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Antimigraine drug, zolmitriptan, inhibits high-voltage activated calcium currents in a population of acutely dissociated rat trigeminal sensory neurons

机译:抗偏头痛药物佐米曲普坦抑制急性分离的大鼠三叉神经感觉神经元群体中的高压活化钙电流

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Background Triptans, 5-HT1B/ID agonists, act on peripheral and/or central terminals of trigeminal ganglion neurons (TGNs) and inhibit the release of neurotransmitters to second-order neurons, which is considered as one of key mechanisms for pain relief by triptans as antimigraine drugs. Although high-voltage activated (HVA) Ca2+ channels contribute to the release of neurotransmitters from TGNs, electrical actions of triptans on the HVA Ca2+ channels are not yet documented. Results In the present study, actions of zolmitriptan, one of triptans, were examined on the HVA Ca2+ channels in acutely dissociated rat TGNs, by using whole-cell patch recording of Ba2+ currents (IBa) passing through Ca2+ channels. Zolmitriptan (0.1–100 μM) reduced the size of IBa in a concentration-dependent manner. This zolmitriptan-induced inhibitory action was blocked by GR127935, a 5-HT1B/1D antagonist, and by overnight pretreatment with pertussis toxin (PTX). P/Q-type Ca2+ channel blockers inhibited the inhibitory action of zolmitriptan on IBa, compared to N- and L-type blockers, and R-type blocker did, compared to L-type blocker, respectively (p < 0.05). All of the present results indicated that zolmitriptan inhibited HVA P/Q- and possibly R-type channels by activating the 5-HT1B/1D receptor linked to Gi/o pathway. Conclusion It is concluded that this zolmitriptan inhibition of HVA Ca2+ channels may explain the reduction in the release of neurotransmitters including CGRP, possibly leading to antimigraine effects of zolmitriptan.
机译:背景技术曲普坦5-HT1B / ID激动剂作用于三叉神经节神经元(TGNs)的外周和/或中央末端,并抑制神经递质向二阶神经元的释放,这被认为是曲普坦缓解疼痛的关键机制之一作为抗偏头痛药物。尽管高压激活(HVA)Ca2 +通道有助于从TGNs释放神经递质,但曲坦类药物在HVA Ca2 +通道上的电作用尚未记录。结果在本研究中,通过使用全细胞膜片记录通过Ca2 +通道的Ba2 +电流(IBa),检查了曲普坦之一的佐米曲普坦对急性解离大鼠TGNs的HVA Ca2 +通道的作用。佐米曲普坦(0.1–100μM)以浓度依赖的方式减小了IBa的大小。佐米曲普坦诱导的抑制作用被5-HT1B / 1D拮抗剂GR127935和百日咳毒素(PTX)整夜预处理所阻断。与N型和L型阻滞剂相比,P / Q型Ca2 +通道阻滞剂分别抑制佐米曲普坦对IBa的抑制作用,与​​L型阻滞剂相比,R型阻滞剂具有抑制作用(p <0.05)。所有目前的结果表明佐米曲普坦通过激活与Gi / o途径相连的5-HT1B / 1D受体抑制了HVA P / Q和R型通道。结论结论:佐米曲普坦抑制HVA Ca2 +通道可能解释了CGRP等神经递质释放的减少,可能导致佐米曲普坦具有抗偏头痛作用。

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