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非氨酯对大鼠纹状体神经元的电生理作用。

Electrophysiological actions of felbamate on rat striatal neurones.

作者信息

Pisani A, Stefani A, Siniscalchi A, Mercuri N B, Bernardi G, Calabresi P

机构信息

Dip. Sanità e Biologia Cellulare, Università di Roma Tor Vergata, Roma, Italy.

出版信息

Br J Pharmacol. 1995 Oct;116(3):2053-61. doi: 10.1111/j.1476-5381.1995.tb16411.x.

Abstract
  1. We have investigated the effects of the anticonvulsant drug, felbamate (FBM), on striatal neurones, recorded in vitro by using both intracellular and extracellular conventional recordings in slices and whole-cell recordings in acutely isolated neurones. 2. FBM, at therapeutically relevant concentrations (30-300 microM) showed multiple mechanisms of action. Like other antiepileptic drugs, FBM (30-300 microM) showed a direct inhibitory action on current-evoked firing discharge of striatal neurones. A patch-clamp analysis of this effect revealed a dose-related reduction of voltage-dependent sodium (Na+) currents (10-100 microM), with a half inhibiton dose (IC50) value of 28 microM. 3. We also tested whether FBM affected corticostriatal glutamate transmission. In control medium (1.2 mM external magnesium), both extracellularly recorded field potentials and intracellularly recorded excitatory postsynaptic potentials (e.p.s.ps) evoked by cortical stimulation were no affected by bath application of 30-300 microM FBM. 4. When magnesium was removed from the perfusing solution, a procedure which reveals a N-methyl-D-aspartate (NMDA)-mediated component in the corticostriatal synaptic potential, FBM (30-300 microM) produced a dose-dependent reduction of the amplitude of both the field potential and the e.p.s.p. 5. FBM reduced the inward currents produced either by bath or by focal applications of 30 microM NMDA, finding consistent with the hypothesis that the observed reduction of the NMDA-mediated component of the synaptic potentials may be caused at postsynaptic level. 6. The reduction of the NMDA-mediated component of the synaptic transmission by FBM and its depressant effect on the voltage-dependent Na+ channels, may account for the antiepileptic action of this drug. Moreover, the pharmacological properties of FBM might render this drug interesting as a neuroprotectant agent.
摘要
  1. 我们研究了抗惊厥药物非氨酯(FBM)对纹状体神经元的影响,采用切片中的细胞内和细胞外传统记录以及急性分离神经元的全细胞记录在体外进行记录。2. FBM在治疗相关浓度(30 - 300微摩尔)时表现出多种作用机制。与其他抗癫痫药物一样,FBM(30 - 300微摩尔)对纹状体神经元的电流诱发放电表现出直接抑制作用。对此效应的膜片钳分析显示电压依赖性钠(Na +)电流呈剂量相关减少(10 - 100微摩尔),半数抑制剂量(IC50)值为28微摩尔。3. 我们还测试了FBM是否影响皮质纹状体谷氨酸传递。在对照培养基(1.2毫摩尔细胞外镁)中,皮质刺激诱发的细胞外记录的场电位和细胞内记录的兴奋性突触后电位(e.p.s.ps)不受30 - 300微摩尔FBM浴用的影响。4. 当从灌注溶液中去除镁时,该操作揭示了皮质纹状体突触电位中的N - 甲基 - D - 天冬氨酸(NMDA)介导成分,FBM(30 - 300微摩尔)使场电位和e.p.s.p的幅度呈剂量依赖性降低。5. FBM减少了由浴用或局部应用30微摩尔NMDA产生的内向电流,这一发现与以下假设一致,即观察到的突触电位NMDA介导成分的降低可能是在突触后水平引起的。6. FBM对突触传递的NMDA介导成分的降低及其对电压依赖性Na +通道的抑制作用,可能解释了该药物的抗癫痫作用。此外,FBM的药理特性可能使该药物成为一种有趣的神经保护剂。

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