CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:IFNγ-Induced PD-L1+MHCII+ Macrophages and Tim-3+ Tumor-Reactive CD8+ T Cells Predict a Response to Anti-PD-1 Therapy in Tumor-Bearing Mice.
IFNγ-Induced PD-L1+MHCII+ Macrophages and Tim-3+ Tumor-Reactive CD8+ T Cells Predict a Response to Anti-PD-1 Therapy in Tumor-Bearing Mice.
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尽管免疫检查点抑制剂已在多种癌症类型中诱导出持久缓解,但相当一部分患者对这些干预措施无应答。为揭示与免疫治疗阳性应答相关的潜在因素,我们使用了在DBA/2小鼠中植入P815肥大细胞瘤的双侧肿瘤模型。在该模型中,仅一部分荷瘤小鼠对anti-PD-1治疗产生应答。
因此,该模型为探索肿瘤微环境(TME)在决定基于免疫检查点阻断的免疫治疗疗效中的作用提供了有价值的工具。它还允许对治疗前肿瘤进行分析,并基于对侧肿瘤中观察到的应答推断其治疗结局。
在本研究中,我们报道,表达高水平Tim-3的肿瘤反应性CD8+ T细胞克隆与anti-PD-1给药后的阳性抗肿瘤应答相关。
我们的研究还揭示了应答小鼠和无应答小鼠中肿瘤浸润髓系细胞存在不同的分化动态。在免疫治疗应答小鼠中,富含IFNγ的TME促进单核细胞分化为PD-L1posMHCIIhigh细胞。无应答小鼠TME中存在的单核细胞未能达到分化轨迹的同一终末阶段,提示单核细胞向巨噬细胞分化的途径改变可能阻碍对免疫检查点阻断的应答。这些见解将引导未来研究对肿瘤相关巨噬细胞进行时间维度分析,旨在识别负责TME内分化状态之间转换的因素。这种方法可能为增强PD-1阻断疗效的新策略铺平道路。
Although immune checkpoint inhibitors have led to durable responses in various cancer types, a substantial proportion of patients do not respond to these interventions. To uncover potential factors associated with a positive response to immunotherapy, we used a bilateral tumor model with P815 mastocytoma implanted in DBA/2 mice. In this model, only a fraction of tumor-bearing mice responds to anti-PD-1 treatment.
Thus, it provides a valuable model to explore the influence of the tumor microenvironment (TME) in determining the efficacy of immune checkpoint blockade-based immunotherapies. It also allows for the analysis of a pretreatment tumor and inference of its treatment outcome based on the response observed in the contralateral tumor. In this study, we report that tumor-reactive CD8+ T-cell clones expressing high levels of Tim-3 are associated with a positive antitumor response following anti-PD-1 administration.
Our study also revealed distinct differentiation dynamics in tumor-infiltrating myeloid cells in responding and nonresponding mice. An IFNγ-enriched TME promoted the differentiation of monocytes into PD-L1posMHCIIhigh cells in mice responding to immunotherapy. Monocytes present in the TME of nonresponding mice failed to reach the same final stage of differentiation trajectory, suggesting that an altered monocyte-to-macrophage differentiation route may hamper the response to immune checkpoint blockade.
These insights will direct future research toward a temporal analysis of tumor-associated macrophages, aiming to identify factors responsible for transitions between differentiation states within the TME. This approach may pave the way for novel strategies to enhance the efficacy of PD-1 blockade.
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