Kaneda M, Wakamori M, Akaike N
Department of Physiology, Faculty of Medicine, Kyushu University, Japan.
Am J Physiol. 1989 Jun;256(6 Pt 1):C1153-9. doi: 10.1152/ajpcell.1989.256.6.C1153.
Electrical and pharmacological properties of the gamma-aminobutyric acid (GABA)-induced current in the rat isolated cerebellar Purkinje cell bodies were studied using a concentration-jump method, which is termed as a "concentration-clamp" technique. This technique enables the rapid exchange of external solution around the neurons to be perfused internally under a voltage-clamp condition. The peak amplitude of GABA response increased sigmoidally with the increase of the concentration of GABA. The value of the GABA concentration that evokes a half-maximal response (Ka) was 5 X 10(-5) M, and the Hill coefficient was 1.8. The current-voltage relationship for the GABA response showed nonlinearity at membrane potentials more negative than -40 mV. The reversal potential of GABA-evoked current was close to the equilibrium potential of Cl- (ECl), indicating that the current elicited by GABA is carried by Cl-. Both the activation and inactivation phases of GABA-induced Cl- current (ICl) consisted of fast and slow components. These time constants in both phases decreased as the concentration of GABA increased. Strychnine and bicuculline inhibited the GABA-induced ICl in a dose-dependent manner, and the inhibition of the GABA response by bicuculline was competitive. Pentobarbital sodium augmented the GABA response and modified the inactivation phase. The augmentation of the GABA response by pentobarbital was more profound at lower concentrations of GABA and was accompanied by a change in the Hill coefficient from 2 to 1. The properties of the GABA response in cerebellar Purkinje cells were thought to be basically similar to those previously reported in other preparations.
采用浓度阶跃法(即所谓的“浓度钳”技术)研究了大鼠离体小脑浦肯野细胞体中γ-氨基丁酸(GABA)诱导电流的电学和药理学特性。该技术能在电压钳条件下,使灌注到神经元周围的外部溶液快速进行内部交换。GABA反应的峰值幅度随GABA浓度的增加呈S形增加。引起半数最大反应的GABA浓度值(Ka)为5×10⁻⁵ M,希尔系数为1.8。GABA反应的电流-电压关系在膜电位比-40 mV更负时呈非线性。GABA诱发电流的反转电位接近Cl⁻的平衡电位(ECl),表明GABA诱发的电流由Cl⁻携带。GABA诱导的Cl⁻电流(ICl)的激活和失活阶段均由快速和慢速成分组成。随着GABA浓度的增加,这两个阶段的时间常数均减小。士的宁和荷包牡丹碱以剂量依赖性方式抑制GABA诱导的ICl,荷包牡丹碱对GABA反应的抑制是竞争性的。戊巴比妥钠增强了GABA反应并改变了失活阶段。戊巴比妥钠在较低GABA浓度下对GABA反应的增强更为显著,同时希尔系数从2变为1。小脑浦肯野细胞中GABA反应的特性被认为与先前在其他标本中报道的基本相似。