肿瘤微环境
抗辐射性
化学
DNA损伤
癌细胞
光热治疗
癌症研究
细胞内
生物物理学
癌症免疫疗法
细胞凋亡
线粒体
程序性细胞死亡
免疫疗法
分泌物
体外
共轭体系
免疫原性细胞死亡
材料科学
干扰素基因刺激剂
T细胞
黑色素瘤
刺
细胞生物学
放射免疫疗法
细胞
铜
生物化学
DNA
生物
作者
Ying Sun,Shipeng Dai,Zhaoyang Zhao,Xiulin Dong,Zikun Yu,Weiwei Tang,Guoqiang Shao,Quli Fan,Pengfei Sun
摘要
ABSTRACT Radioresistance and the immunosuppressive tumor microenvironment (ITME) present formidable challenges in cancer radioimmunotherapy. Herein, we report a multifunctional nanotheranostic platform ( 1 2 5 I/Cu/BCP@HA) that integrates radiotherapy with delivery of copper ions, aiming to induce cuproptosis and mitochondrial DNA (mtDNA) release to amplify cGAS‐STING pathway activation. The 1 2 5 I/Cu/BCP@HA is constructed from an NIR‐II‐excitable hyperbranched conjugated polymer that is co‐assembled with 1 2 5 I and Cu 2 O via tyrosine coordination. Upon dual stimulation by the acidic TME and NIR‐II laser irradiation, the platform responsively releases copper ions and 1 2 5 I. The liberated copper ions deplete intracellular glutathione, catalyze hydroxyl radical generation, and trigger mitochondrial dysfunction, culminating in cuproptosis accompanied by mtDNA release. Concurrently, the platform exerts potent radiosensitizing effects, further amplifying the sustained nuclear DNA (nucDNA) damage induced by 1 2 5 I. The combined release of mtDNA and nucDNA fragments synergistically activates the cGAS‐STING pathway, promoting type I interferon secretion and immunogenic cell death (ICD). This coordinated response facilitates dendritic cell maturation, augments CD4 + /CD8 + T cell infiltration, and reverses TME immunosuppression, demonstrating robust antitumor efficacy both in vitro and in vivo. This work establishes a novel nanotheranostic strategy that synergistically integrates radiotherapy, photothermal therapy, cuproptosis, and STING pathway activation for enhanced cancer radioimmunotherapy.
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