miR-126-5p regulates H9c2 cell proliferation and apoptosis under hypoxic conditions by targeting IL-17A

Yin Ren1, Ruanzhong Bao1, Zhujun Guo1

  • 1Department of Cardiology, Taizhou People's Hospital of Jiangsu Province, Taizhou, Jiangsu 225300, P.R. China.

Insights

MicroRNA-126-5p (miR-126-5p) levels are decreased in acute myocardial infarction (AMI) patients. Restoring miR-126-5p protects heart cells from damage by targeting IL-17A, suggesting its diagnostic and therapeutic potential for AMI.

Area of Science:

  • Cardiovascular Biology
  • Molecular Medicine
  • Biomarker Discovery

Background:

  • MicroRNAs (miRNAs) are key regulators in disease pathogenesis, including cardiovascular conditions.
  • The specific role of miRNAs in acute myocardial infarction (AMI) requires further elucidation.
  • Interleukin-17A (IL-17A) is implicated in cardiovascular disease, but its regulation by miRNAs is not fully understood.

Purpose of the Study:

  • To investigate the therapeutic potential and underlying mechanisms of miR-126-5p in H9c2 cells under hypoxic conditions.
  • To determine the relationship between miR-126-5p and IL-17A in the context of AMI.
  • To evaluate miR-126-5p as a potential diagnostic biomarker for AMI.

Main Methods:

  • Serum samples from AMI patients and healthy controls were analyzed for miR-126-5p and IL-17A expression.
  • Dual-luciferase reporter assay confirmed IL-17A as a direct target of miR-126-5p.
  • H9c2 cells were subjected to hypoxia, followed by miR-126-5p or IL-17A manipulation and assessment of cell viability, apoptosis, and related protein expression via the PI3K/AKT pathway.

Main Results:

  • AMI patients exhibited significantly lower serum miR-126-5p and higher IL-17A levels compared to healthy controls.
  • Overexpression of miR-126-5p in hypoxic H9c2 cells increased cell viability, an effect reversed by IL-17A co-expression.
  • miR-126-5p mimics significantly reduced hypoxia-induced apoptosis in H9c2 cells, mediated through the PI3K/AKT signaling pathway.

Conclusions:

  • miR-126-5p plays a protective role in H9c2 cells against hypoxia-induced injury by targeting IL-17A.
  • The miR-126-5p/IL-17A axis influences cell viability and apoptosis, potentially via the PI3K/AKT pathway.
  • miR-126-5p demonstrates promise as a diagnostic biomarker and therapeutic target for acute myocardial infarction.

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