Pilot Study of Delayed ICOS/ICOS-L Blockade With alpha CD40 to Modulate Pathogenic Alloimmunity in a Primate Cardiac Allograft Model
TRANSPLANTATION DIRECT
Authors: O'Neill, Natalie A.; Zhang, Tianshu; Braileanu, Gheorghe; Cheng, Xiangfei; Hershfeld, Alena; Sun, Wenji; Reimann, Keith A.; Dahi, Sia; Kubicki, Natalia; Hassanein, Wessam; Laird, Christopher; Cimeno, Arielle; Azimzadeh, Agnes M.; Pierson, Richard N.
Abstract
Background. Inducible costimulator (ICOS) is rapidly upregulated with T-cell stimulation andmay represent an escape pathway for T-cell costimulation in the setting of CD40/CD154 costimulation blockade. Induction treatment exhibited no efficacy in a primate renal allograft model, but rodent transplant models suggest that the addition of delayed ICOS/ICOS-L blockade may prolong allograft survival and prevent chronic rejection. Here, we ask whether ICOS-Ig treatment, timed to anticipate ICOS upregulation, prolongs NHP cardiac allograft survival or attenuates pathogenic alloimmunity. Methods. Cynomolgusmonkey heterotopic cardiac allograft recipients were treated with alpha CD40 (2C10R4, d0-90) either alone or with the addition of delayed ICOS-Ig (d63-110). Results. Median allograft survival was similar between ICOS-Ig + alpha CD40 (120 days, 120-125 days) and alpha CD40 (124 days, 89-178 days) treated animals, and delayed ICOS-Ig treatment did not prevent allograft rejection in animals with complete CD40 receptor coverage. Although CD4(+) T-EM cells were decreased in peripheral blood (115 +/- 24) and mLNs (49 +/- 1.9%) during ICOS-Ig treatment compared with monotherapy (214 +/- 27%, P = 0.01; 72 +/- 9.9%, P = 0.01, respectively), acute and chronic rejection scores and kinetics of alloAb elaboration were similar between groups. Conclusions. Delayed ICOS-Ig treatment with the reagent tested is probably ineffective in modulating pathogenic primate alloimmunity in this model.
Regulatory T cell expressed MyD88 is critical for prolongation of allograft survival
TRANSPLANT INTERNATIONAL
Authors: Borges, Christopher M.; Reichenbach, Dawn K.; Kim, Beom Seok; Misra, Aditya; Blazar, Bruce R.; Turka, Laurence A.
Abstract
MyD88 signaling directly promotes T-cell survival and is required for optimal T-cell responses to pathogens. To examine the role of T-cell-intrinsic MyD88 signals in transplantation, we studied mice with targeted T-cell-specific MyD88 deletion. Contrary to expectations, we found that these mice were relatively resistant to prolongation of graft survival with anti-CD154 plus rapamycin in a class II-mismatched system. To specifically examine the role of MyD88 in Tregs, we created a Treg-specific MyD88-deficient mouse. Transplant studies in these animals replicated the findings observed with a global T-cell MyD88 knockout. Surprisingly, given the role of MyD88 in conventional T-cell survival, we found no defect in the survival of MyD88-deficient Tregs in vitro or in the transplant recipients and also observed intact cell homing and expression of Treg effector molecules. MyD88-deficient Tregs also fail to protect allogeneic bone marrow transplant recipients from chronic graft-versus-host disease, confirming the observations of defective regulation seen in a solid organ transplant system. Together, our data define MyD88 as having a divergent requirement for cell survival in non-Tregs and Tregs, and a yet-to-be defined survival-independent requirement for Treg function during the response to alloantigen.