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体内测量人类大脑γ-氨基丁酸:氨己烯酸抑制γ-氨基丁酸转氨酶的作用

Measuring human brain GABA in vivo: effects of GABA-transaminase inhibition with vigabatrin.

作者信息

Petroff O A, Rothman D L

机构信息

Department of Neurology, Yale University, New Haven, CT 06520, USA.

出版信息

Mol Neurobiol. 1998 Feb;16(1):97-121. doi: 10.1007/BF02740605.

Abstract

Gamma-aminobutyric acid (GABA) plays a pivotal role in suppressing the origin and spread of seizure activity. Low occipital lobe GABA was associated with poor seizure control in patients with complex partial seizures. Vigabatrin irreversibly inhibits GABA-transaminase, raising brain and cerebrospinal fluid (CSF) GABA concentrations. The effect of vigabatrin on occipital lobe GABA concentrations was measured by in vivo nuclear magnetic-resonance spectroscopy. Using a single oral dose of vigabatrin, the rate of GABA synthesis in human brain was estimated at 17% of the Krebs cycle rate. As the daily dose of vigabatrin was increased to up to 3 g, the fractional elevation of brain GABA was similar to CSF increase. Doubling the daily dose from 3 to 6 g failed to increase brain GABA further. Increased GABA concentrations appear to reduce GABA synthesis in humans as it does in animals. With traditional antiepileptic drugs, remission of the seizure disorder was associated with normal GABA levels. With vigabatrin, elevated CSF and brain GABA was associated with improved seizure control. Vigabatrin enhances the vesicular and nonvesicular release of GABA. The release of GABA during seizures may be mediated in part by transporter reversal that may serve as an important protective mechanism. During a seizure, this mechanism may be critical in stopping the seizure or preventing its spread.

摘要

γ-氨基丁酸(GABA)在抑制癫痫发作活动的起源和扩散中起关键作用。枕叶GABA水平低与复杂部分性发作患者的癫痫控制不佳有关。氨己烯酸不可逆地抑制GABA转氨酶,提高脑和脑脊液(CSF)中的GABA浓度。通过体内核磁共振波谱法测量氨己烯酸对枕叶GABA浓度的影响。口服单剂量氨己烯酸后,人脑中GABA的合成速率估计为三羧酸循环速率的17%。随着氨己烯酸的日剂量增加至3 g,脑内GABA的升高比例与脑脊液的升高相似。将日剂量从3 g加倍至6 g未能进一步提高脑内GABA水平。与动物一样,GABA浓度升高似乎会降低人体内GABA的合成。使用传统抗癫痫药物时,癫痫发作缓解与GABA水平正常有关。使用氨己烯酸时,脑脊液和脑内GABA升高与癫痫控制改善有关。氨己烯酸可增强GABA的囊泡性和非囊泡性释放。癫痫发作期间GABA的释放可能部分由转运体逆转介导,这可能是一种重要的保护机制。在癫痫发作期间,这种机制对于终止发作或防止其扩散可能至关重要。

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