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Updated: Nov 24, 2025

Analysis of Combinatorial miRNA Treatments to Regulate Cell Cycle and Angiogenesis
Published on: March 30, 2019
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.
Abstract:
Accumulating evidence has indicated that microRNAs (miRNAs/miRs) regulate the occurrence and development of various diseases, including diabetes, osteoporosis and cardiovascular conditions. However, the role of miRNAs in acute myocardial infarction (AMI) is not completely understood. The present study aimed to evaluate the therapeutic efficacy and mechanisms underlying the effects of miR-126-5p on H9c2 cell proliferation and apoptosis by targeting interleukin (IL)-17A. A total of 40 patients with AMI and 40 healthy volunteers were recruited in the present study and the expression levels of serum miR-126-5p and IL-17A were determined. Following confirmation that IL-17A was a target of miR-126-5p via a dual-luciferase reporter assay, H9c2 cells were exposed to hypoxic conditions. H9c2 cell viability and apoptosis were subsequently assessed. Additionally, the protein expression levels of apoptosis-associated proteins were detected following transfection. Compared with healthy individuals, miR-126-5p expression was significantly decreased in the serum samples of patients with AMI, whereas IL-17A, the target of miR-126-5p, was significantly increased. Following hypoxic treatment, miR-126-5p overexpression enhanced H9c2 cell viability compared with the NC group, which was subsequently reversed following co-transfection with pcDNA3.1-IL-17A. Additionally, the results indicated that hypoxia-induced H9c2 cell apoptosis was significantly reduced following transfection with miR-126-5p mimics via the PI3K/AKT signaling pathway compared with the NC group. The present study indicated that miR-126-5p may serve as a novel miRNA that regulates H9c2 cell viability and apoptosis by targeting IL-17A under hypoxic conditions. Therefore, miR-126-5p may serve as a crucial biomarker for the diagnosis of AMI.
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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