抗辐射性
纳米载体
一氧化氮
放射治疗
化学
癌症研究
纳米颗粒
辐照
DNA损伤
DNA
活性氧
缺氧(环境)
纳米医学
生物物理学
提拉帕扎明
肿瘤缺氧
毒性
氧气
辐射敏感性
氧气增强率
纳米技术
DNA修复
辐射
作者
Wei Zhang,Xiaoyan Yin,Ting Wang,Hongfu Zhao,Zhipeng Zhao,Yi-Xiang Wang,Cheng Tao,Xuanchu Ge,Y J Li,Linlin Liu,Fuxin Xue
标识
DOI:10.1002/advs.202518233
摘要
Nitric oxide (NO) treated radioresistant tumors by relieving hypoxia and blocking DNA repair, but its nonselective toxicity has precluded therapeutic use. Here, we introduce a radioresistant tumor-selective NO nanogenerator that releases NO exclusively within the irradiated field. We identified BNN6 as a uniquely radiosensitive NO donor and loaded it into Glucose-Regulated Protein 78 (GRP78)-targeted nanocarrier to obtain PBTN, exploiting the overexpression of GRP78 in radioresistant cancers for selective accumulation. Upon irradiation, BNN6 undergoes one-electron reduction to release NO exclusively within the irradiated volume. NO combines radiation-induced reactive oxygen species to form peroxynitrite, provoking tumor DNA breaks while simultaneously suppressing DNA repair. In CT26 tumor-bearing mice, the combination of radiotherapy with PBTN and anti-PDL1 antibody achieved a tumor growth suppression of 96.5% and 80% survival at 40 days post-treatment. This tumor-targeted, irradiation-triggered NO nanogenerator thus offers a safe, precise, and translatable strategy to overcome radioresistance.
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