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化疗诱导卵巢癌中髓系驱动的空间局限性T细胞耗竭。

Chemotherapy induces myeloid-driven spatially confined T cell exhaustion in ovarian cancer.

作者信息

Launonen Inga-Maria, Niemiec Iga, Hincapié-Otero María, Erkan Erdogan Pekcan, Junquera Ada, Afenteva Daria, Falco Matias M, Liang Zhihan, Salko Matilda, Chamchougia Foteini, Szabo Angela, Perez-Villatoro Fernando, Li Yilin, Micoli Giulia, Nagaraj Ashwini, Haltia Ulla-Maija, Kahelin Essi, Oikkonen Jaana, Hynninen Johanna, Virtanen Anni, Nirmal Ajit J, Vallius Tuulia, Hautaniemi Sampsa, Sorger Peter K, Vähärautio Anna, Färkkilä Anniina

机构信息

Research Program in Systems Oncology, University of Helsinki, Helsinki, Finland.

Research Program in Systems Oncology, University of Helsinki, Helsinki, Finland; Department of Obstetrics and Gynecology, Department of Oncology, Clinical Trials Unit, Comprehensive Cancer Center, Helsinki University Hospital, Helsinki, Finland.

出版信息

Cancer Cell. 2024 Dec 9;42(12):2045-2063.e10. doi: 10.1016/j.ccell.2024.11.005.

Abstract

Anti-tumor immunity is crucial for high-grade serous ovarian cancer (HGSC) prognosis, yet its adaptation upon standard chemotherapy remains poorly understood. Here, we conduct spatial and molecular characterization of 117 HGSC samples collected before and after chemotherapy. Our single-cell and spatial analyses reveal increasingly versatile immune cell states forming spatiotemporally dynamic microcommunities. We describe Myelonets, networks of interconnected myeloid cells that contribute to CD8 T cell exhaustion post-chemotherapy and show that M1/M2 polarization at the tumor-stroma interface is associated with CD8 T cell exhaustion and exclusion, correlating with poor chemoresponse. Single-cell and spatial transcriptomics reveal prominent myeloid-T cell interactions via NECTIN2-TIGIT induced by chemotherapy. Targeting these interactions using a functional patient-derived immuno-oncology platform demonstrates that high NECTIN2-TIGIT signaling in matched tumors predicts responses to immune checkpoint blockade. Our discovery of clinically relevant myeloid-driven spatial T cell exhaustion unlocks immunotherapeutic strategies to unleash CD8 T cell-mediated anti-tumor immunity in HGSC.

摘要

抗肿瘤免疫对高级别浆液性卵巢癌(HGSC)的预后至关重要,但其在标准化疗后的适应性仍知之甚少。在此,我们对化疗前后收集的117份HGSC样本进行了空间和分子特征分析。我们的单细胞和空间分析揭示了形成时空动态微群落的免疫细胞状态越来越多样化。我们描述了髓系网络,即相互连接的髓系细胞网络,其导致化疗后CD8 T细胞耗竭,并表明肿瘤-基质界面处的M1/M2极化与CD8 T细胞耗竭和排除相关,与化疗反应不佳相关。单细胞和空间转录组学揭示了化疗诱导的通过NECTIN2-TIGIT的显著髓系-T细胞相互作用。使用功能性患者来源的免疫肿瘤学平台靶向这些相互作用表明,匹配肿瘤中高NECTIN2-TIGIT信号预示着对免疫检查点阻断的反应。我们对临床相关的髓系驱动的空间T细胞耗竭的发现为释放HGSC中CD8 T细胞介导的抗肿瘤免疫的免疫治疗策略提供了可能。

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