前列腺癌
癌症研究
刺
恶性肿瘤
骨转移
材料科学
体内
医学
转移
癌症
活性氧
细胞凋亡
光热治疗
免疫系统
免疫疗法
纳米医学
前列腺
离体
下调和上调
细胞毒性
肿瘤微环境
癌细胞
双膦酸盐
氧化铁纳米粒子
作者
Shaowei Wang,Yixuan Hou,Yì Wáng,Jin Li,Chengwu Zhang,Ruihan Gao,Lihong Li,Haojiang Wang,Bin Wang,Lixia Guo,Sufang Ma,Boye Zhang,Guodong Ren,Wen Liu,Lili Yan
标识
DOI:10.1002/adfm.202525679
摘要
ABSTRACT Prostate cancer, the most prevalent urogenital malignancy in males, presents clinical challenges due to its bone metastatic propensity and therapeutic resistance. While the cGAS‐STING pathway is an immunotherapeutic target, the physicochemical instability and poor tumor targeting still limit its clinical application. Although transition metal‐based nanodrugs have emerged as potential STING activators, conventional nickel oxide nanoparticles exhibit inadequate immunomodulatory efficacy. To address these limitations, a carbon‐supported nickel oxide nanodrug (C@NiO x ) using atomic layer deposition (ALD) technology was developed in this study. The self‐limiting surface reactions inherent to ALD enable precise dimensional control of nickel‐based nanostructures, while the chemical bonding at the carbon‐metal oxide interface enhances interfacial electron transfer properties, thereby optimizing both catalytic performance and reactive oxygen species (ROS) production efficiency. In vitro and in vivo studies confirm that the C@NiO x nanodrug effectively inhibits primary tumor growth and metastatic dissemination while alleviating cancer‐induced bone pain through a dual mechanism involving ROS‐dependent immunogenic cell death and potent STING pathway activation. This ALD‐based nanotherapeutic strategy establishes a new paradigm for prostate cancer treatment by simultaneously targeting malignant progression and modulating the immunosuppressive bone microenvironment.
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