光毒性
光动力疗法
聚集诱导发射
系统间交叉
荧光
化学
抗真菌
超分子化学
光敏剂
光化学
组合化学
生物物理学
分子
激发态
纳米技术
生物化学
材料科学
生物
有机化学
微生物学
体外
物理
核物理学
单重态
量子力学
作者
Wenping Zhu,Ying Li,Shaoxun Guo,Wu‐Jie Guo,Tuokai Peng,Hui Li,Bin Liu,Hui‐Qing Peng,Ben Zhong Tang
标识
DOI:10.1038/s41467-022-34358-7
摘要
Fungal infection poses and increased risk to human health. Photodynamic therapy (PDT) as an alternative antifungal approach garners much interest due to its minimal side effects and negligible antifungal drug resistance. Herein, we develop stereoisomeric photosensitizers ((Z)- and (E)-TPE-EPy) by harnessing different spatial configurations of one molecule. They possess aggregation-induced emission characteristics and ROS, viz. 1O2 and O2-• generation capabilities that enable image-guided PDT. Also, the cationization of the photosensitizers realizes the targeting of fungal mitochondria for antifungal PDT killing. Particularly, stereoisomeric engineering assisted by supramolecular assembly leads to enhanced fluorescence intensity and ROS generation efficiency of the stereoisomers due to the excited state energy flow from nonradiative decay to the fluorescence pathway and intersystem (ISC) process. As a result, the supramolecular assemblies based on (Z)- and (E)-TPE-EPy show dramatically lowered dark toxicity without sacrificing their significant phototoxicity in the photodynamic antifungal experiments. This study is a demonstration of stereoisomeric engineering of aggregation-induced emission photosensitizers based on (Z)- and (E)-configurations.
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