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Updated: May 4, 2026

Post-Myocardial Infarction Heart Failure in Closed-chest Coronary Occlusion/Reperfusion Model in Göttingen Minipigs and Landrace Pigs
Published on: April 17, 2021
microRNA expression and its potential role in cardioprotection by ischemic postconditioning in pigs
Theodor Baars1, Andreas Skyschally, Ludger Klein-Hitpass
1Institute for Pathophysiology, University of Essen Medical School, Essen, Germany.
Abstract:
Ischemic postconditioning (PoCo) reduces infarct size following myocardial ischemia/reperfusion. To protect, PoCo must be performed early during reperfusion, and causal cardioprotective signaling must occur then. The role of microRNA (miRNA) in PoCo is unclear. Anesthetized pigs were subjected to 60 min left anterior descending coronary artery (LAD) occlusion and 180 min reperfusion. Immediate full reperfusion (IFR, n = 5) was compared to PoCo (four cycles of 60 s/60 s reperfusion/reocclusion, n = 5). Transmural myocardial biopsies from the LAD territory were sampled at baseline, 60 min ischemia, 10 and 180 min reperfusion. RNA was isolated. The expression of 11 miRNAs, including muscle-specific (miRNA-1, -133a, -206, -208b, -214, and -499), fibrosis- (miRNA-21, -24, and -29b), neovascularization- (miRNA-92a), and inflammation-associated (miRNA-146b) candidates, was quantified using real-time PCR (RT-PCR). mRNA expression at baseline and 180 min reperfusion was quantified and validated (microarray and RT-PCR). PoCo reduced infarct size from 44.9 ± 7.7 to 34.8 ± 5.3% of the area at risk. The expression of miRNA-1, -24, -29b, -133a, -146b, -208b, and -499 was increased at 10 min reperfusion with PoCo vs. IFR; however, that of miRNA-1, -24, -208b, and -499 was already increased at 60 min ischemia and probably reflects falsely positive results. Five mRNAs were different with PoCo vs. IFR. In silico analysis identified a tentative connection between three miRNAs and five mRNAs with the biological functions "cell death", "inflammatory response" and/or "glucose metabolism". If at all, only miRNA-29b, -133a, and -146b fulfill the minimal temporal requirements for a potential causal involvement in cardioprotection by PoCo.
Insights
Ischemic postconditioning (PoCo) reduces heart attack size by altering microRNA expression during reperfusion. Early changes in specific microRNAs like miRNA-29b, -133a, and -146b may be key to this cardioprotective effect.
Area of Science:
- Cardiovascular Biology
- Molecular Cardiology
- Ischemia-Reperfusion Injury
Background:
- Ischemic postconditioning (PoCo) is a protective strategy against myocardial ischemia/reperfusion (I/R) injury.
- The precise molecular mechanisms underlying PoCo, particularly the role of microRNAs (miRNAs), remain incompletely understood.
- Early signaling during reperfusion is critical for PoCo-induced cardioprotection.
Purpose of the Study:
- To investigate the role of specific microRNAs (miRNAs) in the cardioprotective effects of PoCo during myocardial I/R.
- To determine the temporal expression patterns of candidate miRNAs in response to PoCo.
Main Methods:
- Pigs underwent 60 minutes of left anterior descending coronary artery occlusion followed by 180 minutes of reperfusion.
- PoCo was applied as cycles of reperfusion/reocclusion, compared to immediate full reperfusion (IFR).
- Myocardial biopsies were collected at various time points for miRNA and mRNA expression analysis using RT-PCR and microarray.
Main Results:
- PoCo significantly reduced infarct size compared to IFR (34.8% vs. 44.9% of area at risk).
- The expression of several miRNAs (miRNA-1, -24, -29b, -133a, -146b, -208b, -499) was altered at 10 minutes of reperfusion in the PoCo group.
- Only miRNA-29b, -133a, and -146b showed expression changes that met the temporal criteria for a potential causal role in PoCo.
Conclusions:
- PoCo confers cardioprotection by reducing infarct size in a porcine model of myocardial I/R.
- Specific miRNAs, notably miRNA-29b, -133a, and -146b, exhibit temporal expression patterns consistent with a causal role in PoCo-induced cardioprotection.
- Further research is warranted to elucidate the functional significance of these miRNAs in the PoCo signaling pathway.

