单细胞追踪揭示黑色素瘤 TIL 治疗过程中肿瘤反应性 T 细胞的可塑性
Single-cell tracking reveals tumor-reactive T cell plasticity during melanoma TIL therapy.
TIL(肿瘤浸润淋巴细胞)过继细胞治疗可在转移性黑色素瘤中诱导持久缓解,然而在体外扩增过程中及回输后,调控肿瘤反应性T细胞命运的克隆和转录动态仍知之甚少。
英文原题:Engineering T Cells with a Tumor-Reactive Chimeric T-cell Receptor Reduces Exhaustion and Promotes Persistence to Elicit Enhanced Antitumor Responses.
Engineering T Cells with a Tumor-Reactive Chimeric T-cell Receptor Reduces Exhaustion and Promotes Persistence to Elicit Enhanced Antitumor Responses.
未标注:近期FDA批准了首个T细胞受体工程化(TCR)T细胞癌症疗法,巩固了该疗法作为一种可行的治疗策略。
未经标记:FDA最近批准了首个T细胞受体工程化(TCR)T细胞癌症疗法,巩固了该疗法作为一种可行治疗策略的地位。然而,只有一部分接受该治疗的患者获得了实质性和持久的缓解,这凸显了理解这些缓解的分子基础并开发更有效策略以改进该疗法的必要性。既往研究表明,肿瘤特异性T细胞中髓样分化初级反应88(MyD88)信号的激活作为一种强效共刺激信号通路,可促进有效的抗肿瘤T细胞反应。在本研究中,我们开发了一种改进TCR T细胞疗法的策略,即构建一种合成TCR,将CD3的胞内结构域和一种修饰的MyD88附加到肿瘤反应性TCR的链上。:CD3 :MyD88 TCR以肿瘤抗原/TCR特异性方式激活MyD88信号,:CD3 :MyD88 TCR T细胞表现出增强的功能和较低的耗竭倾向。此外,MyD88信号在体外促进了T细胞的持久性和扩增。在体内,肿瘤浸润的:CD3 :MyD88 TCR T细胞将免疫抑制性肿瘤微环境向免疫抑制较少的状态转变。最后,:CD3 :MyD88 TCR T细胞在黑色素瘤模型中显著延缓了肿瘤生长动力学。这些发现提出了一种通过将信号结构域直接附加到全长TCR上来改善TCR依赖性T细胞反应的方法,并例证了在肿瘤特异性T细胞中激活MyD88信号的效用。意义:一种嵌合 :CD3 :MyD88 TCR 可减少耗竭并改善抗肿瘤 T 细胞反应,从而克服当前 TCR 工程化 T 细胞癌症疗法疗效有限的问题。
UNLABELLED: The recent FDA approval of the first T-cell receptor-engineered (TCR) T-cell cancer therapy has solidified the treatment as a viable therapeutic strategy. However, only a fraction of patients who received this treatment achieved substantial and long-lasting responses, highlighting the need to understand the molecular underpinnings of these responses and develop more effective strategies to improve this therapy. Previous research has demonstrated that the activation of myeloid differentiation primary response 88 (MyD88) signaling in tumor-specific T cells functions as a robust costimulatory signaling pathway that promotes effective antitumor T-cell responses. In this study, we developed a strategy for improving TCR T-cell therapies by creating a synthetic TCR in which the intracellular domain of CD3 and a modified MyD88 are appended to the -chain of a tumor-reactive TCR. The :CD3 :MyD88 TCR activated MyD88 signaling in a tumor antigen/TCR-specific manner, and :CD3 :MyD88 TCR T cells exhibited enhanced functionality and a reduced propensity to become exhausted. Furthermore, MyD88 signaling promoted T-cell persistence and expansion in vitro. In vivo, tumor-infiltrating :CD3 :MyD88 TCR T cells skewed the immunosuppressive tumor microenvironment toward a less immunosuppressive state. Finally, :CD3 :MyD88 TCR T cells substantially delayed tumor growth kinetics in a melanoma model. These findings introduce an approach for improving TCR-dependent T-cell responses by directly appending signaling domains to the full-length TCR and exemplify the utility of activating MyD88 signaling in tumor-specific T cells. SIGNIFICANCE: A chimeric :CD3 :MyD88 TCR reduces exhaustion and improves antitumor T-cell responses, overcoming the limited efficacy of current TCR-engineered T-cell cancer therapies.
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