免疫系统
癌症研究
免疫抑制
刺
细胞
上睑下垂
化学
医学
免疫原性细胞死亡
药物输送
免疫佐剂
免疫学
免疫疗法
机制(生物学)
环磷酰胺
程序性细胞死亡
半乳糖凝集素-1
信号转导
T细胞
氧化应激
亚临床感染
树突状细胞
药理学
作者
Zhicheng Zhang,Xiaoyan Sun,Yaxin Qin,Yimin Yang,Qi Dai,Xiaoyan Bao,Minoru Suzuki,Sheng Wang,Zai Yang,Zhifeng Li,Min Han,Da-Zhong Xu,Qichun Wei
标识
DOI:10.1186/s12951-025-03916-8
摘要
Boron Neutron Capture Therapy (BNCT) offers selective tumor cell ablation with minimal damage to normal tissues, but its efficacy is limited by therapy-induced immunosuppression and high intratumoral H2O2 levels, restricting synergy with immunotherapy. Here, we report BSA-BPA-MnO2, a tumor microenvironment-responsive, manganese-enriched nanoboron agent designed to overcome these barriers. This nanoplatform combines efficient boron delivery with Mn2+-driven Fenton-like catalysis and cGAS-STING pathway activation, amplifying BNCT-induced oxidative stress and inducing immunogenic pyroptosis alongside robust type I interferon signaling. This dual mechanism transforms BNCT from a local therapy into a systemic immune activator, enhancing dendritic cell maturation and CD8+ T cell responses. Additionally, MnO₂ enables MRI-guided BNCT, integrating diagnostics and therapeutics. Notably, the platform achieves potent tumor suppression and systemic immune activation even at subclinical boron levels, offering a promising strategy for next-generation immune-integrated BNCT, particularly against melanoma.
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