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Engineering γδT cells limits tonic signaling associated with chimeric antigen receptors

嵌合抗原受体 细胞毒性T细胞 T细胞 细胞生物学 生物 T细胞受体 信号转导 抗原 抗原提呈细胞 免疫学 癌症研究 免疫系统 体外 生物化学
作者
Jonathan Fisher,Roshan Sharma,Dilu Wisidagamage Don,Marta Barisa,Marina Ollé Hurtado,Pierre Abramowski,Lucy Porter,William Day,Roberto Borea,Sarah Inglott,John Anderson,Dana Pe’er
出处
期刊:Science Signaling [American Association for the Advancement of Science (AAAS)]
卷期号:12 (598) 被引量:40
标识
DOI:10.1126/scisignal.aax1872
摘要

Despite the benefits of chimeric antigen receptor (CAR)-T cell therapies against lymphoid malignancies, responses in solid tumors have been more limited and off-target toxicities have been more marked. Among the possible design limitations of CAR-T cells for cancer are unwanted tonic (antigen-independent) signaling and off-target activation. Efforts to overcome these hurdles have been blunted by a lack of mechanistic understanding. Here, we showed that single-cell analysis with time course mass cytometry provided a rapid means of assessing CAR-T cell activation. We compared signal transduction in expanded T cells to that in T cells transduced to express second-generation CARs and found that cell expansion enhanced the response to stimulation. However, expansion also induced tonic signaling and reduced network plasticity, which were associated with expression of the T cell exhaustion markers PD-1 and TIM-3. Because this was most evident in pathways downstream of CD3ζ, we performed similar analyses on γδT cells that expressed chimeric costimulatory receptors (CCRs) lacking CD3ζ but containing DAP10 stimulatory domains. These CCR-γδT cells did not exhibit tonic signaling but were efficiently activated and mounted cytotoxic responses in the presence of CCR-specific stimuli or cognate leukemic cells. Single-cell signaling analysis enabled detailed characterization of CAR-T and CCR-T cell activation to better understand their functional activities. Furthermore, we demonstrated that CCR-γδT cells may offer the potential to avoid on-target, off-tumor toxicity and allo-reactivity in the context of myeloid malignancies.
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