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细胞色素P-450抑制剂对离体大鼠I型颈动脉体细胞离子电流的影响。

Effects of cytochrome P-450 inhibitors on ionic currents in isolated rat type I carotid body cells.

作者信息

Hatton C J, Peers C

机构信息

Institute for Cardiovascular Research, Leeds University, United Kingdom.

出版信息

Am J Physiol. 1996 Jul;271(1 Pt 1):C85-92. doi: 10.1152/ajpcell.1996.271.1.C85.

Abstract

Hypoxic chemoreception in the carotid body involves selective inhibition of K+ channels in type I cells. We have investigated whether cytochrome P-450 may act as an O2 sensor coupling hypoxia to K+ channel inhibition, by investigating the actions of P-450 inhibitors to modulate channel activity (recorded using patch-clamp techniques) in type I cells isolated from 8-to 12-day-old rat pups. The imidazole antimycotic P-450 inhibitors miconazole and clotrimazole (1-10 microM) inhibited the Ca(2+)-activated (KCa) and voltage-gated K+ (Kv) currents in isolated type I cells. Single-channel recordings indicated that the KCa channels could be inhibited directly by miconazole. Miconazole also irreversibly inhibited Ca2+ channel currents. By contrast, acute application of the suicide substrate P-450 inhibitor, 1-aminobenzotriazole (1-ABT; 3 mM) was without effect on K+ or Ca2+ currents. Hypoxia (16-23 mmHg) reversibly inhibited K+ currents and prevented the inhibitory actions of miconazole. Furthermore, the inhibitory actions of miconazole could be partially reversed by hypoxia. Pretreatment of cells for 60 min with 3 mM 1-ABT substantially reduced the inhibitory actions of hypoxia on K+ currents. Our results indicate that imidazole antimycotic P-450 inhibitors can directly and nonselectively inhibit ionic channels in type I cells but, more importantly, provide evidence to suggest that hypoxic inhibition of K+ currents in type I cells is mediated in part at least by cytochrome P-450.

摘要

颈动脉体中的低氧化学感受涉及对I型细胞中钾通道的选择性抑制。我们通过研究细胞色素P-450抑制剂对从8至12日龄大鼠幼崽分离的I型细胞中通道活性(使用膜片钳技术记录)的调节作用,来探究细胞色素P-450是否可作为将低氧与钾通道抑制相偶联的氧传感器。咪唑类抗真菌细胞色素P-450抑制剂咪康唑和克霉唑(1 - 10 microM)抑制了分离的I型细胞中的钙激活(KCa)和电压门控钾(Kv)电流。单通道记录表明KCa通道可被咪康唑直接抑制。咪康唑还不可逆地抑制钙通道电流。相比之下,自杀底物细胞色素P-450抑制剂1-氨基苯并三唑(1-ABT;3 mM)的急性应用对钾电流或钙电流无影响。低氧(16 - 23 mmHg)可逆地抑制钾电流并阻止咪康唑的抑制作用。此外,低氧可部分逆转咪康唑的抑制作用。用3 mM 1-ABT预处理细胞60分钟可显著降低低氧对钾电流的抑制作用。我们的结果表明,咪唑类抗真菌细胞色素P-450抑制剂可直接且非选择性地抑制I型细胞中的离子通道,但更重要的是,提供了证据表明I型细胞中低氧对钾电流的抑制至少部分是由细胞色素P-450介导的。

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