Key result
Standard-dose TNX-1500 prolongs cardiac allograft survival to >265 days vs low-dose regimens in nonhuman primates.
Why the study?
Blockade of the CD40/CD154 T cell costimulation pathway is a promising approach in solid organ transplantation, motivating evaluation of the tolerability and activity of TNX-1500.
Does TNX-1500 prolong allograft survival and prevent rejection in a nonhuman primate cardiac transplant model?
Does TNX-1500 prolong allograft survival and prevent rejection in a nonhuman primate cardiac transplant model?
p-value: p=<0.05
TNX-1500 safely prolongs cardiac allograft survival and prevents chronic rejection without thrombotic complications in a nonhuman primate model, suggesting potential as a novel immunosuppressive therapy.
Preclinical survival data support advancing TNX-1500 to human trials; leaves open translation to clinical cardiac transplantation.
Blockade of the CD40/CD154 T cell costimulation pathway is a promising approach to supplement or replace current clinical immunosuppression in solid organ transplantation. We evaluated the tolerability and activity of a novel humanized anti-CD154 monoclonal antibody, TNX-1500 (TNX), in a nonhuman primate heterotopic cardiac allogeneic (allo) transplant model. TNX-1500 contains a rupluzimab fragment antigen-binding region and an immunoglobin G4 crystallizable fragment region engineered to reduce binding to the crystallizable fragment gamma receptor IIa and associated risks of thrombosis. Recipients were treated for 6 months with standard-dose TNX (sTNX) monotherapy, low-dose TNX monotherapy (loTNX), or loTNX with mycophenolate mofetil (MMF) (loTNX + MMF). Results were compared with historical data using chimeric humanized 5c8 monotherapy dosed as for loTNX but discontinued at 3 months. Median survival time was similar for humanized 5c8 and both loTNX groups, but significantly longer with sTNX (>265 days) than with loTNX (99 days) or loTNX + MMF (88 days) (P < 0.05 for both comparisons against sTNX). Standard-dose TNX prevented antidonor alloantibody elaboration, inhibited chronic rejection, and was associated with a significantly reduced effector T cells/regulatory T cells ratio relative to loTNX with MMF. No thrombotic complications were observed. This study demonstrated that TNX was well tolerated, prolongs allograft survival, and prevents alloantibody production and cardiac allograft vasculopathy in a stringent preclinical nonhuman primate heart allotransplant model.
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Miura et al. (2023) studied Cardiac allogeneic transplant. TNX-1500 (TNX) vs. Historical data using chimeric humanized 5c8 monotherapy was evaluated on Median survival time (p=<0.05). Standard-dose TNX-1500 significantly prolonged median cardiac allograft survival (>265 days) compared to low-dose TNX (99 days) or low-dose TNX with MMF (88 days) in nonhuman primates (P<0.05).
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