Vascular Tissue Specific miRNA Profiles Reveal Novel Correlations with Risk Factors in Coronary Artery Disease

Katrīna D Neiburga1, Baiba Vilne1,2,3, Sabine Bauer3,4

  • 1Bioinformatics Lab, Riga Stradiņš University, LV-1007 Riga, Latvia.

Biomolecules
|November 27, 2021
PubMed

Insights

This study reveals novel microRNAs (miRs) in the internal mammary artery linked to cardiovascular disease risk factors. These tissue-specific miRs offer potential for improved diagnostics and targeted therapies in coronary artery disease patients.

Area of Science:

  • Cardiovascular research
  • Molecular biology
  • Genomics

Background:

  • Cardiovascular disease (CVD) is a leading global health concern.
  • Non-coding RNAs, particularly microRNAs (miRs), are implicated in CVD.
  • Limited data exists on tissue-specific miRs in cardiovascular tissues and their relation to risk factors.

Purpose of the Study:

  • To create a reference atlas of tissue-specific miRs from the internal mammary artery (IMA).
  • To identify novel diagnostic biomarkers and therapeutic targets for CVD.
  • To correlate IMA-derived miRs with cardiovascular risk factors.

Main Methods:

  • Analysis of tissue-specific miRs from IMA samples of 192 coronary artery disease (CAD) patients undergoing coronary artery bypass grafting (CABG).
  • Utilized next-generation sequencing and bioinformatic analysis for miR profiling.
  • Statistical correlation analysis to link miR expression with cardiovascular risk factors.

Main Results:

  • 393 miRs met quality control criteria for analysis.
  • 17 miRs, including miR-5701, showed significant correlations with cardiovascular risk factors like hypertension, hypercholesterolemia, and diabetes.
  • miR-629-5p and miR-98-5p were significantly associated with acute myocardial infarction.

Conclusions:

  • This study presents the first atlas of miR profiles in IMA from CAD patients.
  • Identified miRs may serve as crucial biomarkers for risk assessment and understanding CAD mechanisms.
  • These findings suggest potential for localized therapeutic strategies in CAD.

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