光毒性
光动力疗法
光敏剂
化学
活性氧
体内
单线态氧
限制
癌症研究
体外
光化学
氧气
医学
生物化学
有机化学
机械工程
生物
工程类
生物技术
作者
Jianwu Tian,Bowen Li,Fu Zhang,Zhuo Yao,Wentao Song,Yufu Tang,Ping Yuan,Bin Liu
标识
DOI:10.1002/ange.202307288
摘要
Abstract The phototoxicity of photosensitizers (PSs) pre and post photodynamic therapy (PDT), and the hypoxic tumor microenvironment are two major problems limiting the application of PDT. While activatable PSs can successfully address the PS phototoxicity pre PDT, and type I PS can generate reactive oxygen species (ROS) effectively in hypoxic environment, very limited approaches are available for addressing the phototoxicity post PDT. There is virtually no solution available to address all these issues using a single design. Herein, we propose a proof‐of‐concept on‐demand switchable photosensitizer with quenched photosensitization pre and post PDT, which could be activated only in tumor hypoxic environment. Particularly, a hypoxia‐normoxia cycling responsive type I PS TPFN‐AzoCF 3 was designed to demonstrate the concept, which was further formulated into TPFN‐AzoCF 3 nanoparticles (NPs) using DSPE‐PEG‐2000 as the encapsulation matrix. The NPs could be activated only in hypoxic tumors to generate type I ROS during PDT treatment, but remain non‐toxic in normal tissues, pre or after PDT, thus minimizing side effects and improving the therapeutic effect. With promising results in in vitro and in vivo tumor treatment, this presented strategy will pave the way for the design of more on‐demand switchable photosensitizers with minimized side effects in the future.
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