Engineered antigen-specific human regulatory T cells: immunosuppression of FVIII-specific T- and B-cell responses

工程抗原特异性人类调节性 T 细胞:FVIII 特异性 T 细胞和 B 细胞反应的免疫抑制

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作者:Yong Chan Kim, Ai-Hong Zhang, Yan Su, Sadiye Amcaoglu Rieder, Robert J Rossi, Ruth A Ettinger, Kathleen P Pratt, Ethan M Shevach, David W Scott

Abstract

Expansion of human regulatory T cells (Tregs) for clinical applications offers great promise for the treatment of undesirable immune responses in autoimmunity, transplantation, allergy, and antidrug antibody responses, including inhibitor responses in hemophilia A patients. However, polyclonal Tregs are nonspecific and therefore could potentially cause global immunosuppression. To avoid this undesirable outcome, the generation of antigen-specific Tregs would be advantageous. Herein, we report the production and properties of engineered antigen-specific Tregs, created by transduction of a recombinant T-cell receptor obtained from a hemophilia A subject's T-cell clone, into expanded human FoxP3(+) Tregs. Such engineered factor VIII (FVIII)-specific Tregs efficiently suppressed the proliferation and cytokine production of FVIII-specific T-effector cells. Moreover, studies with an HLA-transgenic, FVIII-deficient mouse model demonstrated that antibody production from FVIII-primed spleen cells in vitro were profoundly inhibited in the presence of these FVIII-specific Tregs, suggesting potential utility to treat anti-FVIII inhibitory antibody formation in hemophilia A patients.

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