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Murine macrophage chemokine receptor CCR2 plays a crucial role in macrophage recruitment and regulated inflammation in wound healing.

Citation
Boniakowski, A. E., et al. “Murine Macrophage Chemokine Receptor Ccr2 Plays A Crucial Role In Macrophage Recruitment And Regulated Inflammation In Wound Healing.”. European Journal Of Immunology, pp. 1445-1455.
Center University of Michigan
Author Anna E Boniakowski, Andrew S Kimball, Amrita Joshi, Matt Schaller, Frank M Davis, Aaron Dendekker, Andrea T Obi, Bethany B Moore, Steve L Kunkel, Katherine A Gallagher
Keywords Chemokine receptor, inflammation, macrophages, Recruitment, Wound healing
Abstract

Macrophages play a critical role in the establishment of a regulated inflammatory response following tissue injury. Following injury, CCR2 monocytes are recruited from peripheral blood to wound tissue, and direct the initiation and resolution of inflammation that is essential for tissue repair. In pathologic states where chronic inflammation prevents healing, macrophages fail to transition to a reparative phenotype. Using a murine model of cutaneous wound healing, we found that CCR2-deficient mice (CCR2 ) demonstrate significantly impaired wound healing at all time points postinjury. Flow cytometry analysis of wounds from CCR2 and WT mice revealed a significant decrease in inflammatory, Ly6C recruited monocyte/macrophages in CCR2 wounds. We further show that wound macrophage inflammatory cytokine production is decreased in CCR2 wounds. Adoptive transfer of mT/mG monocyte/macrophages into CCR2 and CCR2 mice demonstrated that labeled cells on days 2 and 4 traveled to wounds in both CCR2 and CCR2 mice. Further, adoptive transfer of monocyte/macrophages from WT mice restored normal healing, likely through a restored inflammatory response in the CCR2-deficient mice. Taken together, these data suggest that CCR2 plays a critical role in the recruitment and inflammatory response following injury, and that wound repair may be therapeutically manipulated through modulation of CCR2.

Year of Publication
2018
Journal
European journal of immunology
Volume
48
Issue
9
Number of Pages
1445-1455
Date Published
12/2018
ISSN Number
1521-4141
DOI
10.1002/eji.201747400
Alternate Journal
Eur. J. Immunol.
PMID
29879295
PMCID
PMC6371802
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