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地西泮对内部灌流的青蛙感觉神经元中γ-氨基丁酸激活的氯离子电流的作用。

Diazepam action on gamma-aminobutyric acid-activated chloride currents in internally perfused frog sensory neurons.

作者信息

Hattori K, Oomura Y, Akaike N

出版信息

Cell Mol Neurobiol. 1986 Sep;6(3):307-23. doi: 10.1007/BF00711116.

Abstract

The Cl- current (ICl) in gamma-aminobutyric acid (GABA)-sensitive frog sensory neuron was separated from other Na+, Ca2+, and K+ currents using a suction pipette technique which allows internal perfusion under a single-electrode voltage clamp. Diazepam (DZP) itself evoked no response but facilitated the dose- and time-dependently GABA-induced ICl without changing the GABA equilibrium potential (EGABA) at concentrations ranging widely, from 3 X 10(-9) to 10(-4) M. In the presence of DZP, the GABA dose-response curve shifted to the left without changing the maximum current, indicating that DZP modifies the interaction between GABA and its receptor rather than affecting directly the channel activation step. The enhancement of the GABA-induced ICl by DZP depended neither on the membrane voltage nor on the inward or outward direction of the ICl. DZP also potentiated the ICl elicited by GABA agonists such as beta-alanine, taurine, homotaurine, 5-aminovaleric acid, l-GABOB, d-GABOB, glycine, and muscimol. The GABA response enhanced by pentobarbital (PB) was further enhanced by adding DZP, indicating that DZP and PB do not act in the same way. Ro5-3663, a diazepam analogue, enhanced the GABA-induced ICl only in a narrow range of the concentrations but inhibited the current at concentrations higher than 2 X 10(-6) M.

摘要

利用一种吸移管技术将γ-氨基丁酸(GABA)敏感的青蛙感觉神经元中的氯离子电流(ICl)与其他钠离子、钙离子和钾离子电流分离,该技术允许在单电极电压钳制下进行内部灌注。地西泮(DZP)本身不引起反应,但在3×10⁻⁹至10⁻⁴M的广泛浓度范围内,剂量和时间依赖性地促进GABA诱导的ICl,而不改变GABA平衡电位(EGABA)。在DZP存在下,GABA剂量反应曲线向左移动而不改变最大电流,表明DZP改变了GABA与其受体之间的相互作用,而不是直接影响通道激活步骤。DZP对GABA诱导的ICl的增强既不依赖于膜电压,也不依赖于ICl的内向或外向方向。DZP还增强了由GABA激动剂如β-丙氨酸、牛磺酸、高牛磺酸、5-氨基戊酸、L-γ-氨基丁酸、D-γ-氨基丁酸、甘氨酸和蝇蕈醇引发的ICl。戊巴比妥(PB)增强的GABA反应在加入DZP后进一步增强,表明DZP和PB的作用方式不同。地西泮类似物Ro5-3663仅在窄浓度范围内增强GABA诱导的ICl,但在高于2×10⁻⁶M的浓度下抑制电流。

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