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Updated: Jul 7, 2026

Refined CLARITY-Based Tissue Clearing for Three-Dimensional Fibroblast Organization in Healthy and Injured Mouse Hearts
Published on: May 16, 2021
CD44 is critically involved in infarct healing by regulating the inflammatory and fibrotic response
Peter Huebener1, Tareq Abou-Khamis, Pawel Zymek
1Section of Cardiovascular Sciences, Baylor College of Medicine, One Baylor Plaza, Houston, TX 77030, USA.
Insights
CD44 signaling is crucial for proper infarct healing by regulating inflammation and fibroblast function. Mice lacking CD44 showed impaired inflammatory resolution and defective cardiac repair, leading to adverse remodeling.
Area of Science:
- Cardiovascular Biology
- Inflammation and Immunology
- Tissue Repair and Regeneration
Background:
- Infarct healing involves inflammation, leukocyte infiltration, and scar formation.
- Timely resolution of inflammation is essential for optimal healing and preventing adverse remodeling.
- The transmembrane receptor CD44 is implicated in inflammation resolution and fibroblast migration.
Purpose of the Study:
- To investigate the role of CD44 signaling in infarct healing and cardiac remodeling.
- To elucidate the mechanisms by which CD44 influences inflammatory responses and fibroblast function post-myocardial infarction.
Main Methods:
- Utilized a mouse model of reperfused myocardial infarction.
- Assessed CD44 expression in infarcted myocardium and infiltrating cells.
- Compared inflammatory cell infiltration, cytokine expression, fibroblast activity, and cardiac remodeling in wild-type and CD44(-/-) mice.
Main Results:
- CD44 expression was upregulated in the infarcted myocardium on leukocytes, myofibroblasts, and vascular cells.
- CD44(-/-) mice exhibited prolonged neutrophil and macrophage infiltration and increased pro-inflammatory cytokines.
- Absence of CD44 led to reduced fibroblast infiltration, collagen deposition, and fibroblast proliferation/collagen synthesis.
- CD44 deficiency resulted in enhanced ventricular dilation and adverse cardiac remodeling.
Conclusions:
- CD44-mediated interactions are critical for effective infarct healing.
- CD44 signaling plays a vital role in resolving post-infarction inflammation.
- CD44 regulates fibroblast function, impacting scar formation and cardiac remodeling.
Abstract:
Infarct healing is dependent on an inflammatory reaction that results in leukocyte infiltration and clearance of the wound from dead cells and matrix debris. However, optimal infarct healing requires timely activation of "stop signals" that suppress inflammatory mediator synthesis and mediate resolution of the inflammatory infiltrate, promoting formation of a scar. A growing body of evidence suggests that interactions involving the transmembrane receptor CD44 may play an important role in resolution of inflammation and migration of fibroblasts in injured tissues. We examined the role of CD44 signaling in infarct healing and cardiac remodeling using a mouse model of reperfused infarction. CD44 expression was markedly induced in the infarcted myocardium and was localized on infiltrating leukocytes, wound myofibroblasts, and vascular cells. In comparison with wild-type mice, CD44(-/-) animals showed enhanced and prolonged neutrophil and macrophage infiltration and increased expression of proinflammatory cytokines following myocardial infarction. In CD44(null) infarcts, the enhanced inflammatory phase was followed by decreased fibroblast infiltration, reduced collagen deposition, and diminished proliferative activity. Isolated CD44(null) cardiac fibroblasts had reduced proliferation upon stimulation with serum and decreased collagen synthesis in response to TGF-beta in comparison to wild-type fibroblasts. The healing defects in CD44(-/-) mice were associated with enhanced dilative remodeling of the infarcted ventricle, without affecting the size of the infarct. Our findings suggest that CD44-mediated interactions are critically involved in infarct healing. CD44 signaling is important for resolution of the postinfarction inflammatory reaction and regulates fibroblast function.
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