CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Adoptive transfer of IL-4 reprogrammed Tc17 cells elicits anti-tumour immunity through functional plasticity.
Adoptive transfer of IL-4 reprogrammed Tc17 cells elicits anti-tumour immunity through functional plasticity.
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产生IL-17的CD8+ T细胞(Tc17)能够转化为细胞毒性抗肿瘤效应细胞,这使其成为免疫效应细胞(IEC)治疗的有前景的候选者。
然而,调控Tc17重编程的关键因素仍不明确,阻碍了基于Tc17的IEC应用从基础到临床的转化。我们探究了多种细胞因子及潜在信号通路对Tc17细胞的影响,并发现IL-4和PI3K/AKT在促进Tc17转化为产生IFN-γ的细胞毒性IEC中发挥关键作用,该效应依赖于Eomes的表达。IL-4不仅触发了Tc17的细胞毒性,还诱导了细胞扩增,与产生IFN-γ的CD8+ T细胞(Tc1)相比,这显著提高了Tc17细胞在小鼠模型中的抗肿瘤潜力。
此外,IL-4/AKT信号驱动Tc17细胞中T细胞受体相关跨膜衔接蛋白1(Trat1)的上调,从而促进IL-4诱导的T细胞受体稳定化和Tc17细胞毒性。
最后,我们提出了一种可能的方案,从癌症患者外周血中扩增人Tc17细胞,并证实了IL-4在Tc17重编程中的功能。总之,这些结果记录了一条新的IL-4/AKT/Eomes/Trat1轴,该轴促进Tc17细胞的扩增和向具有治疗潜力的细胞毒性效应细胞的转化。IL-4预处理Tc17细胞应作为细胞治疗工程策略进一步探索,以生成IEC来增强抗肿瘤反应。
Ability of IL-17-producing CD8 + T cells (Tc17) to transform into cytotoxic anti-tumour effectors makes them a promising candidate for immune effector cell (IEC) therapy.
However, key factors regulating Tc17 reprogramming remain poorly defined, hindering translation of Tc17-based IEC use from bench to bedside.
We probed the effects of multiple cytokines and underlying signalling pathways on Tc17 cells and identified pivotal role for IL-4 and PI3K/AKT in promoting Tc17 transformation into cytotoxic IFN-γ-producing IECs, an effect dependent on Eomes expression. IL-4 not only triggered Tc17 cytotoxicity, but also induced cell expansion, which significantly improved the antitumour potential of Tc17 cells compared to that of IFN-γ-producing CD8 + T cells (Tc1) in a murine model.
Furthermore, IL-4/AKT signalling drove the upregulation of the T-cell receptor-associated transmembrane adaptor 1 (Trat1) in Tc17 cells to promote IL-4-induced T-cell receptor stabilization and Tc17 cytotoxicity.
Finally, we proposed a possible procedure to expand human Tc17 from peripheral blood of cancer patients, and confirmed the function of IL-4 in Tc17 reprogramming. Collectively, these results document a novel IL-4/AKT/Eomes/Trat1 axis that promotes expansion and transformation of Tc17 cells into cytotoxic effectors with a therapeutic potential. IL-4 priming of Tc17 cells should be further explored as a cell therapy engineering strategy to generate IECs to augment anti-tumour responses.
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