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Human HLA-DR+CD27+ regulatory T cells show enhanced antigen-specific suppressive function
Xiaoqian Ma, Lu Cao, Martina Raneri, Hannah Wang, Qi Cao, Yuanfei Zhao, Naiara G. Bediaga, Gaetano Naselli, Leonard C. Harrison, Wayne J. Hawthorne, Min Hu, Shounan Yi, Philip J. O’Connell
Xiaoqian Ma, Lu Cao, Martina Raneri, Hannah Wang, Qi Cao, Yuanfei Zhao, Naiara G. Bediaga, Gaetano Naselli, Leonard C. Harrison, Wayne J. Hawthorne, Min Hu, Shounan Yi, Philip J. O’Connell
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Research Article Immunology Transplantation

Human HLA-DR+CD27+ regulatory T cells show enhanced antigen-specific suppressive function

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Abstract

Regulatory T cells (Tregs) have potential for the treatment of autoimmune diseases and graft rejection. Antigen specificity and functional stability are considered critical for their therapeutic efficacy. In this study, expansion of human Tregs in the presence of porcine PBMCs (xenoantigen-expanded Tregs, Xn-Treg) allowed the selection of a distinct Treg subset, coexpressing the activation/memory surface markers HLA-DR and CD27 with enhanced proportion of FOXP3+Helios+ Tregs. Compared with their unsorted and HLA-DR+CD27+ double-positive (DP) cell–depleted Xn-Treg counterparts, HLA-DR+CD27+ DP-enriched Xn-Tregs expressed upregulated Treg function markers CD95 and ICOS with enhanced suppression of xenogeneic but not polyclonal mixed lymphocyte reaction. They also had less Treg-specific demethylation in the region of FOXP3 and were more resistant to conversion to effector cells under inflammatory conditions. Adoptive transfer of porcine islet recipient NOD/SCID IL2 receptor γ–/– mice with HLA-DR+CD27+ DP-enriched Xn-Tregs in a humanized mouse model inhibited porcine islet graft rejection mediated by 25-fold more human effector cells. The prolonged graft survival was associated with enhanced accumulation of FOXP3+ Tregs and upregulated expression of Treg functional genes, IL10 and cytotoxic T lymphocyte antigen 4, but downregulated expression of effector Th1, Th2, and Th17 cytokine genes, within surviving grafts. Collectively, human HLA-DR+CD27+ DP-enriched Xn-Tregs expressed a specific regulatory signature that enabled identification and isolation of antigen-specific and functionally stable Tregs with potential as a Treg-based therapy.

Authors

Xiaoqian Ma, Lu Cao, Martina Raneri, Hannah Wang, Qi Cao, Yuanfei Zhao, Naiara G. Bediaga, Gaetano Naselli, Leonard C. Harrison, Wayne J. Hawthorne, Min Hu, Shounan Yi, Philip J. O’Connell

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Figure 2

HLA-DR and/or CD27 expression within Xn-Tregs at different stimulation times and their FOXP3 and Helios expression.

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HLA-DR and/or CD27 expression within Xn-Tregs at different stimulation t...
(A) The proportion of Xn-Tregs expressing HLA-DR or CD27 after gating on CD4+ cells after round (week) 1, 2, and 3 of stimulation. (B) The proportions of HLA-DR+CD27–, HLA-DR+CD27+, HLA-DR–CD27+, HLA-DR–CD27– subsets within Xn-Tregs (after gating on CD4+ cells) following round 1, 2, and 3 of stimulation. The numbers in the corners represent the percentage of cells in each quadrant. (C) The representative flow cytometric plots and the percentage of FOXP3+Helios+ cells on HLA-DR+CD27+ DP-enriched Xn-Tregs following rounds 1, 2, and 3 of stimulation (after gating on HLA-DR+CD27+ cells) and the proportion of FOXP3+Helios+ cells in Fresh-Tregs, total Xn-Tregs, and HLA-DR+CD27+ DP-enriched Xn-Tregs. Data represent 3 independent experiments with Treg from 5 individual donors. Error bars indicate the mean ± SD. One-way ANOVA: *P < 0.05, **P < 0.01, and ***P < 0.001.

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