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Updated: Jul 12, 2026

Isolation and Identification of Extravascular Immune Cells of the Heart
Published on: August 23, 2018
Myocardial Immune Niches in Homeostasis and Inflammation
Christian Perez-Shibayama1,2,3, Nadine Cadosch1, Dörthe Schmidt4
1Institute of Immunobiology, Medical Research Center, Cantonal Hospital St. Gallen, St. Gallen, Switzerland.
Insights
The heart
Area of Science:
- Cardiovascular Biology
- Immunology
- Cellular Biology
Background:
- The heart's function relies on cardiomyocytes and supporting stromal cells.
- Immune cells interact with stromal cells to maintain cardiac tissue integrity.
- Homeostatic immune-stromal interactions regulate cardiomyocyte contractility and metabolism.
Purpose of the Study:
- To present an immune niche-based perspective on myocardial immunity.
- To summarize key molecular and cellular components within cardiac immune niches.
- To highlight mechanisms maintaining cardiomyocyte integrity and function.
Main Methods:
- Review of current literature on cardiac immune niches.
- Analysis of molecular and cellular interactions within these niches.
- Discussion of immunological pathways in myocardial inflammation.
Main Results:
- Cardiac immune niches are anatomically and functionally distinct.
- Specific immune-stromal interactions govern cardiomyocyte homeostasis.
- Inflammation disrupts these interactions, potentially leading to maladaptive remodeling.
Conclusions:
- Understanding cardiac immune niches is crucial for maintaining heart function.
- Immune cell regulation within niches prevents adverse cardiac remodeling.
- This niche-based view offers insights into preventing heart failure.
Abstract:
The heart functions as a circulatory pump that supplies blood throughout the body. The execution of this critical function depends on the interplay between cardiomyocytes and the supportive cellular infrastructure, generated by endothelial cells, fibroblasts and distinct immune cell populations. Immune cells cooperate with fibroblastic and endothelial stromal cells across different cellular ecosystems to maintain tissue integrity and function. In the homeostatic state, immune-stromal interactions in specific niche environments govern critical cardiomyocyte functions such as contractility and metabolic balance. Inflammatory perturbations disrupt the equilibrated cellular interactions leading to local stromal and immune cell activation. Dedicated regulatory mechanisms and circuits direct immune cell functions in the inflamed myocardium to prevent maladaptive remodeling processes, which could manifest as cardiac fibrosis, arrhythmia, or heart failure. Here, we discuss an immune niche-based view on myocardial immunity based on anatomically and functionally distinct niche environments. We summarize recent progress on the key molecular and cellular components and their interactions within cardiac immune niches and highlight immunological mechanisms and pathways that maintain cardiomyocyte integrity and function.
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