首页> 外文期刊>Pfluegers Archiv: European Journal of Physiology >Dihydropyridines, phenylalkylamines and benzothiazepines block N-, P/Q- and R-type calcium currents.
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Dihydropyridines, phenylalkylamines and benzothiazepines block N-, P/Q- and R-type calcium currents.

机译:二氢吡啶,苯基烷基胺和苯并硫氮杂block会阻碍N型,P / Q型和R型钙电流。

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摘要

We compared the effects of representative members of three major classes of cardiac L-type channel antagonists, i.e. dihydropyridines (DHPs), phenylalkylamines (PAAs) and benzothiazepines (BTZs) on high-voltage-activated (HVA) Ca2+ channel currents recorded from a holding potential of -100 mV in rat ventricular cells, mouse sensory neurons and rat motoneurons. Nimodipine (DHP), verapamil (PAA) and diltiazem (BTZ) block the cardiac L-type Ca2+ channel current (EC50: 1 microM, 4 microM and 40 microM, respectively). At these concentrations, the drugs could also inhibit HVA Ca2+ channel currents in both sensory and motor neurons. Large blocking effects (> 50%) could be observed at 2-10 times these concentrations. The omega -conotoxin-GVIA-sensitive (omega -CTx-GVIA, N-type), omega -agatoxin-IVA-sensitive (omega -Aga-IVA, P- and Q-types) and non-L-type omega -CTx-GVIA-, omega -Aga-IVA-insensitive (R-types) currents accounted for more than 90% of the global current. Furthermore, our data showed that omega -CTx-GVIA and omega -Aga-IVA spare L-type currents and have only additive blocking effects on neuronal HVA currents. We conclude that DHPs, PAAs and BTZs have substantial inhibitory effects on neuronal non-L-type Ca2+ channels. Inhibitions occur at concentrations that are not maximally active on cardiac L-type Ca2+ channels.
机译:我们比较了三类主要的心脏L型通道拮抗剂的代表性成员,即二氢吡啶类(DHPs),苯烷基胺类(PAA)和苯并硫氮杂类(BTZs)对从保存中记录的高压激活(HVA)Ca2 +通道电流的影响-100 mV在大鼠心室细胞,小鼠感觉神经元和大鼠运动神经元中的电位。尼莫地平(DHP),维拉帕米(PAA)和地尔硫卓(BTZ)阻断心脏L型Ca2 +通道电流(分别为EC50:1 microM,4 microM和40 microM)。在这些浓度下,药物还可以抑制感觉神经元和运动神经元中的HVA Ca2 +通道电流。在这些浓度的2-10倍时,可以观察到较大的阻断作用(> 50%)。 ω-芋螺毒素-GVIA敏感(omega -CTx-GVIA,N型),omega-agatoxin-IVA敏感(omega-Aga-IVA,P和Q型)和非L型omega-CTx -GVIA-,ω-Aga-IVA不敏感(R型)电流占全球电流的90%以上。此外,我们的数据显示,ω-CTx-GVIA和ω-Aga-IVA保留了L型电流,并且仅对神经元HVA电流具有加性阻断作用。我们得出结论,DHP,PAA和BTZ对神经元非L型Ca2 +通道具有实质性抑制作用。抑制作用发生在对心脏L型Ca2 +通道没有最大活性的浓度下。

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