MiR-145-5p regulates hypoxia-induced inflammatory response and apoptosis in cardiomyocytes by targeting CD40

Ming Yuan1, Liwei Zhang2, Fei You3

  • 1Department of Cardiology, Xijing Hospital, Changle Xi 17, Xi'an, 710032, Shaanxi, People's Republic of China. 1446534236@qq.com.

Insights

MicroRNA-145-5p protects heart cells from injury by reducing inflammation and apoptosis. It achieves this by targeting CD40, offering a potential therapeutic strategy for acute myocardial infarction (AMI).

Area of Science:

  • Molecular Biology
  • Cardiovascular Research
  • Cellular Signaling

Background:

  • Inflammation and apoptosis are key factors in acute myocardial infarction (AMI) development.
  • The precise molecular mechanisms regulating myocardial ischemic injury require further elucidation.

Purpose of the Study:

  • To investigate the role of miR-145-5p in myocardial ischemic injury.
  • To explore the underlying regulatory mechanism of miR-145-5p in cardiac cells.
  • To determine if miR-145-5p can protect against hypoxia-induced damage.

Main Methods:

  • Established a myocardial hypoxic/ischemic injury model using H9c2 cardiac cells.
  • Quantified miR-145-5p and CD40 expression levels.
  • Assessed inflammatory cytokine (IL-1β, TNF-α, IL-6) and apoptosis marker (Bcl-2, Bax, Caspase-3, Caspase-9) expression.
  • Utilized miR-145-5p mimics and CD40 small interfering RNAs (siRNAs).

Main Results:

  • Hypoxia down-regulated miR-145-5p and up-regulated CD40 expression in H9c2 cells.
  • Hypoxia increased inflammatory cytokine secretion and apoptosis markers.
  • miR-145-5p restoration suppressed inflammation and apoptosis.
  • CD40 was identified as a direct target of miR-145-5p.
  • CD40 depletion mimicked the protective effects of miR-145-5p.

Conclusions:

  • miR-145-5p acts as a cardiac-protective microRNA in myocardial ischemic injury.
  • It ameliorates inflammation and apoptosis by negatively regulating CD40.
  • miR-145-5p represents a potential therapeutic target for protecting cardiomyocytes against hypoxia-induced damage.

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