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Updated: Jun 9, 2026

Isolation of Functional Cardiac Immune Cells
Published on: December 5, 2011
Cardiac mast cells: the centrepiece in adverse myocardial remodelling
Scott P Levick1, Giselle C Meléndez, Eric Plante
1Cell Biology and Anatomy, School of Medicine, University of South Carolina, Columbia, SC 29208, USA.
Insights
Cardiac mast cells play a dual role in cardiovascular disease, contributing to both matrix degradation and fibrosis. Their activity is linked to conditions like dilated cardiomyopathy and hypertension.
Area of Science:
- Cardiovascular Biology
- Immunology
- Pathophysiology
Background:
- Mast cells are increased in various cardiovascular conditions, including dilated cardiomyopathy, hypertension, and myocardial infarction.
- Mast cell proteases can activate matrix metalloproteinases (MMPs), enzymes involved in extracellular matrix degradation.
- Cardiac mast cell density correlates with MMP activity and extracellular matrix degradation in chronic ventricular volume overload.
Purpose of the Study:
- To review the dual roles of cardiac mast cells in cardiovascular disease.
- To explore the regulation of cardiac mast cells.
- To investigate the potential cardioprotective effects related to gender differences in cardiac mast cells.
Main Methods:
- Review of existing literature on mast cell involvement in cardiovascular disorders.
- Analysis of in vitro studies on mast cell protease activity.
- Examination of data from animal models and human studies.
Main Results:
- Cardiac mast cells contribute to myocardial fibrillar collagen degradation via MMP activation.
- Cardiac mast cells can promote fibrosis in stressed or diseased hearts.
- Mast cell deficiency or prevention of degranulation mitigates adverse cardiac remodeling.
Conclusions:
- Cardiac mast cells have a significant, albeit complex, role in cardiovascular pathophysiology.
- Understanding mast cell regulation offers potential therapeutic targets for heart disease.
- Gender differences in cardiac mast cells may contribute to observed cardioprotection in premenopausal females.
Abstract:
Increased numbers of mast cells have been reported in explanted human hearts with dilated cardiomyopathy and in animal models of experimentally induced hypertension, myocardial infarction, and chronic volume overload secondary to aortocaval fistula and mitral regurgitation. Accordingly, mast cells have been implicated to have a major role in the pathophysiology of these cardiovascular disorders. In vitro studies have verified that mast cell proteases are capable of activating collagenase, gelatinases and stromelysin. Recent results have shown that with chronic ventricular volume overload, there is an elevation in mast cell density, which is associated with a concomitant increase in matrix metalloproteinase (MMP) activity and extracellular matrix degradation. However, the role of the cardiac mast cell is not one dimensional, with evidence from hypertension and cardiac transplantation studies suggesting that they can also assume a pro-fibrotic phenotype in the heart. These adverse events do not occur in mast cell deficient rodents or when cardiac mast cells are pharmacologically prevented from degranulating. This review is focused on the regulation and dual roles of cardiac mast cells in: (i) activating MMPs and causing myocardial fibrillar collagen degradation and (ii) causing fibrosis in the stressed, injured or diseased heart. Moreover, there is strong evidence that premenopausal female cardioprotection may at least partly be due to gender differences in cardiac mast cells. This too will be addressed.
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