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Updated: Mar 12, 2026

Bone Marrow Transplantation Platform to Investigate the Role of Dendritic Cells in Graft-versus-Host Disease
Published on: March 17, 2020
Chronic graft-versus-host disease: biological insights from preclinical and clinical studies
Kelli P A MacDonald1, Geoffrey R Hill2,3, Bruce R Blazar4
1The Antigen Presentation and Immunoregulation Laboratory and.
Insights
Chronic graft-versus-host disease (cGVHD) is a major transplant complication. New research reveals cGVHD pathogenesis, offering hope for novel therapies targeting T cells and alloantibodies to improve patient outcomes.
Area of Science:
- Hematology
- Immunology
- Transplantation Medicine
Background:
- Chronic graft-versus-host disease (cGVHD) is a significant cause of mortality and morbidity after stem cell transplantation, particularly with unrelated or mismatched grafts.
- Current treatment options for cGVHD beyond steroids are limited, necessitating the development of new therapeutic strategies.
- Recent advancements in understanding cGVHD pathogenesis have emerged from mouse models and clinical studies.
Purpose of the Study:
- To elucidate the underlying mechanisms of chronic graft-versus-host disease (cGVHD) pathogenesis.
- To identify key cellular and molecular players involved in cGVHD initiation and progression.
- To explore novel therapeutic targets for the prevention and treatment of cGVHD.
Main Methods:
- Utilized mouse models and correlative clinical studies to investigate cGVHD.
- Analyzed T-cell differentiation pathways, including T-helper 17/T-cytotoxic 17 and T-follicular helper cells.
- Investigated the role of alloantibodies and colony-stimulating factor 1 (CSF-1) in disease development.
Main Results:
- cGVHD is initiated by naive T cells differentiating into inflammatory T-helper 17/T-cytotoxic 17 and T-follicular helper cells.
- Aberrant T- and B-cell activation leads to alloantibody and autoantibody production.
- Alloantibody, in conjunction with CSF-1-dependent macrophages, promotes a pro-fibrotic environment, causing scleroderma and bronchiolitis obliterans.
Conclusions:
- New insights into cGVHD pathogenesis highlight the roles of T-cell subsets and antibody production.
- Potential therapeutic strategies include naive T-cell depletion, IL-17/21 inhibition, kinase inhibition, and CSF-1 inhibition.
- This improved understanding offers hope for developing effective treatments for cGVHD.
Abstract:
With the increasing use of mismatched, unrelated, and granulocyte colony-stimulating factor-mobilized peripheral blood stem cell donor grafts and successful treatment of older recipients, chronic graft-versus-host disease (cGVHD) has emerged as the major cause of nonrelapse mortality and morbidity. cGVHD is characterized by lichenoid changes and fibrosis that affects a multitude of tissues, compromising organ function. Beyond steroids, effective treatment options are limited. Thus, new strategies to both prevent and treat disease are urgently required. Over the last 5 years, our understanding of cGVHD pathogenesis and basic biology, born out of a combination of mouse models and correlative clinical studies, has radically improved. We now understand that cGVHD is initiated by naive T cells, differentiating predominantly within highly inflammatory T-helper 17/T-cytotoxic 17 and T-follicular helper paradigms with consequent thymic damage and impaired donor antigen presentation in the periphery. This leads to aberrant T- and B-cell activation and differentiation, which cooperate to generate antibody-secreting cells that cause the deposition of antibodies to polymorphic recipient antigens (ie, alloantibody) or nonpolymorphic antigens common to both recipient and donor (ie, autoantibody). It is now clear that alloantibody can, in concert with colony-stimulating factor 1 (CSF-1)-dependent donor macrophages, induce a transforming growth factor β-high environment locally within target tissue that results in scleroderma and bronchiolitis obliterans, diagnostic features of cGVHD. These findings have yielded a raft of potential new therapeutics, centered on naive T-cell depletion, interleukin-17/21 inhibition, kinase inhibition, regulatory T-cell restoration, and CSF-1 inhibition. This new understanding of cGVHD finally gives hope that effective therapies are imminent for this devastating transplant complication.
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