Bidirectional immune tolerance in nonmyeloablative MHC-mismatched BMT for murine β-Thalassemia

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Abstract

Nonmyeloablative conditioning using total lymphoid irradiation (TLI) and rabbit antithymocyte serum (ATS) (the murine preclinical equivalent of antithymocyte globulin [ATG]) facilitates immune tolerance after bone marrow transplantation (BMT) across major histocompatibility complex (MHC) disparities and may be a useful strategy for nonmalignant disorders. We previously reported that donor effector T-cell function and graft-versus-host disease (GVHD) are regulated via recipient invariant natural killer T-cell (iNKT) interleukin-4-driven expansion of donor Foxp31 naturally occurring regulatory T cells (Tregs). This occurs via recipient iNKT-and STAT6-dependent expansion of recipient myeloid dendritic cells (MDCs) that induce contact-dependent expansion of donor Treg through PD-1/PD ligand signaling. After TLI/ATS1BMT,Gr-1lowCD11c1MDCs and Gr-1highCD11cneg myeloid-derived suppressor cells (MDSCs) were enriched in GVHD target organs. We now report that the recovery of both recipient MDSCs (P < .01) and MDCs (P < .001), conversion of MDSCs to PD ligand-expressing MDCs, and increased donor naturally occurring Treg recovery (P

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Shuyu, E., Seth, A., Vogel, P., Sommers, M., Ong, T., & Pillai, A. B. (2017). Bidirectional immune tolerance in nonmyeloablative MHC-mismatched BMT for murine β-Thalassemia. Blood, 129(22), 3017–3030. https://doi.org/10.1182/blood-2016-03-704387

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