Related Experiment Video
Updated: Mar 20, 2026

Isolation of Endocardial and Coronary Endothelial Cells from the Ventricular Free Wall of the Rat Heart
Published on: April 15, 2020
Selective subepicardial localization of monocyte subsets in response to progressive coronary artery constriction
Nazanin Hakimzadeh1, Monique G J T B van Lier2, Pepijn van Horssen2
1Department of Biomedical Engineering and Physics, Academic Medical Center, University of Amsterdam, Amsterdam, The Netherlands; Department Cardiology, Academic Medical Center, University of Amsterdam, Amsterdam, The Netherlands;
Insights
Monocytes play a dual role in heart repair and injury after myocardial infarction. This study reveals selective subepicardial distribution of specific monocyte subsets, influenced by their migratory properties, impacting heart recovery.
Area of Science:
- Cardiovascular Biology
- Immunology
- Regenerative Medicine
Background:
- Monocytes are critical in myocardial infarction (MI) and atherosclerosis, influencing both repair and injury.
- The balance between pro-inflammatory and reparative monocyte subsets dictates cardiac outcomes post-MI.
- Myocardial ischemic damage is transmurally heterogeneous, with the subendocardium being most vulnerable.
Purpose of the Study:
- To investigate the transmural distribution of monocyte subsets in response to gradual coronary artery occlusion.
- To understand the migratory and adhesive properties of different monocyte subsets in a chronic myocardial ischemia model.
Main Methods:
- Utilized a New Zealand White rabbit model of progressive coronary artery obstruction to induce chronic myocardial ischemia.
- Isolated and fluorescently labeled autologous CD14(+) monocytes, categorized into CD14(+)CD62L(+) and CD14(+)CD62L(-) subgroups.
- Employed high-resolution 3D imaging cryomicrotomy to examine monocyte distribution and targeted CD13(+) angiogenic vessels.
Main Results:
- The subepicardial layer showed the highest infiltration of both monocyte subgroups.
- CD14(+)CD62L(+) monocytes were proportionally higher when the ischemic area was maximal and demonstrated greater migration and adhesion.
- Angiogenesis was confirmed in epicardial and midmyocardial regions, areas with significant monocyte infiltration.
Conclusions:
- Selective subepicardial distribution of monocyte subpopulations occurs in response to coronary narrowing.
- The observed selective homing is supported by distinct migratory properties of CD14(+)CD62L(+) and CD14(+)CD62L(-) monocytes.
- Understanding monocyte subset distribution and behavior is crucial for developing targeted cardiac repair strategies.
Abstract:
Following myocardial infarction and atherosclerotic lesion development, monocytes contribute to myocardial protection and repair, while also partaking in myocardial ischemic injury. The balance of proinflammatory and reparative monocyte subsets is crucial in governing these therapeutic and pathological outcomes. Myocardial ischemic damage displays heterogeneity across the myocardium, whereby the subendocardium shows greatest vulnerability to ischemic damage. In this study we examined the transmural distribution of monocyte subsets in response to gradual coronary artery occlusion. CD14(+) monocytes were isolated from peripheral blood of New Zealand White rabbits and divided into two subgroups based on the expression of CD62L. We employed a rabbit model of progressive coronary artery obstruction to induce chronic myocardial ischemia and reinfused fluorescently labeled autologous monocytes. The distribution of fluorescently labeled autologous monocytes was examined with a high-resolution three-dimensional imaging cryomicrotome. The subepicardial layer contained the largest infiltration of both monocyte subgroups, with a significantly greater proportion of CD14(+)CD62L(+) monocytes at the time when the ischemic area was at a maximum. By targeting CD13(+) angiogenic vessels, we confirmed the presence of angiogenesis in epicardial and midmyocardial regions. These myocardial regions demonstrated the highest level of infiltration of both monocyte subsets. Furthermore, CD14(+)CD62L(+) monocytes showed significantly greater migration towards monocyte chemoattractant protein-1, greater adhesive capacity, and higher expression of C-C chemokine receptor type-2 relative to CD14(+)CD62L(-) monocytes. In conclusion, we note selective subepicardial distribution of monocyte subpopulations, with changes in proportion depending on the time after onset of coronary narrowing. Selective homing is supported by divergent migratory properties of each respective monocyte subgroup.
Related Concept Videos
Coronary Artery Disease II: Pathophysiology
Myocarditis I: Introduction
Acute Coronary Syndrome I: Introduction
Acute Coronary Syndrome II: Pathophysiology and Clinical Manifestations
Acute Coronary Syndrome III: Diagnostic Studies

