Exosome-derived circ_0001785 delays atherogenesis through the ceRNA network mechanism of miR-513a-5p/TGFBR3

Xiao Tong1,2, Xuan Dang1,2, Dongmei Liu1,3

  • 1Department of Cardiology, The 2nd Affiliated Hospital of Harbin Medical University, 148 Health Care Road, Harbin, Heilongjiang, China.

PubMed

Insights

Exosomes carrying circ_0001785 may serve as a biomarker for atherosclerosis. This molecule reduces endothelial cell injury and delays disease progression via the miR-513a-5p/TGFBR3 pathway, offering a novel therapeutic strategy.

Area of Science:

  • Cardiovascular Biology
  • Molecular Medicine
  • Biomarker Discovery

Background:

  • Endothelial cell dysfunction is a key driver of early atherosclerosis.
  • The role of circulating exosomes in atherosclerosis plaque formation remains unclear.
  • Exosomes mediate intercellular communication, influencing disease pathogenesis.

Purpose of the Study:

  • To investigate the impact of exosomes on atherosclerosis development.
  • To identify potential exosome-derived biomarkers for atherosclerosis.
  • To explore the therapeutic potential of exosome-mediated interventions.

Main Methods:

  • Serum exosomes were isolated from coronary heart disease (CHD) patients and healthy controls.
  • Exosomes were co-cultured with human umbilical vein endothelial cells (HUVECs) in vitro.
  • circ_0001785's role as a competing endogenous RNA (ceRNA) was analyzed using dual luciferase reporter assays.
  • Functional assays and in vivo studies in a mouse atherosclerosis model were conducted.

Main Results:

  • Plasma exosomes increased in CHD patients, exacerbating endothelial cell inflammation and apoptosis.
  • Overexpression of circ_0001785 mitigated endothelial cell injury via the miR-513a-5p/TGFBR3 ceRNA pathway.
  • circ_0001785 levels were reduced in CHD patient circulation but elevated in atherosclerotic plaques.
  • In vivo, circ_0001785 reduced aortic endothelial cell injury, intraplaque neovascularization, and improved cardiac function.

Conclusions:

  • Exosome-derived circ_0001785 is a novel biomarker for atherogenesis.
  • circ_0001785 delays atherosclerosis by reducing endothelial cell injury through the miR-513a-5p/TGFBR3 ceRNA mechanism.
  • This finding provides a potential exosome-based therapeutic strategy for atherosclerosis.
Abstract

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