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首页> 外文期刊>Epilepsia: Journal of the International League against Epilepsy >A common SCN1A splice-site polymorphism modifies the effect of carbamazepine on cortical excitability - A pharmacogenetic transcranial magnetic stimulation study
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A common SCN1A splice-site polymorphism modifies the effect of carbamazepine on cortical excitability - A pharmacogenetic transcranial magnetic stimulation study

机译:常见的SCN1A剪接位点多态性可改变卡马西平对皮层兴奋性的影响-药物遗传学经颅磁刺激研究

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Objective SCN1A encodes the alpha subunit of the voltage-gated sodium channel and plays a crucial role in several epilepsy syndromes. The common SCN1A splice-site polymorphism rs3812718 (IVS5N+5 G>A) might contribute to the pathophysiology underlying genetic generalized epilepsies and is associated with electrophysiologic properties of the channel and the effect of sodium-channel blocking antiepileptic drugs. We assessed the effects of the rs3812718 genotype on cortical excitability at baseline and after administration of carbamazepine in order to investigate the mechanism of this association. Methods Paired-pulse transcranial magnetic stimulation (TMS) was applied in 92 healthy volunteers with the homozygous genotypes AA or GG of rs3812718 at baseline and after application of 400 mg of carbamazepine or placebo in a double-blind, randomized, crossover design. Resting motor threshold (RMT), short interval intracortical inhibition (SICI), intracortical facilitation (ICF), and cortical silent period (CSP) were determined. Results At baseline there was no significant difference in any TMS parameter. Genotype GG was associated with a higher carbamazepine-induced increase in CSP duration as compared to AA (multivariate analysis of covariance [MANCOVA], p = 0.013). An expected significant increase in RMT was genotype independent. Significance We found that the rs3812718 genotype modifies the effect of carbamazepine on CSP duration (mainly reflecting modulation of γ-aminobutyric acid (GABA)ergic inhibition), but not on RMT (mainly reflecting modulation of voltage-gated sodium channels). This provides evidence that rs3812718 affects the pharmacoresponse to carbamazepine via an effect on GABAergic cortical interneurons. Our results also confirm that TMS is useful to investigate the effect of genetic variants on cortical excitability and pharmacoresponse.
机译:目的SCN1A编码电压门控钠通道的α亚基,并在几种癫痫综合征中起关键作用。常见的SCN1A剪接位点多态性rs3812718(IVS5N + 5 G> A)可能有助于遗传广义癫痫症的病理生理,并且与通道的电生理特性和钠通道阻断抗癫痫药的作用有关。我们评估了rs3812718基因型对基线和服用卡马西平后皮层兴奋性的影响,以研究这种关联的机制。方法采用双脉冲经颅磁刺激(TMS)对92名rs3812718纯合基因型AA或GG纯合型健康志愿者进行基线研究,并在双盲,随机,交叉设计中应用400 mg卡马西平或安慰剂。确定静息运动阈值(RMT),短间隔皮质内抑制(SICI),皮质内促进(ICF)和皮质沉默期(CSP)。结果基线时,任何TMS参数均无显着差异。与AA相比,基因型GG与卡马西平诱导的CSP持续时间增加有关(协方差的多变量分析[MANCOVA],p = 0.013)。 RMT的预期显着增加是不依赖基因型的。意义我们发现rs3812718基因型改变了卡马西平对CSP持续时间的影响(主要反映了对γ-氨基丁酸(GABA)能量抑制的调节),但对RMT没有影响(主要反映了电压门控钠通道的调节)。这提供了证据,表明rs3812718通过对GABA能皮层神经元的作用影响对卡马西平的药理反应。我们的结果还证实,TMS可用于研究遗传变异对皮层兴奋性和药理反应的影响。

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