肿瘤微环境
免疫系统
癌症研究
免疫检查点
免疫疗法
癌症免疫疗法
纳米囊
材料科学
佐剂
串扰
封锁
免疫原性细胞死亡
癌症
生物
启动(农业)
癌细胞
免疫学
T细胞
获得性免疫系统
免疫原性
无容量
作者
Xiaoyan Qin,Yushu Wang,Yunhao Feng,Hongxia Yuan,Lin Tang,Feifei Li,Zheng Cao,Guang Chen,Ming Zhang,Jing Wen,Chaoyong Liu,Yunfeng Lu
标识
DOI:10.1002/adma.202522016
摘要
Durable responses to cancer immunotherapy require both robust antitumor immunity and sustained immune pressure within the immunosuppressive tumor microenvironment (TME). Chemotherapeutics can induce transient immune priming and modulate TME features but are limited by unpredictable immune response durations and systemic toxicity when combined with immunotherapy. To overcome these challenges, we develop a programmable delivery platform integrating chemotherapeutics and immune checkpoint blockade within a silk fibroin hydrogel containing pH-responsive nanocapsules for controlled temporal release at tumor sites. Leveraging molecular weight differences, the small chemotherapeutic oxaliplatin rapidly diffuses to initiate tumor-intrinsic immunogenic stress, while the larger anti-PD-L1 nanocapsules undergo gradual degradation in the TME, enabling sustained checkpoint engagement. This strategy converts non-immunogenic tumor cells into a heightened immunogenic state, modulates key immune features of the TME, and supports durable antitumor responses and long-term central memory T cell persistence in a murine breast tumor model. Our findings demonstrate that this multifunctional platform, combining chemotherapy-induced immunogenic stress with controlled checkpoint blockade, offers a generalizable approach for designing next-generation chemo-immunotherapy combinations in cancer treatment.
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