CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Spatiotemporal dynamics of adoptively transferred stem-like CD8(+) T cells in the tumor microenvironment following vaccination.
Spatiotemporal dynamics of adoptively transferred stem-like CD8(+) T cells in the tumor microenvironment following vaccination.
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肿瘤特异性T细胞的过继细胞治疗(ACT)可提高部分癌症患者的生存率。目前的ACT方法可能受限于使用高度分化的T细胞,这类细胞可被免疫抑制性肿瘤微环境(TME)所抑制。在此,我们开发了一种优化ACT的方法,并利用空间转录组学展示了干细胞样和效应CD8+ T细胞在疫苗接种后如何以不同方式介导肿瘤控制。TME的空间转录组谱分析显示,使用干细胞样T细胞进行ACT后联合静脉疫苗接种可防止免疫排斥,增加促炎性巨噬细胞的浸润,并重编程肿瘤细胞以上调I型和II型IFN信号通路及凋亡基因程序。该ACT模型中TME的保护性转录组特征包含与对ACT治疗有应答的患者重叠的生物标志物。该方法证明了过继转移的干细胞样T细胞与静脉疫苗接种之间的协同作用,可对TME进行转录重塑并增强肿瘤控制。
Adoptive cell therapy (ACT) of tumor-specific T cells can improve survival in a subset of cancer patients. Current ACT approaches may be limited by using highly differentiated T cells which can be inhibited by an immunosuppressive tumor microenvironment (TME).
Here, we developed an approach to optimize ACT and used spatial transcriptomics to show how stem-like and effector CD8 + T cells differentially mediate tumor control following vaccination. Spatial transcriptomic profiling of the TME showed that ACT with stem-like T cells followed by intravenous vaccination prevented immune exclusion, increased infiltration of pro-inflammatory macrophages, and reprogrammed tumor cells to upregulate Type I and Type II IFN signaling and apoptotic gene programs.
The protective transcriptomic signature of the TME in this ACT model contained overlapping biomarkers with patients who responded to ACT therapy. This approach demonstrates synergy between transferred stem-like T cells and intravenous vaccination to transcriptionally remodel the TME and enhance tumor control.
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