光动力疗法
单线态氧
四苯乙烯
肿瘤微环境
辐照
光敏剂
化学
缺氧(环境)
氧气
PEG比率
荧光
生物物理学
光化学
癌症研究
肿瘤细胞
聚集诱导发射
有机化学
光学
生物
核物理学
经济
物理
财务
作者
Jianhua Zou,Jianwei Zhu,Zhèn Yáng,Ling Li,Wenpei Fan,Liangcan He,Wei Tang,Liming Deng,Jing Mu,Yuanyuan Ma,Yaya Cheng,Wei Huang,Xiaochen Dong,Xiaohong Chen
标识
DOI:10.1002/anie.201914384
摘要
Abstract Continuous irradiation during photodynamic therapy (PDT) inevitably induces tumor hypoxia, thereby weakening the PDT effect. In PDT‐induced hypoxia, providing singlet oxygen from stored chemical energy may enhance the cell‐killing effect and boost the therapeutic effect. Herein, we present a phototheranostic (DPPTPE@PEG‐Py NPs) prepared by using a 2‐pyridone‐based diblock polymer (PEG‐Py) to encapsulate a semiconducting, heavy‐atom‐free pyrrolopyrrolidone‐tetraphenylethylene (DPPTPE) with high singlet‐oxygen‐generation ability both in dichloromethane and water. The PEG‐Py can trap the 1 O 2 generated from DPPTPE under laser irradiation and form a stable intermediate of endoperoxide, which can then release 1 O 2 in the dark, hypoxic tumor microenvironment. Furthermore, fluorescence‐imaging‐guided phototherapy demonstrates that this phototheranostic could completely inhibit tumor growth with the help of laser irradiation.
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