化学
生物正交化学
试剂
组合化学
替代(逻辑)
生物物理学
化学合成
单线态氧
纳米技术
氧气
生物系统
反应条件
药物输送
动力学
光化学
辅因子
拓扑异构酶
基质(水族馆)
作者
Orsolya Ember,Krisztina Németh,Dóra Kern,Attila Kormos,Péter Kele,Márton Bojtár
摘要
Photocages provide excellent spatiotemporal control over biological processes; however, strategies to restrict their activation to specific conditions remain limited. In this work, we demonstrate that our recently introduced photocages based on the aminofluorone (rhodol) choromophore can be rendered completely inactive through a single substitution on the oxygen auxochrome. These 'camouflaged' photocages are entirely colorless, preventing photouncaging in their disabled state. Bioorthogonal removal of the camouflaging group restores the photoactivity of the cages, introducing an additional layer of control for photoassisted delivery systems. We further demonstrate this concept of substitution-dependent, bioorthogonally regulated photoactivation in a cellular context, where both a bioorthogonal reagent and light were required to release a potent topoisomerase inhibitor, SN38.
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