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米贝拉地尔对钠电流和钙电流的影响。

Effect of mibefradil on sodium and calcium currents.

作者信息

Strege Peter R, Bernard Cheryl E, Ou Yijun, Gibbons Simon J, Farrugia Gianrico

机构信息

Mayo Clinic College of Medicine, 8 Guggenheim Bldg., 200 First Street SW, Rochester, MN 55905, USA.

出版信息

Am J Physiol Gastrointest Liver Physiol. 2005 Aug;289(2):G249-53. doi: 10.1152/ajpgi.00022.2005. Epub 2005 Mar 24.

Abstract

Interstitial cells of Cajal (ICC) generate the electrical slow wave. The ionic conductances that contribute to the slow wave appear to vary among species. In humans, a tetrodotoxin-resistant Na+ current (Na(V)1.5) encoded by SCN5A contributes to the rising phase of the slow wave, whereas T-type Ca2+ currents have been reported from cultured mouse intestine ICC and also from canine colonic ICC. Mibefradil has a higher affinity for T-type over L-type Ca2+ channels, and the drug has been used in the gastrointestinal tract to identify T-type currents. However, the selectivity of mibefradil for T-type Ca2+ channels over ICC and smooth muscle Na+ channels has not been clearly demonstrated. The aim of this study was to determine the effect of mibefradil on T-type and L-type Ca2+ and Na+ currents. Whole cell currents were recorded from HEK-293 cells coexpressing green fluorescent protein with either the rat brain T-type Ca2+ channel alpha(1)3.3b + beta(2), the human intestinal L-type Ca2+ channel subunits alpha(1C) + beta(2), or Na(V)1.5. Mibefradil significantly reduced expressed T-type Ca2+ current at concentrations > or = 0.1 microM (IC(50) = 0.29 microM), L-type Ca2+ current at > 1 microM (IC(50) = 2.7 microM), and Na+ current at > or = 0.3 microM (IC(50) = 0.98 microM). In conclusion, mibefradil inhibits the human intestinal tetrodotoxin-resistant Na+ channel at submicromolar concentrations. Caution must be used in the interpretation of the effects of mibefradil when several ion channel classes are coexpressed.

摘要

Cajal间质细胞(ICC)产生电慢波。不同物种中,对慢波有贡献的离子电导似乎有所不同。在人类中,由SCN5A编码的一种河豚毒素抗性Na⁺电流(Na(V)1.5)有助于慢波的上升期,而在培养的小鼠肠道ICC以及犬结肠ICC中也已报道存在T型Ca²⁺电流。米贝地尔对T型Ca²⁺通道的亲和力高于L型Ca²⁺通道,该药物已用于胃肠道以识别T型电流。然而,米贝地尔对ICC和平滑肌Na⁺通道的T型Ca²⁺通道的选择性尚未得到明确证实。本研究的目的是确定米贝地尔对T型和L型Ca²⁺以及Na⁺电流的影响。从共表达绿色荧光蛋白与大鼠脑T型Ca²⁺通道α(1)3.3b + β(2)、人肠道L型Ca²⁺通道亚基α(1C) + β(2)或Na(V)1.5的HEK - 293细胞中记录全细胞电流。米贝地尔在浓度≥0.1 μM时显著降低表达的T型Ca²⁺电流(IC(50) = 0.29 μM),在>1 μM时降低L型Ca²⁺电流(IC(50) = 2.7 μM),在≥0.3 μM时降低Na⁺电流(IC(50) = 0.98 μM)。总之,米贝地尔在亚微摩尔浓度下抑制人肠道河豚毒素抗性Na⁺通道。当共表达几种离子通道类型时,在解释米贝地尔的作用时必须谨慎。

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