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首页> 外文期刊>Angewandte Chemie >Marriage of Scintillator and Semiconductor for Synchronous Radiotherapy and Deep Photodynamic Therapy with Diminished Oxygen Dependence
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Marriage of Scintillator and Semiconductor for Synchronous Radiotherapy and Deep Photodynamic Therapy with Diminished Oxygen Dependence

机译:闪烁体与半导体的结合,用于同步放疗和氧依赖性降低的深层光动力疗法

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摘要

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 LiYF4@SiO2@ZnO structure, the downconverted ultraviolet fluorescence from the Ce-III-doped LiYF4 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 typeI PDT process for enhanced antitumor therapeutic efficacy.
机译:强烈的氧气依赖性和有限的渗透深度是光动力疗法(PDT)临床应用面临的两个主要挑战。相反,电离辐射的渗透性太强,并且由于在肿瘤区域缺乏有效的能量积累,常常导致临床上无效的放射治疗(RT)。受PDT和RT互补优势的启发,本文介绍了闪烁体和半导体的集成,作为电离辐射诱导的PDT剂,实现了同步放疗和对氧的依赖性降低的对深度不敏感的PDT。在核-壳掺杂铈III的LiYF4 @ SiO2 @ ZnO结构中,掺杂Ce-III的LiYF4纳米闪烁体在电离辐射下向下转换的紫外荧光使得能够生成电子空穴(e(-)-h(+) )在ZnO纳米颗粒中成对存在,从而形成生物毒性的羟基自由基。该过程类似于用于增强抗肿瘤治疗功效的I型PDT过程。

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