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氟马西尼可拮抗咪达唑仑对三叉神经血管伤害性神经传递的GABAA受体调节作用。

GABAA receptor modulation of trigeminovascular nociceptive neurotransmission by midazolam is antagonized by flumazenil.

作者信息

Storer Robin James, Akerman Simon, Shields Kevin G, Goadsby Peter J

机构信息

Headache Group, Institute of Neurology and The National Hospital for Neurology and Neurosurgery, Queen Square, London WC1N 3BG, UK.

出版信息

Brain Res. 2004 Jul 9;1013(2):188-93. doi: 10.1016/j.brainres.2004.03.068.

Abstract

Studies of the pharmacology of trigeminocervical neurons with input from intracranial pain-producing structures have enhanced the understanding of the basic neurobiology of primary headache, such as migraine. Clinical observations of the treatment of migraine with medicines acting at the gamma-aminobutyric acid (GABA) GABAA receptor have lead to studies of their effects on models of trigeminovascular nociception. Extracellular recordings were made from neurons in the trigeminocervical complex activated by supramaximal electrical stimulation of superior sagittal sinus (SSS) in the cat. Intravenous administration of the benzodiazepine receptor agonist midazolam, resulted in a dose-dependent inhibition of superior sagittal sinus evoked trigeminocervical nucleus activity. The inhibition at 50 microg/kg midazolam was 65+/-11% compared to the baseline response (n=11). Intravenous administration of the benzodiazepine receptor antagonist flumazenil, resulted in a dose-dependent recovery of superior sagittal sinus evoked trigeminocervical nucleus activity. At a dose of 50 microg/kg, there was a 64+/-5% recovery (n=6). The data demonstrate a potent, reproducible effect of facilitation of GABA transmission at the GABAA receptor that results in inhibition of trigeminovascular nociceptive transmission. These data are consistent with the useful clinical effects reported with compounds that can augment GABAergic transmission in the central nervous system (CNS).

摘要

对来自颅内疼痛产生结构的三叉神经颈神经元的药理学研究,增进了对偏头痛等原发性头痛基本神经生物学的理解。对作用于γ-氨基丁酸(GABA)A 型受体的药物治疗偏头痛的临床观察,引发了对其对三叉神经血管伤害感受模型影响的研究。在猫身上,通过对上矢状窦(SSS)进行超强电刺激激活三叉神经颈复合体中的神经元,进行细胞外记录。静脉注射苯二氮䓬受体激动剂咪达唑仑,导致上矢状窦诱发的三叉神经颈核活动呈剂量依赖性抑制。与基线反应相比,50微克/千克咪达唑仑的抑制率为65±11%(n = 11)。静脉注射苯二氮䓬受体拮抗剂氟马西尼,导致上矢状窦诱发的三叉神经颈核活动呈剂量依赖性恢复。在50微克/千克的剂量下,恢复率为64±5%(n = 6)。数据表明,在GABA A型受体处促进GABA传递具有强大且可重复的效果,从而导致三叉神经血管伤害感受性传递受到抑制。这些数据与报道的可增强中枢神经系统(CNS)中GABA能传递的化合物的有益临床效果一致。

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