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氟桂利嗪可阻断培养的大鼠皮质神经元电压门控钠离子和钙离子电流:预防偏头痛的可能作用部位。

Flunarizine blocks voltage-gated Na(+) and Ca(2+) currents in cultured rat cortical neurons: A possible locus of action in the prevention of migraine.

机构信息

Department of Neurology, the First Affiliated Hospital of Nanjing Medical University, Guangzhou Street 300, Nanjing, Jiangsu Province 210029, PR China.

出版信息

Neurosci Lett. 2011 Jan 10;487(3):394-9. doi: 10.1016/j.neulet.2010.10.064. Epub 2010 Nov 2.

Abstract

Although flunarizine (FLN) has been widely used for migraine prophylaxis with clear success, the mechanisms of its actions in migraine prophylaxis are not completely understood. It has been hypothesized that migraine is a channelopathy, and abnormal activities of voltage-gated Na(+) and Ca(2+) channels might represent a potential mechanism of cortical hyperexcitability predisposing to migraine. The aim of the present study was to investigate the effects of FLN on Na(+) and Ca(2+) channels of cultured rat cortical neurons. Sodium currents (I(Na)) and calcium currents (I(Ca)) in cultured rat cortical neurons were monitored using whole-cell patch-clamp recordings. Both I(Na) and I(Ca) were blocked by FLN in a concentration-dependent manner with IC(50) values of 0.94μM and 1.77μM, respectively. The blockade of I(Na) was more powerful at more depolarizing holding potentials. The steady-state inactivation curve of I(Na) was shifted towards more hyperpolarizing potentials by FLN. FLN significantly delayed the recovery from fast inactivation of I(Na). Furthermore, the action of FLN in blocking I(Na) was enhanced at higher rates of channel activation. Blockades of these currents might help explain the mechanism underlying the preventive effect of FLN on migraine attacks.

摘要

尽管氟桂利嗪(FLN)在偏头痛预防方面已被广泛应用,并取得了显著的疗效,但它在偏头痛预防中的作用机制尚未完全阐明。有假说认为偏头痛是一种通道病,电压门控钠(Na+)和钙(Ca2+)通道的异常活动可能代表皮质过度兴奋易患偏头痛的潜在机制。本研究旨在探讨氟桂利嗪对培养的大鼠皮质神经元钠(Na+)和钙(Ca2+)通道的影响。采用全细胞膜片钳记录技术监测培养的大鼠皮质神经元的钠电流(I(Na))和钙电流(I(Ca))。FLN 呈浓度依赖性抑制 I(Na)和 I(Ca),其半数抑制浓度(IC50)值分别为 0.94μM 和 1.77μM。在更去极化的保持电位下,FLN 对 I(Na)的抑制作用更强。FLN 使 I(Na)的稳态失活曲线向更超极化的电位移动。FLN 显著延迟了 I(Na)快速失活的恢复。此外,FLN 对 I(Na)的阻断作用在通道激活率较高时增强。这些电流的阻断可能有助于解释 FLN 预防偏头痛发作的作用机制。

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