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Analysis of the Molecular Mechanism of Acute Coronary Syndrome Based on circRNA-miRNA Network Regulation

机译:基于Circrna-miRNA网络调控的急性冠状动脉综合征分子机制分析

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Background. With the development of biological technology, biomarkers for the prevention and diagnosis of acute coronary syndrome (ACS) have become increasingly evident. However, the study of novel circular RNAs (circRNAs) in ACS is still in progress. This study aimed to investigate whether the regulation of circRNA-miRNA networks is involved in ACS pathogenesis. Methods. We used microarray analysis to detect significantly expressed circRNAs and miRNAs in the peripheral blood of patients in the control group (CG) and ACS groups, including an unstable angina pectoris (UAP) group and an acute myocardial infarction (AMI) group. A circRNA-miRNA interaction network analysis was carried out with open-source bioinformatics. The gene ontology (GO), pathway, and disease enrichment analyses for differentially expressed circRNAs were further analysed with hierarchical clustering. Results. A total of 266 circRNAs (121 upregulated and 145 downregulated, P0.05, fold change FC?≥2) and 3 miRNAs (1 upregulated and 2 downregulated, P0.05, FC?≥?1.2) were differentially expressed in the ACS groups compared with those in the CG. In addition, among these expressed circRNAs and miRNAs, a single circRNA could bind to more than 1–100 miRNAs, and vice versa. Next, an AMI-UAP network, an AMI-CG network, a UAP-CG network, and an AMI-CG-UAP network were constructed. The top 30 enriched GO terms among the three groups were emphasized as differentially expressed. Disease enrichment analysis showed that these differentially expressed circRNAs are involved in the pathogenesis of cardiovascular diseases. KEGG pathway analysis was performed to identify pathways associated with circRNAs targeting mRNAs. Conclusion. CircRNAs are closely related to the pathological process of ACS via a mechanism that may be related to the up- or down-regulation of circRNAs and miRNAs and circRNA-miRNA coexpression. The metabolic pathways, signalling pathways, and diseases affected by these circRNAs can be predicted by enrichment analysis.
机译:背景。随着生物技术的发展,用于预防和诊断急性冠状动脉综合征(ACS)的生物标志物已经越来越明显。然而,ACS中新型圆形RNA(Circrnas)的研究仍在进行中。本研究旨在调查Circrna-miRNA网络的调节是否参与ACS发病机制。方法。我们使用微阵列分析来检测对照组(CG)和ACS组的患者外周血中的显着表达Circrnas和MiRNA,包括不稳定的心绞痛(UAP)组和急性心肌梗死(AMI)组。用开源生物信息学进行Circrna-miRNA相互作用网络分析。用分级聚类进一步分析了基因本体(GO),途径和疾病富集分析差异表达的CircrNA。结果。共有266个Circrnas(121个上调和145下调,P <0.05,折叠变化Fc?≥2)和3 miRNA(1个上调和2下调,P <0.05,Fc?≥≤1.2)在ACS组中差异表达与CG中的那些相比。此外,在这些表达的Circrnas和miRNA中,单个圆锥可以结合1-100 miRNA,反之亦然。接下来,构建AMI-UAP网络,AMI-CG网络,UAP网络和AMI-CG-UAP网络。三个群体中的前30名富集术语被强调为差异化表达。疾病富集分析表明,这些差异表达的Circrnas参与了心血管疾病的发病机制。进行Kegg途径分析以鉴定与靶向MRNA的Circrnas相关的途径。结论。 Circrnas通过可能与CircrNA和MiRNA和CircRNA-miRNA共表达的机制相关的机制与ACS的病理过程密切相关。通过富集分析可以预测受这些CircRNA影响的代谢途径,信号传导途径和疾病。

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