Cord blood-derived V<sub>δ</sub>2<sup>+</sup> and V<sub>δ</sub>2<sup>-</sup> T cells acquire differential cell state compositions upon in vitro expansion.

Ng, Jeremy Wee Kiat; Tan, Kar Wai; Guo, Dian Yan; Lai, Joey Jia Hui; Fan, Xiubo; Poon, Zhiyong; Lim, Tse Hui; Lim, Alvin Soon Tiong et al. · Sci Adv · 2023

basic_science · Level V

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Abstract

Human cord blood-derived γδ T cells (CB<sub>γδ</sub>) display a highly diverse TCR<sub>γδ</sub> repertoire and have a unique subtype composition different from fetal or adult peripheral blood counterparts. We expanded CB<sub>γδ</sub> in vitro using an irradiated Epstein-Barr virus-transformed feeder cell-based modified rapid expansion protocol (REP). Single-cell RNA sequencing tracked progressive differentiation of naïve CB<sub>γδ</sub> into cells expressing neoantigen-reactive tumor-infiltrating lymphocyte as well as tissue-resident memory precursor-like and antigen-presenting cell-like gene signatures. TCR<sub>γδ</sub> clonal tracing revealed a bias toward cytotoxic effector differentiation in a much larger proportion of V<sub>δ</sub>2<sup>-</sup> clones compared to V<sub>δ</sub>2<sup>+</sup> 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.

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