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Inhibitory effect of pranidipine on N-type voltage-dependent Ca2+ channels in mice.

机译:普兰地平对小鼠N型电压依赖性Ca2 +通道的抑制作用。

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摘要

We investigated the N-type voltage-dependent calcium channel blocking action of pranidipine, a novel dihydropyridine (DHP) derivative. Pranidipine significantly suppressed KCl-induced intracellular calcium changes ([Ca(2+)](i)) in a dose-dependent fashion in dorsal root ganglion neurons. A patch-clamp investigation revealed a dose-dependent blocking effect on N-type currents. Intrathecal injection of pranidipine significantly shortened the licking time in the late phase of the formalin test, as occurs with cilnidipine and amlodipine, which act on L- and N-type channels. Conversely, nicardipine, which acts exclusively on L-type channels, had no antinociceptive effect. Our results indicate that pranidipine inhibits N-type calcium channels. Furthermore, it exerts an antinociceptive effect, which might be related to an attenuation of synaptic transmission by nociceptive neurons due to the blocking effect of pranidipine on N-type calcium channels in primary nociceptive afferent fibers.
机译:我们调查了一种新型的二氢吡啶(DHP)衍生物普拉尼地平的N型电压依赖性钙通道阻滞作用。普拉尼地平以剂量依赖性方式显着抑制了KCl诱导的细胞内钙变化([Ca(2 +)](i))的背根神经节神经元。膜片钳研究揭示了对N型电流的剂量依赖性阻断作用。鞘内注射普兰地平在福尔马林试验的后期显着缩短了舔舔时间,就像作用于L型和N型通道的西尼地平和氨氯地平一样。相反,仅对L型通道起作用的尼卡地平则没有抗伤害感受作用。我们的结果表明,普兰地平抑制N型钙通道。此外,它还具有抗伤害感受的作用,这可能是由于普拉尼地平对主要伤害感受传入纤维中N型钙通道的阻滞作用导致伤害感受神经元减弱了突触传递。

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