癌症免疫疗法
免疫系统
癌症疫苗
树突状细胞
黑色素瘤
免疫疗法
癌症研究
肿瘤微环境
抗原
抗原呈递
抗原处理
肿瘤抗原
医学
刺
免疫原性细胞死亡
免疫学
癌症
交叉展示
生物
抗原提呈细胞
免疫
淋巴
癌细胞
免疫印迹
化学
TLR9型
体内
细胞外小泡
作者
Jun Liu,Jiaye Lu,Fengze Miao,Ling Wu,Le Ding,Tianyou Ma,Ru-Yi Wang,Han Yan,Zhen Cui,Zhongjian Chen,Zongguang Tai,QuanGang Zhu
标识
DOI:10.1016/j.jconrel.2025.114405
摘要
Dendritic cells (DCs) are essential for anti-tumor immunity through recognition of tumor-derived signals and antigens, yet their function is frequently compromised within the tumor microenvironment (TME), enabling immune evasion. Consequently, enhancing DC functionality represents a critical strategy for advancing tumor immunotherapy. The novel engineered biomimetic DC-derived vesicle vaccine, g-diDCVac, integrates the STING agonist diABZI and tumor antigen gp100. Designed for facile modification and enhanced stability, g-diDCVac effectively targets lymph nodes, promotes DC maturation, and elicits potent, antigen-specific T-cell responses. Western blot and ELISA analyses confirm g-diDCVac-driven bone marrow-derived dendritic cell (BMDC) maturation via STING pathway activation. Transcriptomic and proteomic analyses further demonstrate that STING activation triggers downstream cascades, including NF-κB, JAK-STAT, and antigen processing and presentation pathways. Significantly, in therapeutic and prophylactic melanoma models, g-diDCVac stimulates robust in vivo immune responses, remodels the immunosuppressive TME, markedly suppresses tumor progression, and extends survival. These findings establish the therapeutic potential of this DC vesicle vaccine and support DC extracellular vesicle-based nanovaccines for cancer immunotherapy, providing compelling rationale for developing enhanced cancer vaccines.
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