CAR T<sub>reg</sub> cells mediate linked suppression and infectious tolerance in islet transplantation in mice.

Wardell, Christine M; Fung, Vivian C W; Chen, Eleanor; Haque, Manjurul; Tan, David F H; Leca, Monica; Gillies, Jana; Spanier, Justin A et al. · Sci Transl Med · 2025

basic_science · Level V

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Abstract

Regulatory T cells (T<sub>reg</sub> cells) have potential as a cell-based therapy to prevent or treat transplant rejection and autoimmunity. Using a human leukocyte antigen (HLA)-A2-specific chimeric antigen receptor (A2-CAR), we previously showed that adoptive transfer of A2-CAR T<sub>reg</sub> cells can limit anti-HLA-A2 alloimmunity. However, it was unknown whether A2-CAR T<sub>reg</sub> cells could also limit immunity to autoantigens. Using a model of HLA-A2<sup>+</sup> islet transplantation into immunodeficient nonobese diabetic mice, we investigated whether A2-CAR T<sub>reg</sub> cells could control hyperglycemia induced by diabetogenic BDC2.5 effector T cells. In mice transplanted with HLA-A2<sup>+</sup> islets, A2-CAR T<sub>reg</sub> cells reduced BDC2.5 T cell engraftment, proliferation, and cytokine production and protected mice from diabetes. Islet tolerance was systemic, including protection of the HLA-A2<sup>negative</sup> endogenous pancreas. Treated mice remained euglycemic even after removal of the HLA-A2<sup>+</sup> islet graft and A2-CAR T<sub>reg</sub> cells. Thus, A2-CAR T<sub>reg</sub> cells can induce linked suppression and long-lasting tolerance to a distinct autoimmune antigen. Tolerance to the autoantigen does not require A2-CAR T<sub>reg</sub> persistence, indicating the presence of infectious tolerance. Overall, these data demonstrate that A2-CAR T<sub>reg</sub> cells have potential therapeutic use to simultaneously control both allo- and autoimmunity in islet transplantation.

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