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左乙拉西坦可减轻杏仁核点燃大鼠海马突触可塑性相关即刻早期和晚期反应基因的表达。

Levetiracetam attenuates hippocampal expression of synaptic plasticity-related immediate early and late response genes in amygdala-kindled rats.

机构信息

Dept. of Molecular Biology, Discovery Biology Research, H, Lundbeck A/S, DK-2500 Valby, Denmark.

出版信息

BMC Neurosci. 2010 Jan 27;11:9. doi: 10.1186/1471-2202-11-9.

Abstract

BACKGROUND

The amygdala-kindled rat is a model for human temporal lobe epilepsy and activity-dependent synaptic plasticity. Hippocampal RNA isolated from amygdala-kindled rats at different kindling stages was analyzed to identify kindling-induced genes. Furthermore, effects of the anti-epileptic drug levetiracetam on kindling-induced gene expression were examined.

RESULTS

Cyclooxygenase-2 (Cox-2), Protocadherin-8 (Pcdh8) and TGF-beta-inducible early response gene-1 (TIEG1) were identified and verified as differentially expressed transcripts in the hippocampus of kindled rats by in situ hybridization and quantitative RT-PCR. In addition, we identified a panel of 16 additional transcripts which included Arc, Egr3/Pilot, Homer1a, Ania-3, MMP9, Narp, c-fos, NGF, BDNF, NT-3, Synaptopodin, Pim1 kinase, TNF-alpha, RGS2, Egr2/krox-20 and beta-A activin that were differentially expressed in the hippocampus of amygdala-kindled rats. The list consists of many synaptic plasticity-related immediate early genes (IEGs) as well as some late response genes encoding transcription factors, neurotrophic factors and proteins that are known to regulate synaptic remodelling. In the hippocampus, induction of IEG expression was dependent on the afterdischarge (AD) duration. Levetiracetam, 40 mg/kg, suppressed the development of kindling measured as severity of seizures and AD duration. In addition, single animal profiling also showed that levetiracetam attenuated the observed kindling-induced IEG expression; an effect that paralleled the anti-epileptic effect of the drug on AD duration.

CONCLUSIONS

The present study provides mRNA expression data that suggest that levetiracetam attenuates expression of genes known to regulate synaptic remodelling. In the kindled rat, levetiracetam does so by shortening the AD duration thereby reducing the seizure-induced changes in mRNA expression in the hippocampus.

摘要

背景

杏仁核点燃大鼠模型是人类颞叶癫痫和活性依赖突触可塑性的模型。对不同点燃阶段的杏仁核点燃大鼠的海马 RNA 进行分析,以鉴定点燃诱导的基因。此外,还研究了抗癫痫药物左乙拉西坦对点燃诱导基因表达的影响。

结果

通过原位杂交和定量 RT-PCR,鉴定并验证了环氧化酶-2(Cox-2)、原钙粘蛋白-8(Pcdh8)和转化生长因子-β诱导早期反应基因-1(TIEG1)作为海马中点燃大鼠差异表达的转录本。此外,我们还鉴定了一组 16 个额外的转录本,包括 Arc、Egr3/Pilot、Homer1a、Ania-3、MMP9、Narp、c-fos、NGF、BDNF、NT-3、Synaptopodin、Pim1 激酶、TNF-α、RGS2、Egr2/krox-20 和β-A 激活素,这些转录本在杏仁核点燃大鼠的海马中差异表达。该列表包括许多与突触可塑性相关的即时早期基因(IEGs)以及一些编码转录因子、神经营养因子和已知调节突触重塑的蛋白质的晚期反应基因。在海马中,IEG 表达的诱导依赖于后放电(AD)持续时间。左乙拉西坦,40mg/kg,抑制了发作严重程度和 AD 持续时间测量的点燃发展。此外,单个动物分析还表明,左乙拉西坦减弱了观察到的点燃诱导的 IEG 表达;这种作用与药物对 AD 持续时间的抗癫痫作用平行。

结论

本研究提供了 mRNA 表达数据,表明左乙拉西坦减弱了已知调节突触重塑的基因的表达。在点燃大鼠中,左乙拉西坦通过缩短 AD 持续时间从而减少海马中与发作相关的 mRNA 表达变化来实现这一点。

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