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癫痫持续状态期间黑质、皮质和海马体中的γ-氨基丁酸代谢

GABA metabolism in the substantia nigra, cortex, and hippocampus during status epilepticus.

作者信息

Wasterlain C G, Baxter C F, Baldwin R A

机构信息

Epilepsy Laboratory, VA Medical Center, Sepulveda, CA 91343.

出版信息

Neurochem Res. 1993 Apr;18(4):527-32. doi: 10.1007/BF00967257.

Abstract

The metabolism of GABA and other amino acids was studied in the substantia nigra, the hippocampus and the parietal cortex of rats following microinjections of GAMMA-vinyl-GABA during status epilepticus induced by lithium and pilocarpine. GABA metabolism showed striking regional variations. In controls, both GABA concentration and rate of GABA synthesis were highest in the substantia nigra and lowest in cortex, as expected. In substantia nigra, status epilepticus resulted in a 2 1/2 fold decline in the rate of GABA synthesis and in a 307% increase in the turnover time of the GABA pool. In hippocampus, the rate of GABA synthesis was not altered significantly, but the turnover time of the GABA pool was 284% of controls, and the size of that pool increased to 208% of controls. By contrast, in cortex, where seizure activity is limited in this model, the rate of GABA synthesis increased to 230% of controls while pool size and turnover time did not change. Aspartate concentration decreased in all three brain regions. These data suggest that the observed reduction of the rate of GABA synthesis in substantia nigra could play a key role in seizure spread in this model of status epilepticus.

摘要

在由锂和毛果芸香碱诱导的癫痫持续状态期间,向大鼠的黑质、海马和顶叶皮质微量注射γ-乙烯基-GABA后,研究了γ-氨基丁酸(GABA)和其他氨基酸的代谢情况。GABA代谢呈现出显著的区域差异。在对照组中,正如预期的那样,GABA浓度和GABA合成速率在黑质中最高,而在皮质中最低。在黑质中,癫痫持续状态导致GABA合成速率下降了2.5倍,GABA池周转时间增加了307%。在海马中,GABA合成速率没有显著改变,但GABA池周转时间是对照组的284%,且该池大小增加到对照组的208%。相比之下,在该模型中癫痫活动受限的皮质中,GABA合成速率增加到对照组的230%,而池大小和周转时间没有变化。在所有三个脑区中,天冬氨酸浓度均降低。这些数据表明,在该癫痫持续状态模型中,观察到的黑质中GABA合成速率降低可能在癫痫传播中起关键作用。

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