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Linked sensitization by memory CD4+ T cells prevents costimulation blockade–induced transplantation tolerance
Michael S. Andrade, James S. Young, Jared M. Pollard, Dengping Yin, Maria-Luisa Alegre, Anita S. Chong
Michael S. Andrade, James S. Young, Jared M. Pollard, Dengping Yin, Maria-Luisa Alegre, Anita S. Chong
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Research Article Immunology Transplantation

Linked sensitization by memory CD4+ T cells prevents costimulation blockade–induced transplantation tolerance

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Abstract

Dominant infectious tolerance explains how brief tolerance-inducing therapies result in lifelong tolerance to donor antigens and “linked” third-party antigens, while recipient sensitization and ensuing immunological memory prevent the successful induction of transplant tolerance. In this study, we juxtapose these 2 concepts to test whether mechanisms of dominant infectious tolerance can control a limited repertoire of memory T and B cells. We show that sensitization to a single donor antigen is sufficient to prevent stable transplant tolerance, rendering it unstable. Mechanistic studies revealed that recall antibody responses and memory CD8+ T cell expansion were initially controlled, but memory CD4+Foxp3– T cell (Tconv) responses were not. Remarkably, naive donor-specific Tconvs at tolerance induction also acquired a resistance to tolerance, proliferating and acquiring a phenotype similar to memory Tconvs. This phenomenon of “linked sensitization” underscores the challenges of reprogramming a primed immune response toward tolerance and identifies a potential therapeutic checkpoint for synergizing with costimulation blockade to achieve transplant tolerance in the clinic.

Authors

Michael S. Andrade, James S. Young, Jared M. Pollard, Dengping Yin, Maria-Luisa Alegre, Anita S. Chong

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Figure 3

Unstable tolerance is associated with the accumulation of memory 2W:I-Ab Tconvs and reduced expansion of memory 2W:I-Ab Tregs.

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Unstable tolerance is associated with the accumulation of memory 2W:I-Ab...
(A and B) Number of 2W:I-Ab CD4+ Tconvs recovered per mouse (at least n = 6 per group) from (A) spleen and lymph nodes on HTx POD 0, 30, and 60 or (B) transplanted allograft POD 30. (C) Number of 2W:I-Ab CD4+ Tconvs recovered from spleen and lymph nodes/mouse inversely correlates with graft palpation scores assessed on POD 60. (D and E) Number of 2W:I-Ab Tregs recovered per mouse from (D) spleen and lymph nodes on HTx POD 0, 30, and 60 or (E) transplanted allograft POD 30. (F) Number of 2W:I-Ab Tregs recovered from the spleen and lymph nodes/mouse does not correlate with graft palpation scores at POD 60. (G and H) Percentage Tregs of 2W:I-Ab CD4+ from (G) the spleen and lymph nodes on POD 0, 30, and 60 or (H) transplanted allograft POD 30. (I) Percentage of Tregs of 2W:I-Ab T cells recovered from the spleen and lymph nodes/mouse correlates with graft palpation scores at POD 60. Each symbol represents a single mouse, and each experiment was repeated 2–3 times (n = 4–5 mice per group). Data are presented as mean ± STDEV, and statistical significance was assessed by 2-way ANOVA and Tukey’s multiple comparisons test (A, D, and G) or Welch’s t test (B, E, and H) *P < 0.05, **P < 0.01, ***P < 0.001, ****P < 0.0001, or by simple linear correlation (C, F, and I).

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ISSN 2379-3708

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