Gholaminejad Alieh, Abdul Tehrani Hossein, Gholami Fesharaki Mohammad
a Department of Medical Biotechnology, Faculty of Medical Sciences , Tarbiat Modares University , Tehran , Iran.
b Department of Biostatistics, Faculty of Medical Sciences , Tarbiat Modares University , Tehran , Iran.
Biomarkers. 2018 Dec;23(8):713-724. doi: 10.1080/1354750X.2018.1488275. Epub 2018 Oct 16.
The prognostic, diagnostic and therapeutic value of microRNA (miRNA) expression aberrations in renal fibrosis has been studied in recent years. However, the miRNA expression profiling efforts have led to inconsistent results between the studies. The aim of this study was to perform a meta-analysis on the renal fibrosis miRNA expression profiling studies to identify candidate diagnostic biomarkers. We performed comprehensive literature searches in several databases to identify miRNA expression studies of renal fibrosis in animal models and humans. The miRNAs expression data were extracted from 20 included studies, and both miRNA vote-counting strategy and Robust Rank Aggregation method were utilized to identify significant miRNA meta-signatures. The predicted and validated targets of miRNA meta-signature were obtained by using MultiMiR package in 11 databases. Then a gene set enrichment analysis (KEGG, PANTHER pathways and GO processes) were carried out with GeneCodis web tool to recognize pathways that are most strongly influenced by modified expressions of these miRNAs. We recognized in both meta-analysis approaches a significant miRNA meta-signature of five up-regulated (miR-142-3p, miR-223-3p, miR-21-5p, miR-142-5p and miR-214-3p) and two down-regulated (miR-29c-3p and miR-200a-3p) miRNAs. Enrichment analysis confirmed that miRNA meta-signature cooperatively target functionally related genes in signalling and developmental pathways in renal fibrosis. This meta-analysis identified seven highly significant and consistently dysregulated miRNAs from 20 datasets, as the focus of future investigations to discover their potential influence to renal fibrosis and their clinical utility as biomarkers and/or as therapeutic mediators against chronic kidney disease..
近年来,人们对微小RNA(miRNA)表达异常在肾纤维化中的预后、诊断和治疗价值进行了研究。然而,miRNA表达谱分析的研究结果并不一致。本研究的目的是对肾纤维化miRNA表达谱研究进行荟萃分析,以确定候选诊断生物标志物。我们在多个数据库中进行了全面的文献检索,以确定动物模型和人类肾纤维化的miRNA表达研究。从20项纳入研究中提取miRNA表达数据,并利用miRNA计数策略和稳健秩聚合方法来识别显著的miRNA元特征。通过在11个数据库中使用MultiMiR软件包获得miRNA元特征的预测和验证靶点。然后,使用GeneCodis网络工具进行基因集富集分析(KEGG、PANTHER通路和GO过程),以识别受这些miRNA表达改变影响最强烈的通路。我们在两种荟萃分析方法中都识别出了一个显著的miRNA元特征,包括5个上调的miRNA(miR-142-3p、miR-223-3p、miR-21-5p、miR-142-5p和miR-214-3p)和2个下调的miRNA(miR-29c-3p和miR-200a-3p)。富集分析证实,miRNA元特征协同靶向肾纤维化信号和发育通路中功能相关的基因。这项荟萃分析从20个数据集中识别出7个高度显著且一致失调的miRNA,作为未来研究的重点,以发现它们对肾纤维化的潜在影响以及它们作为生物标志物和/或抗慢性肾脏病治疗介质的临床应用价值。