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Pure Organic AIE Nanoscintillator for X-ray Mediated Type I and Type II Photodynamic Therapy

Yu, Yuewen; Xiang, Lisha; Zhang, Xuanwei; Zhang, Le; Ni, Zhiqiang; Zhu, Zhong-Hong; Liu, Yubo; Lan, Jie; Liu, Wei; Xie, Ganfeng*; Feng, Guangxue*; Tang, Ben Zhong*
SCIENSL
third mil med univ; 湖南大学; chinese univ hong kong; sichuan univ
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摘要

X-ray induced photodynamic therapy (X-PDT) circumvents the poor penetration depth of conventional PDT with minimal radio-resistance generation. However, conventional X-PDT typically requires inorganic scintillators as energy transducers to excite neighboring photosensitizers (PSs) to generate reactive oxygen species (ROS). Herein, a pure organic aggregation-induced emission (AIE) nanoscintillator (TBDCR NPs) that can massively generate both type I and type II ROS under direct X-ray irradiation is reported for hypoxia-tolerant X-PDT. Heteroatoms are introduced to enhance X-ray harvesting and ROS generation ability, and AIE-active TBDCR exhibits aggregation-enhanced ROS especially less oxygen-dependent hydroxyl radical (HO & BULL;-, type I) generation ability. TBDCR NPs with a distinctive PEG crystalline shell to provide a rigid intraparticle microenvironment show further enhanced ROS generation. Intriguingly, TBDCR NPs show bright near-infrared fluorescence and massive singlet oxygen and HO & BULL;- generation under direct X-ray irradiation, which demonstrate excellent antitumor X-PDT performance both in vitro and in vivo. To the best of knowledge, this is the first pure organic PS capable of generating both O-1(2) and radicals (HO & BULL;-) in response to direct X-ray irradiation, which shall provide new insights for designing organic scintillators with excellent X-ray harvesting and predominant free radical generation for efficient X-PDT.

关键词

aggregation-induced emissionorganic scintillatorsphotodynamic therapyradiotherapyX-ray induced photodynamic therapy (X-PDT)

出版信息

论文状态
公开发表
期刊名称
Advanced Science
发表日期
2023-9
卷
10
期
26
页码
-
DOI
10.1002/advs.202302395

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