Identification and expansion of highly suppressive CD8+FoxP3+ regulatory T cells after experimental allogeneic bone marrow transplantation

Author:

Robb Renee J.12,Lineburg Katie E.1,Kuns Rachel D.1,Wilson Yana A.1,Raffelt Neil C.1,Olver Stuart D.1,Varelias Antiopi1,Alexander Kylie A.1,Teal Bianca E.1,Sparwasser Tim3,Hammerling Gunter J.4,Markey Kate A.1,Koyama Motoko1,Clouston Andrew D.5,Engwerda Christian R.6,Hill Geoffrey R.17,MacDonald Kelli P. A.8

Affiliation:

1. Bone Marrow Transplantation Laboratory, Queensland Institute of Medical Research, Brisbane, Australia;

2. School of Medicine, University of Queensland, Brisbane, Australia;

3. Institute for Medical Microbiology, Immunology and Hygiene, Technical University of Munich, Munich, Germany;

4. Division of Molecular Immunology, Deutsches Krebsforschungszentrum, Heidelberg, Germany;

5. Envoi Pathology, Brisbane, Australia;

6. Immunology and Infection Laboratory, Queensland Institute of Medical Research, Brisbane, Australia;

7. Department of Bone Marrow Transplantation, Royal Brisbane and Women's Hospital, Brisbane, Australia; and

8. Antigen Presentation and Immunoregulation Laboratory, Queensland Institute of Medical Research, Brisbane, Australia

Abstract

Abstract FoxP3+ confers suppressive properties and is confined to regulatory T cells (Treg) that potently inhibit autoreactive immune responses. In the transplant setting, natural CD4+ Treg are critical in controlling alloreactivity and the establishment of tolerance. We now identify an important CD8+ population of FoxP3+ Treg that convert from CD8+ conventional donor T cells after allogeneic but not syngeneic bone marrow transplantation. These CD8+ Treg undergo conversion in the mesenteric lymph nodes under the influence of recipient dendritic cells and TGF-β. Importantly, this population is as important for protection from GVHD as the well-studied natural CD4+FoxP3+ population and is more potent in exerting class I–restricted and antigen-specific suppression in vitro and in vivo. Critically, CD8+FoxP3+ Treg are exquisitely sensitive to inhibition by cyclosporine but can be massively and specifically expanded in vivo to prevent GVHD by coadministering rapamycin and IL-2 antibody complexes. CD8+FoxP3+ Treg thus represent a new regulatory population with considerable potential to preferentially subvert MHC class I–restricted T-cell responses after bone marrow transplantation.

Publisher

American Society of Hematology

Subject

Cell Biology,Hematology,Immunology,Biochemistry

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