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异烟肼对大鼠细胞外氨基酸及惊厥的影响:丙戊酸钠对神经化学和行为缺陷的逆转作用

Effect of isonicotinic acid hydrazide on extracellular amino acids and convulsions in the rat: reversal of neurochemical and behavioural deficits by sodium valproate.

作者信息

Biggs C S, Pearce B R, Fowler L J, Whitton P S

机构信息

Department of Pharmacology, School of Pharmacy, London, England.

出版信息

J Neurochem. 1994 Dec;63(6):2197-201. doi: 10.1046/j.1471-4159.1994.63062197.x.

Abstract

We have studied the effect of isonicotinic acid hydrazide (INH), a convulsant agent, on the extracellular levels of amino acids in the hippocampus, and the effect of sodium valproate (VPA) administration in INH-treated rats. INH (250 mg/kg) caused a rapid and sustained decrease in basal levels of GABA, and during this period convulsions of increasing severity were observed. Basal levels of glutamine, taurine, aspartate, and glutamate were unchanged by INH. When VPA was coadministered with INH, basal GABA levels were increased and no convulsions were observed. When transmitter release was evoked using 100 mM K+, the increase in dialysate GABA observed in INH-treated animals was less than that seen in controls and convulsions increased in frequency. K(+)-evoked release of glutamate and aspartate tended to be higher following INH treatment, and in the case of aspartate, this increase was significant. VPA reversed the changes in evoked release of glutamate and aspartate, and release of GABA was considerably greater than that seen in control or INH-treated rats. No drug effect on evoked changes in taurine or glutamine level was seen. These are the first data to show decreased extracellular GABA in conjunction with convulsions in freely moving animals in vivo.

摘要

我们研究了惊厥剂异烟肼(INH)对海马体中氨基酸细胞外水平的影响,以及丙戊酸钠(VPA)对接受INH治疗的大鼠的作用。INH(250mg/kg)导致GABA基础水平迅速且持续下降,在此期间观察到惊厥严重程度不断增加。INH对谷氨酰胺、牛磺酸、天冬氨酸和谷氨酸的基础水平没有影响。当VPA与INH联合给药时,基础GABA水平升高,未观察到惊厥。当使用100mM K+诱发递质释放时,接受INH治疗的动物中透析液GABA的增加低于对照组,惊厥频率增加。INH治疗后,K+诱发的谷氨酸和天冬氨酸释放往往更高,就天冬氨酸而言,这种增加是显著的。VPA逆转了谷氨酸和天冬氨酸诱发释放的变化,并且GABA的释放明显大于对照组或接受INH治疗的大鼠。未观察到药物对牛磺酸或谷氨酰胺水平诱发变化的影响。这些是首次表明在自由活动的动物体内,细胞外GABA减少与惊厥相关的数据。

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