CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Integrating Three Functional Subsets of T Cell Immunity Into an Integrative Model for Cancer Immunotherapy.
Integrating Three Functional Subsets of T Cell Immunity Into an Integrative Model for Cancer Immunotherapy.
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当前癌症免疫治疗在很大程度上依赖于肿瘤抗原特异性T细胞(TASTs)。尽管检查点阻断重新定义了肿瘤学的治疗格局,但这种单一机制策略仍存在局限性,表现为随机性从头致敏和终末耗竭。高维单细胞数据揭示,肿瘤微环境是一个异质性免疫生态系统,其中病毒特异性T细胞(VSTs)和旁观者T细胞往往多于TASTs。我们提出一个基于三个功能亚群的整合模型:1)经典TASTs;2)通过病毒病因或分子模拟发挥TASTs作用的VSTs;3)代表非肿瘤依赖区室的旁观者T细胞。通过个体发生和转录程序来表征这些亚群,提示它们有潜力作为检查点抑制剂反应的预测性生物标志物,并可作为过继性细胞转移策略的不同平台。这解释了免疫冷肿瘤中的耐药机制,并指导机制上不同的治疗方法——从经典致敏到原位病毒激活以及现成细胞产品。
Current cancer immunotherapy relies heavily on tumor-Ag specific T cells (TASTs). While checkpoint blockade has redefined the therapeutic landscape of oncology, this single-mechanism strategy shows limitations from stochastic de novo priming and terminal exhaustion. High-dimensional single-cell data reveal the tumor microenvironment as a heterogeneous immune ecosystem where virus-specific T cells (VSTs) and bystander T cells often predominate over TASTs.
We propose an integrative model built on three functional subsets: 1) classical TASTs; 2) VSTs acting as TASTs via viral etiology or molecular mimicry; and 3) bystander T cells representing a tumor-independent compartment.
Characterizing these subsets by ontogeny and transcriptional programs suggests their potential utility as predictive biomarkers for checkpoint inhibitor responses and as distinct platforms for adoptive cell transfer strategies. This explains resistance mechanisms in immunologically cold tumors and guides mechanistically distinct therapeutic approaches-from classical priming to in situ viral activation and off-the-shelf cellular products.
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