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Construction of implantation failure related lncRNA-mRNA network and identification of lncRNA biomarkers for predicting endometrial receptivity

机译:与植入失败相关的lncRNA-mRNA网络的构建和用于预测子宫内膜容受性的lncRNA生物标志物的鉴定

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Insufficient endometrial receptivity is a major factor leading to implantation failure (IF), and the traditional way of morphological observation of endometrium cannot determine the condition of receptivity sufficiently. Considering that long-noncoding RNAs (lncRNAs) regulate endometrial receptivity and competing endogenous RNA (ceRNA) mechanism works in plenty of biological processes, ceRNA is likely to function in the pathology of IF. In the present study, we aim to construct an implantation failure related lncRNA-mRNA network (IFLMN), and to identify the key lncRNAs as the candidates for predicting endometrial receptivity. The global background network was constructed based on the presumed lncRNA-miRNA and miRNA-mRNA pairs obtained from lncRNASNP and miRTarBase. Differentially expressed genes (DEGs) of IF were calculated using the data of GSE26787, and then re-annotated as differentially expressed mRNAs (DEMs) and lncRNAs (DELs). IFLMN was constructed by hypergeometric test, including 255 lncRNA-mRNA pairs, 10 lncRNAs, and 212 mRNAs. Topological analysis determined the key lncRNAs with the highest centroid. Functional enrichment analyses were performed by unsupervised clustering, GO classification, KEGG pathway, and co-expression module analyses, achieving six key lncRNAs and their ceRNA sub-networks, which were involved in immunological activity, growth factor binding, vascular proliferation, apoptosis, and steroid biosynthesis in uterus and prepared endometrium for embryo implantation. Sixteen endometrial samples were collected during mid-luteal phase, including 8 recurrent implantation failure (RIF) or recurrent miscarriage (RM) women and 8 controls who conceived successfully. Quantitative real-time PCR was performed to compare the expression of the above six lncRNAs, which validated that the expression of all these lncRNAs was significantly elevated in endometrium of RIF/RM patients. Further studies are needed to investigate the underlying mechanism, and the lncRNAs may be developed into predictive biomarkers for endometrial receptivity.
机译:子宫内膜的接受能力不足是导致植入失败(IF)的主要因素,传统的子宫内膜形态学观察方法不能充分确定接受能力。考虑到长非编码RNA(lncRNA)调节子宫内膜的接受性并且竞争性内源RNA(ceRNA)机制在许多生物学过程中均起作用,因此ceRNA可能在IF病理中起作用。在本研究中,我们旨在构建与植入失败相关的lncRNA-mRNA网络(IFLMN),并确定关键的lncRNA作为预测子宫内膜接受性的候选对象。基于从lncRNASNP和miRTarBase获得的假定的lncRNA-miRNA和miRNA-mRNA对构建了全球背景网络。使用GSE26787的数据计算IF的差异表达基因(DEG),然后将其重新注释为差异表达的mRNA(DEM)和lncRNA(DEL)。 IFLMN通过超几何测试构建,包括255个lncRNA-mRNA对,10个lncRNA和212个mRNA。拓扑分析确定了质心最高的关键lncRNA。通过无监督聚类,GO分类,KEGG途径和共表达模块分析进行功能富集分析,获得了六个关键的lncRNA及其ceRNA子网,涉及免疫活性,生长因子结合,血管增殖,凋亡和激素在子宫内的生物合成和准备用于胚胎植入的子宫内膜。在黄体中期,收集了16例子宫内膜样品,包括8例复发性植入失败(RIF)或复发性流产(RM)妇女和8例成功受孕的对照。进行定量实时PCR以比较上述六个lncRNA的表达,这证实了所有这些lncRNA的表达在RIF / RM患者的子宫内膜中均显着升高。需要进一步研究以研究其潜在机制,lncRNAs可能会发展成为子宫内膜接受性的预测性生物标志物。

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