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硝苯地平衍生物对兔肠系膜动脉平滑肌细胞和神经肌肉传递的影响。

Effects of nifedipine derivatives on smooth muscle cells and neuromuscular transmission in the rabbit mesenteric artery.

作者信息

Makita Y, Kanmura Y, Itoh T, Suzuki H, Kuriyama H

出版信息

Naunyn Schmiedebergs Arch Pharmacol. 1983 Dec;324(4):302-12. doi: 10.1007/BF00502628.

Abstract

The effects of nifedipine and its derivatives, nisoldipine, nimodipine and nitrendipine, on smooth muscle cells and neuromuscular transmission were investigated in the rabbit mesenteric artery. These agents in concentrations of up to 2 X 10(-7) M modified neither the membrane potential nor the membrane resistance, yet did inhibit the spike potential evoked by direct muscle stimulation in the presence of TTX or by perivascular nerve stimulation. The inhibitory action of nitrendipine was weaker than that of the other derivatives. These agents had no effect on the miniature excitatory junction potentials (m.e.j.ps) and e.j.ps evoked by the first stimuli and after completion of the facilitation in a train stimulation. Nifedipine and its derivatives had no effect on the K-induced depolarization but did have a marked effect on the K-induced contraction. Nisoldipine showed the highest inhibitory potency for the K-induced contraction [IC50 was 1.2 X 10(-9) M for the 128 mM (K)o-induced contraction]. Noradrenaline depolarized the membrane (greater than 5 X 10(-7 M) and produced contraction (greater than 3 X 10(-7) M). The contraction evoked by high concentrations of noradrenaline was inhibited by these agents to a greater extent than that evoked by low concentrations. The contraction evoked by perivascular nerve or direct muscle stimulation was partly inhibited by nifedipine and its derivatives. The contraction elicited by Na-free solution was inhibited by these agents but the noradrenaline- or caffeine-induced contraction in Ca-free solution was not. These results indicate that in smooth muscle cells of the rabbit mesenteric artery, nifedipine and its derivatives inhibit the voltage dependent Ca-influx which occurs during the spike potential and in response to K-, electrically- or noradrenaline-induced depolarization. These derivatives appear to have no effect on the adrenoceptor operated Ca increase in myoplasm which occurs in the absence of depolarization at low noradrenaline concentrations. The derivatives act as Ca antagonists with a quantitative difference in potency, i.e. the strongest action was observed with nisoldipine and the weakest with nitrendipine.

摘要

在兔肠系膜动脉中研究了硝苯地平及其衍生物尼索地平、尼莫地平和尼群地平对平滑肌细胞和神经肌肉传递的影响。这些药物浓度高达2×10⁻⁷M时,既不改变膜电位也不改变膜电阻,但在存在TTX时直接肌肉刺激或血管周围神经刺激所诱发的锋电位却受到抑制。尼群地平的抑制作用比其他衍生物弱。这些药物对第一个刺激以及串刺激中的易化完成后所诱发的微小兴奋性突触后电位(m.e.j.ps)和兴奋性突触后电位(e.j.ps)没有影响。硝苯地平及其衍生物对钾离子诱导的去极化没有影响,但对钾离子诱导的收缩有显著作用。尼索地平对钾离子诱导的收缩显示出最高的抑制效力[128mM(钾)o诱导收缩的IC50为1.2×10⁻⁹M]。去甲肾上腺素使膜去极化(大于5×10⁻⁷M)并产生收缩(大于3×10⁻⁷M)。高浓度去甲肾上腺素诱发的收缩比低浓度诱发的收缩在更大程度上受到这些药物的抑制。血管周围神经或直接肌肉刺激诱发的收缩部分受到硝苯地平及其衍生物的抑制。无钠溶液诱发的收缩受到这些药物的抑制,但无钙溶液中去甲肾上腺素或咖啡因诱发的收缩则不受影响。这些结果表明,在兔肠系膜动脉的平滑肌细胞中,硝苯地平及其衍生物抑制在锋电位期间以及对钾离子、电刺激或去甲肾上腺素诱导的去极化所发生的电压依赖性钙离子内流。这些衍生物似乎对低去甲肾上腺素浓度下在无去极化时发生的肌浆中肾上腺素能受体介导的钙离子增加没有影响。这些衍生物作为钙拮抗剂,在效力上存在定量差异,即尼索地平作用最强,尼群地平作用最弱。

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