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癫痫大鼠齿状回中 miRNA 水平的改变。

Alterations in miRNA levels in the dentate gyrus in epileptic rats.

机构信息

Nencki Institute of Experimental Biology, Polish Academy of Sciences, Warsaw, Poland.

出版信息

PLoS One. 2013 Oct 11;8(10):e76051. doi: 10.1371/journal.pone.0076051. eCollection 2013.

Abstract

The aim of this study was to characterize changes in miRNA expression in the epileptic dentate gyrus. Status epilepticus evoked by amygdala stimulation was used to induce epilepsy in rats. The dentate gyri were isolated at 7 d, 14 d, 30 d and 90 d after stimulation (n=5). Sham-operated time-matched controls were prepared for each time point (n=5). The miRNA expression was evaluated using Exiqon microarrays. Additionally, mRNA from the same animals was profiled using Affymetrix microarrays. We detected miRNA expression signatures that differentiate between control and epileptic animals. Significant changes in miRNA expression between stimulated and sham operated animals were observed at 7 and 30 d following stimulation. Moreover, we found that there are ensembles of miRNAs that change expression levels over time. Analysis of the mRNA expression from the same animals revealed that the expression of several mRNAs that are potential targets for miRNA with altered expression level is regulated in the expected direction. The functional characterization of miRNAs and their potential mRNA targets indicate that miRNA can participate in several molecular events that occur in epileptic tissue, including immune response and neuronal plasticity. This is the first report on changes in the expression of miRNA and the potential functional impact of these changes in the dentate gyrus of epileptic animals. Complex changes in the expression of miRNAs suggest an important role for miRNA in the molecular mechanisms of epilepsy.

摘要

本研究旨在描述癫痫齿状回中 miRNA 表达的变化。通过杏仁核刺激诱发癫痫持续状态来诱导大鼠癫痫。在刺激后 7 天、14 天、30 天和 90 天(n=5)分离齿状回。为每个时间点准备了假手术时间匹配的对照(n=5)。使用 Exiqon 微阵列评估 miRNA 表达。此外,还使用 Affymetrix 微阵列对同一动物的 mRNA 进行了分析。我们检测到区分对照和癫痫动物的 miRNA 表达特征。在刺激后 7 天和 30 天,刺激和假手术动物之间的 miRNA 表达发生了显著变化。此外,我们发现存在随着时间变化表达水平的 miRNA 集合。对同一动物的 mRNA 表达分析表明,miRNA 表达水平改变的几个 mRNAs 的表达受到调节,符合预期方向。miRNA 的功能特征及其潜在的 mRNA 靶标表明,miRNA 可以参与癫痫组织中发生的几种分子事件,包括免疫反应和神经元可塑性。这是关于癫痫动物齿状回中 miRNA 表达变化及其潜在功能影响的首次报道。miRNA 表达的复杂变化表明 miRNA 在癫痫的分子机制中具有重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aae0/3795667/8a2deae3483b/pone.0076051.g001.jpg

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