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Updated: Jan 15, 2026

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Published on: June 15, 2018
MicroRNA-21 Protects Hypoxic-Induced Cardiomyocytes Injury by Targeting Smad-7
Md Sayed Ali Sheikh1, A Alduraywish1, Basil Mohammed Alomair1
1Internal Medicine Department, College of Medicine, Jouf University, Sakaka 72345, Saudi Arabia.
Abstract:
Globally acute myocardial infarction is the leading independent cause of unexpected death. This study aimed to explore the diagnostic and molecular impact of miR-21, miR-488, and miR-126 in acute myocardial infarction patients (AMI). We enrolled 95 non-ST-elevation myocardial infarction (NSTEMI) patients, 152 ST-elevation myocardial infarction (STEMI) patients, and 95 healthy individuals, additionally using three-month-old mice and their ventricular-derived H9c2 cells. The circulatory plasma miR-21 and miR-488 levels were significantly upregulated, while plasma miR-126 levels were remarkably downregulated in NSTEMI and STEMI subjects. The receiver operating characteristic curve showed that plasma miR-21, miR-488, and miR-126 were able to clearly differentiate NSTEMI and STEMI from healthy subjects. Moreover, H9c2 hypoxic cells treated with inhibitor miR-21 markedly reduced intracellular ROS levels, capase-3 activities levels, and cellular apoptosis rates and significantly enhanced cellular viability through up regulation of Smad-7 mRNA and protein expressions. In geriatric STEMI and NSTEMI subjects, plasma miR-21 levels were evidently higher than in comparatively younger subjects. Upregulated plasma miR-21 and miR-488 levels and downregulated miR-126 levels might be considered potential clinical biomarkers for myocardial infarction patients, while inhibition of miR-21, which significantly reduced hypoxia-exposed H9c2 cellular injury via targeting Smad-7, could be a new therapeutic target for AMI patients. Low levels plasma miR-21 may have a significant impact on delaying the aging process.
Insights
MicroRNAs miR-21, miR-488, and miR-126 show diagnostic potential for acute myocardial infarction (AMI). Inhibiting miR-21 may offer a therapeutic target for AMI by reducing cellular injury.
Area of Science:
- Cardiovascular Research
- Molecular Biology
- Biomarker Discovery
Background:
- Acute myocardial infarction (AMI) is a leading cause of sudden cardiac death globally.
- Understanding the molecular mechanisms and diagnostic markers of AMI is crucial for improving patient outcomes.
Purpose of the Study:
- To investigate the diagnostic role of plasma miR-21, miR-488, and miR-126 in patients with acute myocardial infarction (AMI).
- To explore the molecular impact of miR-21 inhibition on hypoxia-induced cellular injury in H9c2 cells.
- To assess the potential of these microRNAs as clinical biomarkers for AMI.
Main Methods:
- Analysis of plasma microRNA levels in 95 non-ST-elevation myocardial infarction (NSTEMI) patients, 152 ST-elevation myocardial infarction (STEMI) patients, and 95 healthy controls.
- Utilized three-month-old mice and ventricular-derived H9c2 cells for cellular studies.
- Employed receiver operating characteristic (ROC) curve analysis for diagnostic assessment and in vitro experiments with miR-21 inhibitors on H9c2 cells.
Main Results:
- Plasma miR-21 and miR-488 levels were significantly upregulated, while miR-126 levels were downregulated in NSTEMI and STEMI patients compared to healthy individuals.
- ROC curve analysis confirmed the diagnostic capability of these microRNAs in differentiating AMI patients from controls.
- Inhibition of miR-21 in H9c2 cells reduced reactive oxygen species (ROS), caspase-3 activity, and apoptosis, while enhancing viability by upregulating Smad-7 expression.
Conclusions:
- Circulating miR-21, miR-488, and miR-126 are potential biomarkers for diagnosing AMI.
- Inhibition of miR-21 presents a promising therapeutic strategy for AMI by mitigating hypoxia-induced cellular damage through Smad-7 targeting.
- Elevated plasma miR-21 levels in geriatric AMI patients warrant further investigation, and low miR-21 may impact aging processes.
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