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γ-氨基丁酸(GABA)摄取阻滞剂噻加宾和尼克酸对海马CA1神经元抑制性突触效能影响的比较

Comparison of the effect of the GABA uptake blockers, tiagabine and nipecotic acid, on inhibitory synaptic efficacy in hippocampal CA1 neurones.

作者信息

Roepstorff A, Lambert J D

机构信息

PharmaBiotec Research Centre, University of Aarhus, Denmark.

出版信息

Neurosci Lett. 1992 Nov 9;146(2):131-4. doi: 10.1016/0304-3940(92)90060-k.

Abstract

The action of the novel gamma-aminobutyric acid (GABA) uptake blocker, tiagabine, has been studied on isolated GABAergic fast inhibitory postsynaptic potentials (IPSP) and currents (IPSC) in rat hippocampal CA1 pyramidal cells in the slice preparation. Tiagabine (20-50 microM) had little effect on the peak amplitude of the IPSC, but caused a robust increase in the half-width (by 109 +/- 15%). These results contrasted with those obtained using the established uptake blocker, nipecotic acid (100 microM to 1 mM), which reduced the amplitude of the IPSC by 35 +/- 6% and caused only a modest prolongation of the recovery phase. These effects, which were poorly reversible, are probably explained by the fact that nipecotic acid is a substrate for the GABA-uptake carrier and can act as a false transmitter. Tiagabine is not transported by the GABA carrier and results with this substance demonstrate the role of uptake in determining the kinetics of activation of GABAA receptors. Tiagabine is proposed as the blocker of choice for the GABA uptake system.

摘要

新型γ-氨基丁酸(GABA)摄取阻滞剂噻加宾的作用,已在脑片制备的大鼠海马CA1锥体细胞中,针对分离出的GABA能快速抑制性突触后电位(IPSP)和电流(IPSC)进行了研究。噻加宾(20 - 50微摩尔)对IPSC的峰值幅度影响很小,但导致半峰宽度显著增加(增加了109±15%)。这些结果与使用已确定的摄取阻滞剂尼克酸(100微摩尔至1毫摩尔)所获得的结果形成对比,尼克酸使IPSC的幅度降低了35±6%,并且仅使恢复阶段适度延长。这些效应难以逆转,这可能是因为尼克酸是GABA摄取载体的底物,并且可以充当假递质。噻加宾不会被GABA载体转运,使用这种物质所得到的结果证明了摄取在决定GABAA受体激活动力学方面的作用。噻加宾被提议作为GABA摄取系统的首选阻滞剂。

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