免疫原性细胞死亡
肿瘤微环境
程序性细胞死亡
免疫原性
电穿孔
线粒体
细胞内
癌症免疫疗法
癌症研究
癌细胞
细胞生物学
细胞凋亡
免疫系统
胞浆
癌症
化学
免疫疗法
细胞
线粒体融合
不可逆电穿孔
材料科学
嵌合抗原受体
癌症疫苗
线粒体分裂
抗原
内吞作用
T细胞
生物
生物物理学
溶瘤病毒
癌症治疗
作者
Yuxia Qi,Zichao Yu,Jie Zhang,Chi Zhang,Xiaoshuai Wang,Fan Yang,Yunlong Bai,Jun‐Xiao Yuan,Minghui Guo,Dawei WANG,Kaiwen Hu,Tian Zhou,L Wang,Wei Rao
标识
DOI:10.1002/adma.202520580
摘要
ABSTRACT Cancer vaccines face limitations due to the immunosuppressive tumor microenvironment (TME) and the low immunogenicity of tumor antigens. Immunogenic cell death (ICD), triggered by mitochondrial dysfunction, provides a promising strategy to enhance tumor antigen release and immune activation. However, actively amplifying mitochondrial damage‐induced ICD remains challenging. In this study, we developed a vaccine in which liquid metal nanoparticles (LMPs) target tumor cells, undergo self‐assembly and aggregation on the cell surface to achieve efficient uptake, fuse intracellularly to prolong retention, and release Ga 3+ ions through an iron‐substitution pathway to induce mitochondrial damage, thereby triggering ICD. In combination with irreversible electroporation (IRE), this approach mediates durable tumor‐specific immunotherapy. Specifically, LMPs target tumor cell integrin αvβ6 to initiate self‐assembly and aggregation, leading to efficient cellular internalization. Within the acidic lysosomal environment, LMPs undergo fusion and partially escape into the cytosol, enabling prolonged intracellular retention and sustained release of Ga 3+ ions. The released Ga 3+ disrupts mitochondrial structure and inhibits electron transport via iron substitution, resulting in pronounced mitochondrial damage. Synergistic IRE and LMPs increase the liberation of mitochondrial damage‐associated DAMPs and tumor antigens, driving robust ICD and long‐term systemic antitumor immunity. This dual‐modality strategy provides a blueprint for nanomaterial‐enabled amplification of ICD in cancer immunotherapy.
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