光敏剂
光动力疗法
化学
单线态氧
系统间交叉
光化学
缺氧(环境)
肿瘤缺氧
部分
共轭体系
组合化学
氧气
单重态
有机化学
激发态
放射治疗
核物理学
聚合物
内科学
物理
医学
作者
Wen Piao,Kenjiro Hanaoka,Tomotsumi Fujisawa,S. Takeuchi,Toru Komatsu,Tasuku Ueno,Takuya Terai,Tahei Tahara,Tetsuo Nagano,Yasuteru Urano
摘要
Photodynamic therapy (PDT) utilizes photoirradiation in the presence of photosensitizers to ablate cancer cells via generation of singlet oxygen (1O2), but it is important to minimize concomitant injury to normal tissues. One approach for achieving this is to use activatable photosensitizers that can generate 1O2 only under specific conditions. Here, we report a novel photosensitizer that is selectively activated under hypoxia, a common condition in solid tumors. We found that introducing an azo moiety into the conjugated system of a seleno-rosamine dye effectively hinders the intersystem crossing process that leads to 1O2 generation. We show that the azo group is reductively cleaved in cells under hypoxia, enabling production of 1O2 to occur. In PDT in vitro, cells under mild hypoxia, within the range typically found in solid tumors (up to about 5% O2), were selectively ablated, leaving adjacent normoxic cells intact. This simple and practical azo-based strategy should be widely applicable to design a range of activatable photosensitizers.
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