免疫系统
中子俘获
癌症研究
放射治疗
免疫疗法
硼
化学
免疫
医学
附带损害
放射化学
细胞
背向效应
材料科学
加药
免疫检查点
影像引导放射治疗
作者
Chang Chen,Chao Wang,Lin Zhang,Yue Yu,Xu Li,Wenhao Pan,Yuanyu Liu,J.H. Wang,Maosong Yang,Bing Hong,Xingguang Hu,Jichao Wang,Yuzhong Qian,Xiancai Meng,Yinghuai Zhu,Zhigang Liu,Shaobo Huang,Lizheng Liang,Jinhui Wu,Yang Liu
标识
DOI:10.1016/j.mtbio.2026.102904
摘要
Conventional radiotherapy compromises antitumor immunity through collateral damage to immune cells. While boron neutron capture therapy (BNCT) enables tumor-selective 10B (n, α) 7Li reactions, clinical agents like boronophenylalanine (BPA) suffer from excessive dosing and exhibit immune-metabolic inertia. We report a biomineralized albumin-based BNCT agent (Albumin@MnB) synthesized from clinically accessible borax, manganese, and albumin, which unlocks neutron capture-triggered immunotherapeutic activation. Albumin@MnB achieves potent tumor suppression at reduced boron doses, demonstrating superior efficacy compared with BPA. Importantly, Albumin@MnB enhances intratumoral immune cell infiltration and suppresses distant tumor growth, synergizing with adoptive T cell immunotherapy and immune checkpoint inhibitors. By integrating tumor-specific radiolytic energy deposition with metabolic reprogramming and immune activation, this strategy establishes boron neutron capture immunotherapy (BNCI) as a multimodal therapeutic paradigm that bridges targeted radiolysis with systemic antitumor immunity.
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