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Updated: Jul 30, 2025

Isolation of Macrophage Subsets and Stromal Cells from Human and Mouse Myocardial Specimens
Published on: December 17, 2019
Crosstalk between macrophages and cardiac cells after myocardial infarction
Yuhong Jian1, Xiao Zhou2, Wenju Shan1
1Department of General Medicine, Xijing Hospital, The Fourth Military Medical University, Xi'an, China.
Insights
Macrophages are key immune cells in heart attack recovery, coordinating with other cardiac cells. Understanding their communication post-myocardial infarction (MI) is crucial for developing new treatments.
Area of Science:
- Immunology
- Cardiology
- Cell Biology
Background:
- Acute myocardial infarction (AMI) causes significant cardiomyocyte death and microcirculation injury.
- Macrophages are crucial innate immune cells that clear dead cells and initiate cardiac repair post-MI.
- The complex interactions between macrophages and other cardiac cells following MI are not fully understood.
Discussion:
- Macrophages exhibit phenotypic and functional plasticity, influencing the cardiac microenvironment.
- Macrophage-secreted exosomes are emerging as critical mediators of intercellular communication.
- Understanding macrophage crosstalk with cardiomyocytes, fibroblasts, and endothelial cells is vital for post-MI recovery.
Key Insights:
- Macrophages play a multifaceted role in the inflammatory response and subsequent repair after MI.
- Intercellular signaling pathways involving macrophages are essential for coordinating cardiac tissue regeneration.
- Elucidating macrophage-cardiac cell crosstalk offers novel therapeutic avenues for treating heart attacks.
Outlook:
- Further research is needed to fully map the signaling mechanisms underlying macrophage interactions in the infarcted heart.
- Identifying specific therapeutic targets within macrophage-mediated crosstalk could revolutionize MI treatment.
- Exploring macrophage-derived exosomes may reveal new diagnostic and therapeutic strategies for cardiovascular diseases.
Abstract:
Cardiovascular diseases, such as myocardial infarction (MI), are a leading cause of death worldwide. Acute MI (AMI) inflicts massive injury to the coronary microcirculation, causing large-scale cardiomyocyte death due to ischemia and hypoxia. Inflammatory cells such as monocytes and macrophages migrate to the damaged area to clear away dead cells post-MI. Macrophages are pleiotropic cells of the innate immune system, which play an essential role in the initial inflammatory response that occurs following MI, inducing subsequent damage and facilitating recovery. Besides their recognized role within the immune response, macrophages participate in crosstalk with other cells (including cardiomyocytes, fibroblasts, immune cells, and vascular endothelial cells) to coordinate post-MI processes within cardiac tissue. Macrophage-secreted exosomes have recently attracted increasing attention, which has led to a more elaborate understanding of macrophage function. Currently, the functional roles of macrophages in the microenvironment of the infarcted heart, particularly with regard to their interaction with surrounding cells, remain unclear. Understanding the specific mechanisms that mediate this crosstalk is essential in treating MI. In this review, we discuss the origin of macrophages, changes in their distribution post-MI, phenotypic and functional plasticity, as well as the specific signaling pathways involved, with a focus on the crosstalk with other cells in the heart. Thus, we provide a new perspective on the treatment of MI. Further in-depth research is required to elucidate the mechanisms underlying crosstalk between macrophages and other cells within cardiac tissue for the identification of potential therapeutic targets. Video Abstract.
Related Concept Videos
Myocarditis I: Introduction
Inflammation
Coronary Artery Disease II: Pathophysiology

