抗原
启动(农业)
抗原呈递
免疫学
癌症研究
癌症
T细胞
生物
抗原提呈细胞
癌症疫苗
细胞
树突状细胞
癌症免疫疗法
免疫系统
免疫疗法
肿瘤相关抗原
内生
肿瘤抗原
免疫
抗原处理
肿瘤细胞
抑制器
细胞毒性T细胞
细胞生物学
交叉展示
医学
淋巴系统
作者
Siyu Zhao,Tianzi Shi,Tianyi Tian,Fangming Zhang,Zitong Zhang,Zitong Zhang,Hongbo Xu,Yixuan Zhou,Zhaojing Qin,Zhaojing Qin,Pengwen Xu,Conglian Yang,Zhiping Zhang,Zhiping Zhang
标识
DOI:10.1073/pnas.2604171123
摘要
Dendritic cell (DC) vaccines offer professional antigen presentation but are often limited by suboptimal trafficking to lymphoid tissues, whereas whole tumor cell vaccines preserve antigenic diversity yet frequently lack coordinated activation cues for efficient T cell priming. Here, we report OncoAPC, an inactivated artificial antigen-presenting cell designed around a triple-signal priming logic: MHC-I-mediated antigen presentation (signal 1), CD80-mediated costimulation (signal 2) with checkpoint-insulating capacity, and incorporated IL-12 (signal 3). Mechanistically, OncoAPC directly activated T cells while partially insulating against PD-1 suppression through cis CD80:PD-L1 interactions and simultaneously engaged endogenous DCs to relay tumor antigens via cross-dressing and amplify lymphoid priming. Across multiple tumor models, OncoAPC showed broad therapeutic activity, including marked suppression of metastatic tumor burden and substantial control of established tumors, outperforming conventional DC vaccination. It further retained efficacy beyond the MC38 backbone and remained active when generated from human tumor cells or excised tumor-derived material. These findings establish OncoAPC as a scalable, broad-spectrum cancer vaccine platform that integrates antigenic diversity with DC-like functional precision.
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