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地西泮和咪达唑仑对犬气管平滑肌细胞中钙通道和钾通道的抑制作用。

Inhibitory effects of diazepam and midazolam on Ca2+ and K+ channels in canine tracheal smooth muscle cells.

作者信息

Yamakage M, Matsuzaki T, Tsujiguchi N, Honma Y, Namiki A

机构信息

Department of Anesthesiology, Sapporo Medical University School of Medicine, Japan.

出版信息

Anesthesiology. 1999 Jan;90(1):197-207. doi: 10.1097/00000542-199901000-00026.

Abstract

BACKGROUND

Benzodiazepines have a direct bronchodilator action in airway smooth muscle, but the mechanisms by which these agents produce muscle relaxation are not fully understood. The current study was performed to identify the effects of the benzodiazepines diazepam and midazolam on Ca2+ and K+ channels in canine tracheal smooth muscle cells.

METHODS

Whole-cell patch-clamp recording techniques were used to evaluate the effects of the benzodiazepines diazepam (10(-8) to 10(-3) M) and midazolam (10(-8) to 10(-3) M) on inward Ca2+ and outward K+ channel currents in dispersed canine tracheal smooth muscle cells. The effects of the antagonists flumazenil (10(-5) M) and PK11195 (10(-5) M) on these channels were also studied.

RESULTS

Each benzodiazepine tested significantly inhibited Ca2+ currents in a dose-dependent manner, with 10(-6) M diazepam and 10(-5) M midazolam each causing approximately 50% depression of peak voltage-dependent Ca2+ currents. Both benzodiazepines promoted the inactivated state of the channel at more-negative potentials. The Ca2+-activated and voltage-dependent K+ currents were inhibited by diazepam and midazolam (> 10(-5) M and > 10(-4) M, respectively). Flumazenil and PK11195 had no effect on these channel currents or on the inhibitory effects of the benzodiazepines.

CONCLUSIONS

Diazepam and midazolam had inhibitory effects on voltage-dependent Ca2+ channels, which lead to muscle relaxation. However, high concentrations of these agents were necessary to inhibit the K+ channels. The lack of antagonized effects of their antagonists is related to the non-gamma-aminobutyric acid-mediated electrophysiologic effects of benzodiazepines on airway smooth muscle contractility.

摘要

背景

苯二氮䓬类药物对气道平滑肌有直接的支气管扩张作用,但这些药物产生肌肉松弛的机制尚未完全明确。本研究旨在确定苯二氮䓬类药物地西泮和咪达唑仑对犬气管平滑肌细胞中钙离子(Ca2+)和钾离子(K+)通道的影响。

方法

采用全细胞膜片钳记录技术,评估苯二氮䓬类药物地西泮(10^(-8)至10^(-3) M)和咪达唑仑(10^(-8)至10^(-3) M)对分离的犬气管平滑肌细胞内向Ca2+电流和外向K+电流的影响。还研究了拮抗剂氟马西尼(10^(-5) M)和PK11195(10^(-5) M)对这些通道的作用。

结果

每种受试苯二氮䓬类药物均以剂量依赖性方式显著抑制Ca2+电流,10^(-6) M地西泮和10^(-5) M咪达唑仑各自使峰值电压依赖性Ca2+电流降低约50%。两种苯二氮䓬类药物均在更负的电位下促进通道的失活状态。Ca2+激活的和电压依赖性的K+电流分别被地西泮和咪达唑仑抑制(分别>10^(-5) M和>10^(-4) M)。氟马西尼和PK11195对这些通道电流或苯二氮䓬类药物的抑制作用均无影响。

结论

地西泮和咪达唑仑对电压依赖性Ca2+通道有抑制作用,从而导致肌肉松弛。然而,需要高浓度的这些药物才能抑制K+通道。其拮抗剂缺乏拮抗作用与苯二氮䓬类药物对气道平滑肌收缩性的非γ-氨基丁酸介导的电生理效应有关。

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