医学
癌症研究
放射治疗
癌症
免疫系统
癌症免疫疗法
免疫疗法
化疗
前列腺癌
细胞毒性
肿瘤细胞
细胞毒性T细胞
T淋巴细胞
T细胞
肿瘤
作者
Jiaxing Pan,Shun Zhang,Yuchentian Xu,Zhuoliang Li,Meiqin Luo,Zirui Peng,Aojia Jin,Bo Hou,Xiji Qin,Xingang Cui,Bruno G. De Geest,Yuanwen Chen,Zhiai Xu,Haijun Yu,Yi Lai
标识
DOI:10.1016/j.xcrm.2026.102709
摘要
Radiotherapy (RT)-induced senescent tumor cells (STCs) reinforce an immunosuppressive tumor microenvironment (ITM) and compromise therapeutic outcomes. However, current senolytic strategies lack specificity for STCs and often cause off-target toxicity. Here, we observe that STCs possess enhanced antigen-presenting capacity in patient-derived tumor tissues and murine tumor models. Leveraging this phenomenon, we engineer STC-derived nanovesicles (termed nano-APM) for preserving endogenous antigens and antigen-presenting cues. We demonstrate that systemically administered nano-APMs accumulate in the spleen and establish a pool of STC-specific CD8 + T cells. Sequential integration of RT induces local tumor senescence, and nano-APMs then effectively mobilize the STC-specific T cells to stimulate a confined recall response. In murine tumor models, the combination of nano-APM plus RT selectively eliminates STCs, reprograms RT-induced ITM, and elicits durable antitumor immunity. Collectively, this study establishes STC-derived nanovesicles as a practical means to enhance RT efficacy by enabling splenic T cell priming and spatiotemporally confined senolysis.
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