γδ T 细胞调节小细胞肺癌中的抗肿瘤免疫
γδ T cells modulate anti-tumor immunity in small cell lung cancer.
我们的发现表明,活化的γδ T 细胞可能是 SCLC 治疗的有价值靶点。
英文原题:Harnessing the potential of γδ T cells through engineering and combination treatment for cancer therapies.
Harnessing the potential of γδ T cells through engineering and combination treatment for cancer therapies.
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γδT 细胞占循环 T 细胞的 1-10%,在肠道和皮肤等屏障组织中进一步富集,并且也是淋巴应激监视的重要组成部分。
γδT细胞占循环T细胞的1-10%,在肠道和皮肤等屏障组织中进一步富集,同时也是淋巴应激监视的重要组成部分。γδT细胞作为αβT细胞之外的癌症免疫治疗替代方案,正日益受到重视。这种受欢迎程度可能归因于多种因素,包括γδT激活的MHC非依赖性,这使其区别于αβT细胞,并构成了其缺乏同种异体反应性的基础。在这篇综述中,我们描述了优化γδT细胞作为癌症免疫治疗潜力的努力。我们讨论了疾病负荷对疗效的影响,以及未修饰γδT细胞在哪些情况下成功或未能产生持久应答。最后,我们探讨了增强γδT细胞疗效的选择,包括与其他治疗的联合以及利用其效力的工程化策略。
γδT cells comprise 1-10% of circulating T cells, are further enriched in barrier tissues such as the gut and skin, and also form a critical component of lymphoid stress surveillance. γδ T cells have been gaining prominence as an alternative to αβ T cells for cancer immunotherapy. Such popularity may be attributed to multiple factors including the MHC-independent nature of γδ T activation, which differentiates them from αβ T cells and underlies their lack of alloreactivity. In this Review, we describe efforts to optimize the potential of γδ T cells as a cancer immunotherapeutic. We discuss the impact of disease burden on efficacy and the contexts in which unmodified γδ T cells have succeeded or failed to yield durable responses. Finally, we explore options for enhancing γδ T cell efficacy including combinations with other treatments and engineering strategies to capitalize on their potency.
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