Kumar Prince
Department of Central Sophisticated Instrumentation Cell, Post Graduate Institute of Medical Education and Research, Chandigarh, India.
Metab Brain Dis. 2023 Mar;38(3):749-765. doi: 10.1007/s11011-023-01172-z. Epub 2023 Jan 30.
Traumatic brain injury (TBI) leads to post-traumatic epilepsy (PTE); hence, both TBI and PTE share various similar molecular mechanisms. MicroRNA (miRNA) is a small noncoding RNA that acts as a gene-silencing molecule. Notably, the dysregulation of miRNAs in various neurological diseases, including TBI and epilepsy, has been reported in several studies. However, studies on commonly dysregulated miRNAs and the regulation of shared pathways in both TBI and epilepsy that can identify potential biomarkers of PTE are still lacking. This systematic review covers the peer-review publications of TBI and database studies of epilepsy-dysregulated miRNAs of clinical studies. For TBI, 290 research articles were identified after screening, and 12 provided data for dysregulated miRNAs in humans. The compiled data suggest that 85 and 222 miRNAs are consecutively dysregulated in TBI and epilepsy. In both, 10 miRNAs were found to be commonly dysregulated, implying that they are potentially dysregulated miRNAs for PTE. Furthermore, the targets and involvement of each putative miRNA in different pathways were identified and evaluated. Additionally, clusters of predicted miRNAs were analyzed. Each miRNA's regulatory role was linked with apoptosis, inflammation, and cell cycle regulation pathways. Hence, these findings provide insight for future diagnostic biomarkers.
创伤性脑损伤(TBI)会导致创伤后癫痫(PTE);因此,TBI和PTE具有多种相似的分子机制。微小RNA(miRNA)是一种小的非编码RNA,作为一种基因沉默分子发挥作用。值得注意的是,多项研究报道了miRNA在包括TBI和癫痫在内的各种神经疾病中的失调。然而,关于在TBI和癫痫中共同失调的miRNA以及对共享通路的调控(这些调控可识别PTE的潜在生物标志物)的研究仍然缺乏。本系统综述涵盖了TBI的同行评审出版物以及癫痫临床研究中失调miRNA的数据库研究。对于TBI,筛选后确定了290篇研究文章,其中12篇提供了人类中失调miRNA的数据。汇总数据表明,85种和222种miRNA分别在TBI和癫痫中连续失调。在两者中,发现10种miRNA共同失调,这意味着它们可能是PTE的失调miRNA。此外,还确定并评估了每种假定miRNA在不同通路中的靶标和参与情况。此外,还分析了预测miRNA的簇。每种miRNA的调控作用与细胞凋亡、炎症和细胞周期调控通路相关。因此,这些发现为未来的诊断生物标志物提供了见解。