Abstract
Introduction. Current approaches are being developed for adoptive cancer therapy using T-cells genetically modified with T-cell receptors (TCRs) with specificity for tumor antigens. The complexities of identifying antigen-specific TCRs in a patient’s repertoire and selecting therapeutic receptors necessitate the development of experimental strategies for generating tumor-specific T cells. One of such approaches could be the xenogeneic immunization of mice with human tumor cells. It seems plausible that the T cell repertoire stimulated by xenogeneic vaccination could be a source of TCRs suitable for adoptive cancer immunotherapy.Aim. To assess the prospects for using xenogeneic immunizations to generate tumor-specific memory T cells and identify their TCRs suitable for adoptive immunotherapy, we studied the dynamics of the secondary xenogeneic response in a model of induction of an immune response in mice to human melanoma cells.Materials and methods. Mice were immunized with human melanoma cells, and 45 days later, they were re-challenged with the immunizing tumor. The dynamics of the development of the secondary immune response in vivo and the composition of the involved effectors of adaptive immunity were analyzed by flow cytometry. The proliferation of lymphocytes from immune mice in response to human melanoma cells was evaluated in in vitro culture.Results. The secondary xenogeneic response was characterized by a more intense accumulation of T cells and the rapid development of the effector phase at the injection site of human melanoma. This correlated with an enhanced in vitro proliferative response of lymphocytes from immune animals to xenoantigens of the immunizing tumor. CD4+ and CD8+ memory T cells contributed equally to the development of a secondary response to human melanoma cells expressing HLA class I and II molecules. When only HLA class I was expressed on the cells of the immunizing xenogeneic tumor, CD8+ memory cells were formed, which dominated the secondary immune response.Conclusion. Our findings confirmed the formation of a specific immunological memory for xenoantigens during xenogeneic immunization. This suggests the possibility of generating xenogeneic TCRs specific for human tumor antigens, which opens up opportunities to developing approaches for screening among them for receptor variants suited for adoptive immunotherapy of human cancers.
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