光动力疗法
电离辐射
放射治疗
激进的
光化学
氧气
荧光
半导体
材料科学
闪烁体
辐射
紫外线
化学
光敏剂
辐照
光电子学
光学
医学
物理
外科
有机化学
核物理学
探测器
作者
Chen Zhang,Kuaile Zhao,Wenbo Bu,Dalong Ni,Yanyan Liu,Jingwei Feng,Jianlin Shi
标识
DOI:10.1002/anie.201408472
摘要
Abstract Strong oxygen dependence and limited penetration depth are the two major challenges facing the clinical application of photodynamic therapy (PDT). In contrast, ionizing radiation is too penetrative and often leads to inefficient radiotherapy (RT) in the clinic because of the lack of effective energy accumulation in the tumor region. Inspired by the complementary advantages of PDT and RT, we present herein the integration of a scintillator and a semiconductor as an ionizing‐radiation‐induced PDT agent, achieving synchronous radiotherapy and depth‐insensitive PDT with diminished oxygen dependence. In the core–shell Ce III ‐doped LiYF 4 @SiO 2 @ZnO structure, the downconverted ultraviolet fluorescence from the Ce III ‐doped LiYF 4 nanoscintillator under ionizing irradiation enables the generation of electron–hole (e − –h + ) pairs in ZnO nanoparticles, giving rise to the formation of biotoxic hydroxyl radicals. This process is analogous to a type I PDT process for enhanced antitumor therapeutic efficacy.
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