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Updated: Mar 25, 2026

Assessment of Acute Wound Healing using the Dorsal Subcutaneous Polyvinyl Alcohol Sponge Implantation and Excisional Tail Skin Wound Models.
Published on: March 25, 2020
Peritoneal macrophages regulate distal wound healing via endocrine release of plasma fibronectin
Lilian Salm1,2,3,4, Simone N Zwicky1,2, Daniel Spari1,2
1Department of Visceral Surgery and Medicine, Inselspital, Bern University Hospital, University of Bern, Bern, Switzerland.
Abstract:
The peritoneal cavity contains a large population of GATA6-expressing large peritoneal macrophages (LPMs), known to support healing of intraabdominal organs. In this study, we aimed to explore their full sphere of influence by examining their ability to perform wound healing at distant sites outside the cavity. In a mouse model combining a remote skin injury with peritoneal stimulation we observed a significant acceleration of skin wound healing in response to LPM activation. Tracking GATA6-expressing LPMs, we demonstrated that LPMs do not migrate to distant wound sites following peritoneal activation. Using parabiosis experiments and administration of activated peritoneal contents indicated an important role of molecules secreted by LPMs in remote skin wound healing. More specifically, proteomic and transcriptomic analyses identified fibronectin as a key factor produced by activated LPMs. In fact, depletion of LPMs or genetic knockout of fibronectin in myeloid cells eliminated the enhanced healing effect. These findings highlight the endocrine function of LPMs in systemic tissue repair, challenging the traditional perspective of plasma fibronectin being exclusively liver derived. Our results suggest that LPMs, strategically positioned in the peritoneal cavity, serve as a source of circulating fibronectin, promoting matrix formation and accelerating wound healing at distant sites.
Insights
Large peritoneal macrophages (LPMs) in the abdominal cavity secrete fibronectin, accelerating skin wound healing at distant sites. This study reveals their crucial endocrine role in systemic tissue repair and matrix formation.
Area of Science:
- Immunology
- Cell Biology
- Tissue Repair
Background:
- Large peritoneal macrophages (LPMs) expressing GATA6 reside in the peritoneal cavity.
- These macrophages are known to support healing of intra-abdominal organs.
- Their role in healing distant sites was previously unexplored.
Purpose of the Study:
- To investigate the influence of LPMs on wound healing at sites distant from the peritoneal cavity.
- To identify the mechanisms by which LPMs mediate remote wound healing.
Main Methods:
- A mouse model with combined remote skin injury and peritoneal stimulation.
- Tracking of GATA6-expressing LPMs.
- Parabiosis experiments and analysis of peritoneal contents.
- Proteomic and transcriptomic analyses.
- Depletion of LPMs and genetic knockout of fibronectin in myeloid cells.
Main Results:
- Peritoneal LPM activation significantly accelerated remote skin wound healing.
- LPMs did not migrate to distant wound sites.
- Secreted molecules from LPMs, particularly fibronectin, were key mediators.
- Depletion of LPMs or fibronectin abolished the enhanced healing effect.
Conclusions:
- LPMs possess an endocrine function, contributing to systemic tissue repair.
- Activated LPMs secrete fibronectin, which promotes matrix formation and accelerates wound healing at distant sites.
- This challenges the notion that plasma fibronectin is solely liver-derived, highlighting LPMs as a significant source.
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