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Updated: May 6, 2026

Fast and Simplified Method for High Through-put Isolation of miRNA from Highly Purified High Density Lipoprotein
Published on: July 27, 2016
Circulating microRNAs are new and sensitive biomarkers of myocardial infarction
Yuri D'Alessandra1, Paolo Devanna, Federica Limana
1Laboratorio di Biologia Vascolare e Medicina Rigenerativa, Centro Cardiologico Monzino, Istituto di Ricovero e Cura a Carattere Scientifico (IRCCS), Milan, Italy.
Aims:
Circulating microRNAs (miRNAs) may represent a novel class of biomarkers; therefore, we examined whether acute myocardial infarction (MI) modulates miRNAs plasma levels in humans and mice.
Methods And Results:
Healthy donors (n = 17) and patients (n = 33) with acute ST-segment elevation MI (STEMI) were evaluated. In one cohort (n = 25), the first plasma sample was obtained 517 ± 309 min after the onset of MI symptoms and after coronary reperfusion with percutaneous coronary intervention (PCI); miR-1, -133a, -133b, and -499-5p were ~15- to 140-fold control, whereas miR-122 and -375 were ~87-90% lower than control; 5 days later, miR-1, -133a, -133b, -499-5p, and -375 were back to baseline, whereas miR-122 remained lower than control through Day 30. In additional patients (n = 8; four treated with thrombolysis and four with PCI), miRNAs and troponin I (TnI) were quantified simultaneously starting 156 ± 72 min after the onset of symptoms and at different times thereafter. Peak miR-1, -133a, and -133b expression and TnI level occurred at a similar time, whereas miR-499-5p exhibited a slower time course. In mice, miRNAs plasma levels and TnI were measured 15 min after coronary ligation and at different times thereafter. The behaviour of miR-1, -133a, -133b, and -499-5p was similar to STEMI patients; further, reciprocal changes in the expression levels of these miRNAs were found in cardiac tissue 3-6 h after coronary ligation. In contrast, miR-122 and -375 exhibited minor changes and no significant modulation. In mice with acute hind-limb ischaemia, there was no increase in the plasma level of the above miRNAs.
Conclusion:
Acute MI up-regulated miR-1, -133a, -133b, and -499-5p plasma levels, both in humans and mice, whereas miR-122 and -375 were lower than control only in STEMI patients. These miRNAs represent novel biomarkers of cardiac damage.
Insights
Acute myocardial infarction (MI) increases circulating levels of specific microRNAs (miRNAs) in humans and mice, suggesting their potential as novel biomarkers for cardiac damage. These findings highlight miRNAs as promising indicators of heart injury.
Area of Science:
- Biochemistry
- Molecular Biology
- Cardiology
Background:
- Circulating microRNAs (miRNAs) are emerging as potential biomarkers.
- Investigating miRNA expression changes in response to acute myocardial infarction (MI) is crucial for understanding cardiac injury.
Purpose of the Study:
- To determine if acute myocardial infarction (MI) alters plasma levels of specific microRNAs (miRNAs) in humans and mice.
- To identify potential miRNA biomarkers for cardiac damage.
Main Methods:
- Plasma samples from healthy donors and patients with ST-segment elevation myocardial infarction (STEMI) were analyzed.
- miRNA levels were quantified in humans and mice following MI induction.
- Cardiac tissue miRNA expression was assessed in mice post-MI.
Main Results:
- Acute MI significantly upregulated plasma levels of miR-1, -133a, -133b, and -499-5p in both humans and mice.
- miR-122 and -375 levels were decreased in STEMI patients but not significantly altered in mice.
- Changes in plasma miRNAs mirrored troponin I kinetics in STEMI patients and showed reciprocal changes in cardiac tissue.
Conclusions:
- Specific circulating miRNAs (miR-1, -133a, -133b, -499-5p) are elevated following acute MI.
- These miRNAs show promise as novel, non-invasive biomarkers for detecting cardiac damage.
- Differential miRNA expression patterns may aid in diagnosing and monitoring myocardial infarction.
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