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Updated: Apr 25, 2026

Functional Characterization of Regulatory Macrophages That Inhibit Graft-reactive Immunity
Published on: June 7, 2017
CSF-1-dependant donor-derived macrophages mediate chronic graft-versus-host disease
Insights
Donor macrophages drive chronic graft-versus-host disease (cGVHD) development in skin and lungs. Targeting colony-stimulating factor 1 (CSF-1) signaling shows potential for preventing and treating cGVHD after stem cell transplantation.
Area of Science:
- Immunology
- Hematology
- Transplantation Biology
Background:
- Chronic graft-versus-host disease (cGVHD) is a significant cause of non-relapse mortality post-stem cell transplantation.
- cGVHD commonly affects organs like the skin and lungs, leading to severe pathology.
Purpose of the Study:
- To investigate the role of macrophage populations in the development of cGVHD.
- To identify key signaling pathways involved in macrophage infiltration and cGVHD pathogenesis.
Main Methods:
- Utilized multiple murine models of cGVHD, including IL-17-dependent sclerodermatous and bronchiolitis obliterans models.
- Tracked macrophage origins and infiltration using specific markers (F4/80, CSF-1R, CD206, iNOS).
- Administered CSF-1 to recipients and used grafts from Csf1r-/- mice; depleted macrophages using anti-CSF-1R mAb.
Main Results:
- Macrophage infiltration in cGVHD-affected skin and lungs was confirmed to be of donor bone marrow origin.
- Cutaneous and pulmonary cGVHD development was dependent on CSF-1/CSF-1R signaling.
- Depletion of macrophages via anti-CSF-1R antibody treatment significantly reduced cGVHD severity.
- CCL2/CCR2 and GM-CSF/GM-CSFR pathways were not essential for macrophage infiltration in these models.
Conclusions:
- Donor-derived macrophages play a critical role in mediating cGVHD development in multiple organs.
- Targeting the CSF-1/CSF-1R signaling pathway presents a promising therapeutic strategy for preventing and treating cGVHD post-transplantation.
Abstract:
Chronic GVHD (cGVHD) is the major cause of late, nonrelapse death following stem cell transplantation and characteristically develops in organs such as skin and lung. Here, we used multiple murine models of cGVHD to investigate the contribution of macrophage populations in the development of cGVHD. Using an established IL-17-dependent sclerodermatous cGVHD model, we confirmed that macrophages infiltrating the skin are derived from donor bone marrow (F4/80+CSF-1R+CD206+iNOS-). Cutaneous cGVHD developed in a CSF-1/CSF-1R-dependent manner, as treatment of recipients after transplantation with CSF-1 exacerbated macrophage infiltration and cutaneous pathology. Additionally, recipients of grafts from Csf1r-/- mice had substantially less macrophage infiltration and cutaneous pathology as compared with those receiving wild-type grafts. Neither CCL2/CCR2 nor GM-CSF/GM-CSFR signaling pathways were required for macrophage infiltration or development of cGVHD. In a different cGVHD model, in which bronchiolitis obliterans is a prominent manifestation, F4/80+ macrophage infiltration was similarly noted in the lungs of recipients after transplantation, and lung cGVHD was also IL-17 and CSF-1/CSF-1R dependent. Importantly, depletion of macrophages using an anti-CSF-1R mAb markedly reduced cutaneous and pulmonary cGVHD. Taken together, these data indicate that donor macrophages mediate the development of cGVHD and suggest that targeting CSF-1 signaling after transplantation may prevent and treat cGVHD.
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