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Competing Endogenous RNA Regulatory Networks of hsa_circ_0126672 in Pathophysiology of Coronary Heart Disease. | LitMetric

AI Article Synopsis

  • Coronary heart disease (CHD) is a significant global issue, with unclear molecular origins, and this study investigates the role of circular RNAs (circRNAs) in its development.* -
  • The researchers identified circRNAs linked to CHD, analyzed gene expression profiles through GEO2R, and constructed networks involving circRNA, miRNA, and mRNA to better understand their interactions and pathways.* -
  • Notably, circRNA hsa_circ_0126672 was found to influence CHD pathology by interacting with multiple miRNAs, particularly miR-145-5p, making them potential targets for diagnostic and therapeutic strategies against CHD.*

Article Abstract

Coronary heart disease (CHD) is a global health concern, and its molecular origin is not fully elucidated. Dysregulation of ncRNAs has been linked to many metabolic and infectious diseases. This study aimed to explore the role of circRNAs in the pathogenesis of CHD and predicted a candidate circRNA that could be targeted for therapeutic approaches to the disease. circRNAs associated with CHD were identified and CHD gene expression profiles were obtained, and analyzed with GEO2R. In addition, differentially expressed miRNA target genes (miR-DEGs) were identified and subjected to functional enrichment analysis. Networks of circRNA/miRNA/mRNA and the miRNA/affected pathways were constructed. Furthermore, a miRNA/mRNA homology study was performed. We identified that hsa_circ_0126672 was strongly associated with the CHD pathology by competing for endogenous RNA (ceRNA) mechanisms. hsa_circ_0126672 characteristically sponges miR-145-5p, miR-186-5p, miR-548c-3p, miR-7-5p, miR-495-3p, miR-203a-3p, and miR-21. Up-regulation of has_circ_0126672 affected various CHD-related cellular functions, such as atherosclerosis, JAK/STAT, and Apelin signaling pathways. Our results also revealed a perfect and stable interaction for the hybrid of miR-145-5p with and . Finally, miR-145-5p had the highest degree of interaction with the validated small molecules. Henchashsa_circ_0126672 and target miRNAs, notably miR-145-5p, could be good candidates for the diagnosis and therapeutic approaches to CHD.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10047999PMC
http://dx.doi.org/10.3390/genes14030550DOI Listing

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