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Updated: Jan 31, 2026

Myocardial Infarction and Functional Outcome Assessment in Pigs
Published on: April 25, 2014
Adverse interaction between HDL and the mass of myocardial infarction
Alexandre A S Soares1, Luiz Sergio F Carvalho1, Isabella Bonilha1
1Cardiology Division, State University of Campinas, Campinas, São Paulo, Brazil; Laboratory of Atherosclerosis and Vascular Biology, State University of Campinas, Campinas, São Paulo, Brazil.
Insights
High HDL-C levels correlate with larger myocardial infarction (MI) size in patients undergoing early reperfusion. HDL from healthy donors, unlike from MI patients, reduced infarct size in an animal model.
Area of Science:
- Cardiology
- Biochemistry
Background:
- High-density lipoprotein cholesterol (HDL-C) is known to mitigate ischemia-reperfusion injury in animal models.
- The interaction between HDL-C and myocardial infarction (MI) mass in human patients, particularly after coronary reperfusion, remains unclear.
Purpose of the Study:
- To investigate the association between HDL-C levels and MI mass in patients.
- To determine the role of coronary reperfusion in this interaction.
- To compare the effects of reperfusion with HDL from healthy volunteers versus MI patients on MI size.
Main Methods:
- HDL-C and MI mass were quantified in 94 MI patients using cardiac magnetic resonance and peak CKMB.
- An ex vivo rat heart model was used to compare MI area and contractility (dP/dt max) after reperfusion with HDL from healthy volunteers or MI patients.
Main Results:
- Higher HDL-C levels (above median) were associated with increased peak CKMB, larger MI mass, and reduced left ventricular ejection fraction.
- HDL-C was directly associated with peak CKMB and MI mass in reperfused patients with reperfusion times under 4 hours.
- Reperfusion with HDL from healthy donors reduced MI mass and improved contractility in the rat model, whereas HDL from MI patients did not.
Conclusions:
- In MI patients receiving early coronary reperfusion, admission HDL-C levels are directly linked to MI size.
- HDL from MI patients, unlike HDL from healthy individuals, did not demonstrate a protective effect on infarct size in an ex vivo animal model.
Background And Aims:
Coronary reperfusion with HDL from healthy volunteers attenuates ischemia and reperfusion injury in animal models. In myocardial infarction (MI) patients, such an interaction is unclear. Hence, our first objective was to verify if there is interaction between HDL-C and MI mass in patients and the role of coronary reperfusion in the interaction. Furthermore, we investigated whether the effect in MI size of reperfusion with HDL obtained from healthy participants or MI patients could differ.
Methods:
HDL-C was measured the first day after MI and MI mass was quantified by cardiac magnetic resonance (n = 94) and peak CKMB (n = 393). In an ex vivo rat heart model, we compared MI area and dP/dt max after coronary reperfusion with HDL from MI patients or healthy volunteers.
Results:
HDL-C above the median (35 mg/dL) was associated with higher peak CKMB [255 (145-415) vs. 136 (84-287) UI/L; p = 0.02], higher MI mass [17 (9-21) vs. 10 (6-14) g; p < 0.01] and lower left ventricular ejection fraction [47 (34-53) vs. 51 (43-59); p = 0.02] than their counterparts. In restricted cubic spline and multivariate linear regression, HDL-C was directly associated with peak CKMB (p < 0.01) and MI mass (p < 0.01) only in reperfused patients with time to reperfusion <4 h. Reperfusion with healthy HDL, but not from MI patients, reduced MI mass (p < 0.01) and improved dP/dt max (p = 0.02).
Conclusions:
In MI patients undergoing early coronary reperfusion, HDL-C levels at admission are directly associated with MI size. In contrast to healthy HDL, reperfusion with HDL from MI patients do not reduce MI area in an ex vivo animal model.
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