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加巴喷丁的作用机制。

Mechanisms of action of gabapentin.

作者信息

Taylor C P

机构信息

Department of Neurological and Neurodegenerative Diseases, Parke-Davis Research Division, Ann Arbor, Etats-Unis.

出版信息

Rev Neurol (Paris). 1997;153 Suppl 1:S39-45.

PMID:9686247
Abstract

The chemical structure of gabapentin (Neurontin) is derived by addition of a cyclohexyl group to the backbone of gamma-aminobutyric acid (GABA). Gabapentin prevents seizures in a wide variety of models in animals, including generalized tonic-clonic and partial seizures. Gabapentin has no activity at GABAA or GABAB receptors of GABA uptake carriers of brain. Gabapentin interacts with a high-affinity binding site in brain membranes, which has recently been identified as an auxiliary subunit of voltage-sensitive Ca2+ channels. However, the functional correlate of gabapentin binding is unclear and remains under study. Gabapentin crosses several lipid membrane barriers via system L amino acid transporters. In vitro, gabapentin modulates the action of the GABA synthetic enzyme, glutamic acid decarboxylase (GAD) and the glutamate synthesizing enzyme, branched-chain amino acid transaminase. Results with human and rat brain NMR spectroscopy indicate that gabapentin increases GABA synthesis. Gabapentin increases non-synaptic GABA responses from neuronal tissues in vitro. In vitro, gabapentin reduces the release of several mono-amine neurotransmitters. Gabapentin prevents pain responses in several animal models of hyperalgesia and prevents neuronal death in vitro and in vivo with models of the neurodegenerative disease amyotrophic lateral sclerosis (ALS). Gabapentin is also active in models that detect anxiolytic activity. Although gabapentin may have several different pharmacological actions, it appears that modulation of GABA synthesis and glutamate synthesis may be important.

摘要

加巴喷丁(Neurontin)的化学结构是通过在γ-氨基丁酸(GABA)的主链上添加一个环己基而衍生出来的。加巴喷丁在多种动物模型中都能预防癫痫发作,包括全身性强直阵挛发作和部分性发作。加巴喷丁对脑内GABA摄取载体的GABAA或GABAB受体没有活性。加巴喷丁与脑膜中的一个高亲和力结合位点相互作用,该位点最近被确定为电压敏感性Ca2+通道的一个辅助亚基。然而,加巴喷丁结合的功能相关性尚不清楚,仍在研究中。加巴喷丁通过系统L氨基酸转运体穿过多个脂质膜屏障。在体外,加巴喷丁可调节GABA合成酶谷氨酸脱羧酶(GAD)和谷氨酸合成酶支链氨基酸转氨酶的作用。人和大鼠脑核磁共振波谱结果表明加巴喷丁可增加GABA合成。加巴喷丁可增加体外神经元组织的非突触GABA反应。在体外,加巴喷丁可减少几种单胺类神经递质的释放。加巴喷丁在几种痛觉过敏动物模型中可预防疼痛反应,并在体外和体内的神经退行性疾病肌萎缩侧索硬化症(ALS)模型中可预防神经元死亡。加巴喷丁在检测抗焦虑活性的模型中也有活性。尽管加巴喷丁可能有几种不同的药理作用,但似乎调节GABA合成和谷氨酸合成可能很重要。

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