potential of 0 mV where glutamatergic excitatory postsynaptic currents are near equilibrium. Peak amplitude of GABAA IPSC was not different between epileptic DGCs of both human and pilocarpine-treated rat hippocampi and those in the control rat DGCs. However, when high frequency stimulation (30 Hz for 10 s) preceded immediately before the generation of a GABAA IPSC, its peak amplitude was significantly reduced in epileptic DGCs. The application of an NMDA receptor antagonist prevented this decrease indicating that the high frequency stimulation activated the NMDA receptor and that this activation is involved in the induction of response-decrement of GABAA IPSCs in epileptic DGCs. In addition, intracellular application of a calcium chelator, BAPTA through a patch pipette was found effective in preventing the response-decrement of GABAA IPSCs suggesting that postsynaptic calcium-increase is also involved in this process. It is proposed that activation of the NMDA receptor in epileptic DGC may trigger an epileptogenic increase of intracellular free calcium, and this calcium-increase plays a crucial role for the induction of the response-decrement of GABAA IPSCs in epileptic hippocampus, which possibly leads to the initiation of epileptic seizures and ictal events.

摘要

在脑片膜片钳记录过程中对神经元进行可视化,可为生理学研究提供同步的神经解剖学信息。尽管该技术在未成熟脑内越来越受欢迎,但在包括术后人类标本在内的成年/老年脑和患病脑中尚未得到充分利用。在本研究中,通过全细胞膜片钳记录,对来自手术切除的人类内侧颞叶标本和颞叶癫痫大鼠匹罗卡品模型制备的脑片中可视化的海马齿状颗粒细胞(DGC)进行研究,以探讨谷氨酸能对GABAA受体介导的抑制作用的调节。通过在0 mV膜电位下分离抑制性突触后电流(IPSC)来记录GABAA受体介导的突触抑制,此时谷氨酸能兴奋性突触后电流接近平衡。人类癫痫DGC和匹罗卡品处理的大鼠海马癫痫DGC以及对照大鼠DGC中,GABAA IPSC的峰值幅度没有差异。然而,当在GABAA IPSC产生前立即进行高频刺激(30 Hz,持续10 s)时,癫痫DGC中其峰值幅度显著降低。应用NMDA受体拮抗剂可防止这种降低,表明高频刺激激活了NMDA受体,且这种激活参与了癫痫DGC中GABAA IPSC反应衰减的诱导。此外,通过膜片电极向细胞内施加钙螯合剂BAPTA被发现可有效防止GABAA IPSC的反应衰减,提示突触后钙增加也参与了这一过程。有人提出,癫痫DGC中NMDA受体的激活可能引发细胞内游离钙的致痫性增加,而这种钙增加在癫痫海马中GABAA IPSC反应衰减的诱导中起关键作用,这可能导致癫痫发作和发作期事件的起始。

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