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Macrophages in skin injury and repair
Babak Mahdavian Delavary1, Willem M van der Veer, Marjolein van Egmond
1Department of Molecular Cell Biology and Immunology, VU University Medical Center, Amsterdam, The Netherlands. b.mahdavian@vumc.nl
Abstract:
After recruitment to the wound bed, monocytes differentiate into macrophages. Macrophages play a central role in all stages of wound healing and orchestrate the wound healing process. Their functional phenotype is dependent on the wound microenvironment, which changes during healing, hereby altering macrophage phenotype. During the early and short inflammatory phase macrophages exert pro-inflammatory functions like antigen-presenting, phagocytosis and the production of inflammatory cytokines and growth factors that facilitate the wound healing process. As such, the phenotype of wound macrophages in this phase is probably the classically activated or the so-called M1 phenotype. During the proliferative phase, macrophages stimulate proliferation of connective, endothelial and epithelial tissue directly and indirectly. Especially fibroblasts, keratinocytes and endothelial cells are stimulated by macrophages during this phase to induce and complete ECM formation, reepithelialization and neovascularization. Subsequently, macrophages can change the composition of the ECM both during angiogenesis and in the remodelling phase by release of degrading enzymes and by synthesizing ECM molecules. This suggests an important role for alternatively activated macrophages in this phase of wound healing. Pathological functioning of macrophages in the wound healing process can result in derailed wound healing, like the formation of ulcers, chronic wounds, hypertrophic scars and keloids. However, the exact role of macrophages in these processes is still incompletely understood. For treating wound repair disorders more should be elucidated on the role of macrophages in these conditions, especially their functional phenotype, to find more therapeutic opportunities. This review summarizes macrophage function in skin injury repair, thereby providing more insight in macrophage function in wound healing and possible interventions in this process.
Insights
Macrophages are crucial for wound healing, shifting from M1 to M2 phenotypes to manage inflammation and tissue repair. Understanding their roles offers new therapeutic avenues for chronic wounds and scarring.
Area of Science:
- Immunology
- Dermatology
- Regenerative Medicine
Background:
- Macrophages are key immune cells in wound healing, with their function dictated by the microenvironment.
- Their phenotype dynamically changes throughout the wound healing process, influencing repair outcomes.
Purpose of the Study:
- To review the multifaceted roles of macrophages in skin injury repair.
- To elucidate the functional phenotypes of macrophages during different stages of wound healing.
- To identify potential therapeutic targets for disordered wound healing by understanding macrophage behavior.
Main Methods:
- Literature review of macrophage function in skin wound healing.
- Analysis of macrophage phenotypes (M1 and M2) in relation to wound healing phases.
- Synthesis of current understanding on macrophage involvement in pathological wound healing.
Main Results:
- Macrophages transition from a pro-inflammatory (M1) phenotype in the early phase to an alternatively activated (M2) phenotype in later stages.
- M1 macrophages facilitate inflammation and debris clearance, while M2 macrophages promote tissue proliferation, ECM formation, and remodeling.
- Dysfunctional macrophage activity is linked to impaired wound healing, including chronic wounds and excessive scarring.
Conclusions:
- Macrophages are central orchestrators of wound healing, with distinct phenotypes driving different stages of repair.
- Targeting macrophage phenotypes presents a promising strategy for treating wound repair disorders.
- Further research into macrophage roles in pathological healing is essential for developing effective interventions.
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