The clinical successes of chimeric antigen receptor (CAR) T cells represent a major shift in immunotherapy. However, there is also increasing emphasis on potential long-term effects of CAR T cell therapy, especially using preclinical xenogeneic models. It has been previously demonstrated that only naïve, and not memory, peripheral blood human T cells can mediate a rapid and acute xenogeneic graft-versus-host disease (xenoGVHD). Here, we demonstrate that simply by altering the donor T cells in the process of generating CAR T cells, in which they are all memory phenotype, that the xenoGVHD outcome was markedly altered. Following tumor clearance with CAR T cell administration, we observed a significantly delayed (up to 200 days post-transfer with some donors) occurrence of lethal xenoGVHD, marked by profound scleroderma and multi-organ pathology consistent with chronic, not acute, GVHD. Notably, this novel chronic xenoGVHD occurred in the absence of B cells, which are classically associated with mediating chronic GVHD pathology. TCR-repertoire constriction during disease and the lack of disease using MHCI/II double-knockout NSG recipient mice confirmed the observed pathology was xenoGVHD and mediated by human-TCR:murine-MHC interactions. Interestingly, despite the consistent expansion of CAR-positive T cells during early tumor-clearance, a later emergence of CAR-negative populations during xenoGVHD also resulted. Our findings highlight xenoGVHD as a problem that makes long-term assessment of CAR T efficacy or toxicity highly problematic in xenograft models due to the artefact of xenoreactivity which is not representative of autologous clinical usage, and the profound effect that T cell alterations have in GVHD pathophysiology.
BACKGROUND
Acute graft-versus-host disease (aGvHD) remains a major complication after allogeneic hematopoietic cell transplantation (alloHCT). Adoptive regulatory T-cell (Treg) therapy may suppress alloreactive T-cell responses, but clinical implementation has been limited by donor-specific manufacturing, prolonged ex...
A. Tuettenberg, L. Ruhnke, J. Schlöder et al.· Transplantation and Cellular...· 0 citations
A focused Perspective asks whether GvHD directed engineering has made clinically significant product-associated GvHD rare and whether allogeneic CAR-T must reduce donor-to-host alloreactivity while managing the distinct host-versus-graft barrier.
Nabeel Ahmed, Jawaria Jabeen· Transplantation and Cellular...· 0 citations
In vivo CAR-T is poised to broaden the reach of cellular immunotherapy, provided that its development is guided by rigorous pharmacology, chemistry, manufacturing and controls, and long-term molecular safety surveillance.
Wan-Ting Wang, Yujia Cai, Xuanming Yang et al.· Immunity & Inflammation· 0 citations
Results affirm PLZF overexpression as a viable, programmable approach for GVHD prophylaxis, poised for clinical advancement and hold promise for revolutionizing allo-HSCT by decoupling immune tolerance from antitumor immunity.
Jake Cox, Dhruti Patel, Steven Montecinos Montes et al.· Journal of Immunology· 0 citations
Emerging strategies to ameliorate GVHD without attenuating GVL, including intensified local therapy, selective trafficking blockade, S1PR modulators that limit pathogenic T-cell migration, and tissue-protective agents that enhance epithelial regeneration and prevent the establishment of inflammatory memory are summariz...
Yumika Saito, D. Hashimoto· [Rinsho ketsueki] The Japane...· 0 citations
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