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Updated: Aug 19, 2026

Mesenchymal Stem Cell Regulation of Macrophage Phagocytosis; Quantitation and Imaging
Published on: July 16, 2021
Modulation of macrophage phenotype by soluble product(s) released from neutrophils
Jean M Daley1, Jonathan S Reichner, Eric J Mahoney
1Department of Surgery, Division of Surgical Research, Rhode Island Hospital and Brown Medical School, Providence, RI 02903, USA. jdaley@lifespan.org
Abstract:
The regulation of macrophage phenotype by neutrophils was studied in the s.c. polyvinyl alcohol sponge wound model in mice made neutropenic by anti-Gr-1 Ab, as well as in cell culture. Wounds in neutropenic mice contained 100-fold fewer neutrophils than those in nonneutropenic controls 1 day after sponge implantation. Wound fluids from neutropenic mice contained 68% more TNF-alpha, 168% more IL-6, and 61% less TGF-beta1 than those from controls. Wound fluid IL-10 was not different between the two groups, and IL-4 was not detected. Intracellular TNF-alpha staining was greater in cells isolated from neutropenic wounds than in those from control wounds. The hypothesis that wound neutrophil products modulate macrophage phenotype was tested in Transwell cocultures of LPS-stimulated J774A.1 macrophages and day 1 wound cells (84% neutrophils/15% macrophages). Overnight cocultures accumulated 60% less TNF-alpha and IL-6 than cultures of J774A.1 alone. The suppression of cytokine release was mediated by a soluble factor(s), because culture supernatants from wound cells inhibited TNF-alpha and IL-6 release from LPS-stimulated J774A.1 cells. Culture supernatants from purified wound neutrophils equally suppressed TNF-alpha release from LPS-stimulated J774A.1 cells. Wound cell supernatants also suppressed TNF-alpha and superoxide release from murine peritoneal macrophages. The TNF-alpha inhibitory factor has a molecular mass <3000 Da and is neither PGE2 nor adenosine. The present findings confirm a role for neutrophils in the regulation of innate immune responses through modulation of macrophage phenotype.
Insights
Neutrophils regulate macrophage immune responses. In wound healing, neutrophils suppress inflammatory cytokine release (TNF-alpha, IL-6) from macrophages via soluble factors, impacting innate immunity.
Area of Science:
- Immunology
- Wound Healing
- Cell Biology
Background:
- Neutrophils play a critical role in innate immunity and wound healing.
- Macrophage activation and cytokine production are key components of the inflammatory response.
- The specific regulatory interactions between neutrophils and macrophages in the wound microenvironment are not fully understood.
Purpose of the Study:
- To investigate the role of neutrophils in modulating macrophage phenotype during wound healing.
- To identify the mechanisms by which neutrophils influence macrophage cytokine production.
Main Methods:
- Utilized a polyvinyl alcohol sponge wound model in neutropenic and control mice.
- Analyzed cytokine levels (TNF-alpha, IL-6, TGF-beta1, IL-10) in wound fluids.
- Performed Transwell co-culture experiments with macrophages and wound cells/neutrophils.
- Characterized the soluble factors responsible for modulating macrophage activity.
Main Results:
- Neutropenic mice exhibited altered wound fluid cytokine profiles, with increased TNF-alpha and IL-6, and decreased TGF-beta1.
- Wound neutrophils suppressed the release of TNF-alpha and IL-6 from LPS-stimulated macrophages in co-culture.
- This suppression was mediated by soluble factors from neutrophils, distinct from PGE2 or adenosine.
Conclusions:
- Neutrophils actively regulate macrophage phenotype and cytokine production in the wound microenvironment.
- Neutrophils contribute to the control of innate immune responses by limiting excessive inflammation.
- These findings highlight a crucial neutrophil-macrophage crosstalk in wound healing.
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