Human cord blood-derived γδ T cells (CBγδ) display a highly diverse TCRγδ repertoire and have a unique subtype composition different from fetal or adult peripheral blood counterparts. We expanded CBγδ in vitro using an irradiated Epstein-Barr virus-transformed feeder cell-based modified rapid expansion protocol (REP). Singlecell RNA sequencing tracked progressive differentiation of naive CBγδ into cells expressing neoantigen-reactive tumor-infiltrating lymphocyte aswell as tissue-resident memory precursor-like and antigen-presenting cell-like gene signatures. TCRγδ clonal tracing revealed a bias toward cytotoxic effector differentiation in a much larger proportion of Vδ2- clones compared to Vδ2+ clones, resulting in the former being more cytotoxic at the population level. These clonotype-specific differentiation dynamics were not restricted to REP and were recapitulated upon secondary nonviral antigen stimulations. Thus, our data showed intrinsic cellular differences between major subtypes of human γδ T cells already in operation at early postnatal stage and highlighted key areas of consideration in optimizing cell manufacturing processes.
CITATION STYLE
Ng, J. W. K., Tan, K. W., Guo, D. Y., Lai, J. J. H., Fan, X., Poon, Z., … Cheung, A. M. S. (2023). Cord blood-derived Vδ2+ and Vδ2- T cells acquire differential cell state compositions upon in vitro expansion. Science Advances, 9(24). https://doi.org/10.1126/sciadv.adf3120
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