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瑞马西胺去甘氨酰代谢物对从DBA/2小鼠制备的皮质楔形组织的影响。

The effect of the desglycinyl metabolite of remacemide on cortical wedges prepared from DBA/2 mice.

作者信息

Hu R Q, Davies J A

机构信息

Department of Pharmacology and Therapeutics, University of Wales College of Medicine, Cardiff, UK.

出版信息

Eur J Pharmacol. 1995 Dec 20;287(3):251-6. doi: 10.1016/0014-2999(95)00500-5.

Abstract

Remacemide hydrochloride is currently undergoing clinical trials for use as an anticonvulsant agent in the treatment of epilepsy. It is considered that the desglycinyl metabolite (FPL 12495AA) of the parent compound accounts for the majority of the anticonvulsant activity. In this study we have investigated the effects of FPL 12495AA on electrical activity in the cortical wedges prepared from audiogenic seizure-prone DBA/2 mice. FPL 12495AA at varying concentrations (50-200 microM) significantly reduced both the spontaneous depolarizations (IC50 102 microM) and the associated afterpotentials (IC50 50 microM) which are characteristic in this preparation under magnesium-free conditions. The compound also concentration-dependently reduced N-methyl-D-aspartate (NMDA)-induced depolarizations of the tissue (IC50 43 microM) and the antagonism by FPL 12494AA was not overcome by increasing NMDA concentrations. FPL 12495AA had no effect on (S)-alpha-amino-3-hydroxy-5-methyl-4-isoxazole-propionic acid (AMPA)-induced depolarizations. The results suggest that FPL 12495AA has a specific antagonistic effect on the NMDA receptor complex possibly through non-competitive inhibition at the phenycyclidine site in the ion channel. Such an action could contribute to its anticonvulsant properties.

摘要

盐酸瑞马西胺目前正在进行临床试验,用作治疗癫痫的抗惊厥药。据认为,母体化合物的去甘氨酰代谢物(FPL 12495AA)占抗惊厥活性的大部分。在本研究中,我们研究了FPL 12495AA对由听源性癫痫易感DBA/2小鼠制备的皮质楔形块电活动的影响。不同浓度(50-200 microM)的FPL 12495AA显著降低了自发去极化(IC50 102 microM)和相关的后电位(IC50 50 microM),这些是在无镁条件下该制剂的特征。该化合物还浓度依赖性地降低了N-甲基-D-天冬氨酸(NMDA)诱导的组织去极化(IC50 43 microM),并且增加NMDA浓度不能克服FPL 12494AA的拮抗作用。FPL 12495AA对(S)-α-氨基-3-羟基-5-甲基-4-异恶唑丙酸(AMPA)诱导的去极化没有影响。结果表明,FPL 12495AA对NMDA受体复合物具有特异性拮抗作用,可能是通过对离子通道中苯环利定位点的非竞争性抑制。这种作用可能有助于其抗惊厥特性。

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