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二氢吡啶对大鼠腔静脉分离平滑肌细胞钙通道的影响。

Effect of dihydropyridines on calcium channels in isolated smooth muscle cells from rat vena cava.

作者信息

Mironneau J, Yamamoto T, Sayet I, Arnaudeau S, Rakotoarisoa L, Mironneau C

机构信息

Laboratoire de Physiologie Cellulaire et Pharmacologie Moléculaire, INSERM CJF 88-13, Université de Bordeaux II, France.

出版信息

Br J Pharmacol. 1992 Feb;105(2):321-8. doi: 10.1111/j.1476-5381.1992.tb14253.x.

Abstract
  1. Whole-cell patch-clamp method was applied to single smooth muscle cells freshly isolated from the rat inferior vena cava. 2. Depolarizing pulses, applied from a holding potential of -90 mV, activated both Na+ and Ca2+ channels. The fast Na+ current was inhibited by nanomolar concentrations of tetrodotoxin (TTX). The slow Ba2+ current (measured in 5 mM Ba2+ solution) was inhibited by Cd2+ and modulated by dihydropyridine derivatives. When the cells were held at a holding potential of -80 mV, racemic Bay K 8644 increased the Ba2+ current (ED50 = 10 nM) while racemic isradipine inhibited the current (IC50 = 21 nM). 3. The voltage-dependency of isradipine blockade was assessed by determining the steady-state availability of the Ca2+ channels. From the shift of the inactivation curve in the presence of isradipine, we calculated a dissociation constant of 1.11 nM for inactivated Ca2+ channels. Scatchard plots of the specific binding of (+)-[3H]-isradipine obtained in intact strips incubated in 5.6 mM or 135 mM K+ solutions confirmed the voltage-dependency of isradipine binding. 4. Specific binding of (+)-[3H]-isradipine was completely displaced by unlabelled (+/-)-isradipine, with an IC50 of 15.1 nM. This value is similar to the IC50 for inhibition of the Ba2+ current (21 nM) in cells maintained at a holding potential of -80 mV. 5. Bay K 8644 had no effects on the Ba2+ current kinetics during a depolarizing test pulse. The steady-state inactivation-activation curves of Ba2+ current were not significantly shifted along the voltage axis.6. The present data suggest the existence of two distinct dihydropyridine binding sites which can be bound preferentially by agonist or antagonist derivatives.
摘要
  1. 采用全细胞膜片钳技术对新鲜分离的大鼠下腔静脉单个平滑肌细胞进行研究。2. 从 -90 mV 的钳制电位施加去极化脉冲,可激活 Na+ 和 Ca2+ 通道。纳摩尔浓度的河豚毒素(TTX)可抑制快速 Na+ 电流。缓慢的 Ba2+ 电流(在 5 mM Ba2+ 溶液中测量)可被 Cd2+ 抑制,并受二氢吡啶衍生物调节。当细胞钳制在 -80 mV 的钳制电位时,消旋 Bay K 8644 可增加 Ba2+ 电流(半数有效浓度 = 10 nM),而消旋异搏定可抑制该电流(半数抑制浓度 = 21 nM)。3. 通过测定 Ca2+ 通道的稳态可用性来评估异搏定阻断的电压依赖性。根据异搏定存在时失活曲线的偏移,我们计算出失活 Ca2+ 通道的解离常数为 1.11 nM。在 5.6 mM 或 135 mM K+ 溶液中孵育的完整条带上获得的 (+)-[3H]-异搏定特异性结合的 Scatchard 图证实了异搏定结合的电压依赖性。4. 未标记的 (+/-)-异搏定可完全取代 (+)-[3H]-异搏定的特异性结合,半数抑制浓度为 15.1 nM。该值与在 -80 mV 钳制电位下维持的细胞中抑制 Ba2+ 电流的半数抑制浓度(21 nM)相似。5. 在去极化测试脉冲期间,Bay K 8644 对 Ba2+ 电流动力学无影响。Ba2+ 电流的稳态失活 - 激活曲线未沿电压轴发生明显偏移。6. 目前的数据表明存在两个不同的二氢吡啶结合位点,激动剂或拮抗剂衍生物可优先与之结合。

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J Gen Physiol. 1983 May;81(5):613-42. doi: 10.1085/jgp.81.5.613.

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