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Two-photon sensitive protecting groups operating via intramolecular electron transfer: uncaging of GABA and tryptophan

机译:通过分子内电子转移起作用的双光子敏感保护基团:GABA和色氨酸的解封

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摘要

Improved photo-labile protecting groups, with high sensitivity to two-photon excitation, are needed for the controlled release of drugs, as tools in neuroscience and physiology. Here we present a new modular approach to the design of caging groups based on photoinduced electron transfer from an electron-rich two-photon dye to an electron acceptor, followed by scission of an ester to release a carboxylic acid. Three different electron acceptors were tested: nitrobenzyl, phenacyl and pyridinium. The nitrobenzyl system was ineffective, giving only photochemical decomposition and no release of the carboxylic acid. The phenacyl system also performed poorly, liberating the carboxylic acid in 20% chemical yield and 0.2% photochemical yield. The pyridinium system was most successful, and was tested for the release of two carboxylic acids: γ-amino butyric acid (GABA) and tryptophan. The caged GABA undergoes photochemical cleavage with a chemical yield of >95% and a photochemical yield of 1%; it exhibits a two-photon absorption cross section of 1100 GM at 700 nm, corresponding to a two-photon uncaging cross section of 10 ± 3 GM.
机译:作为神经科学和生理学的工具,控释药物需要改善的对光不稳定的保护基团,对双光子激发具有高敏感性。在这里,我们基于笼罩基团的设计提出了一种新的模块化方法,该方法基于从富电子的双光子染料到电子受体的光诱导电子转移,然后切断酯以释放出羧酸。测试了三种不同的电子受体:硝基苄基,苯甲酰基和吡啶鎓。硝基苄基体系无效,仅产生光化学分解而没有羧酸释放。苯甲酰系统的性能也很差,以20%的化学收率和0.2%的光化学收率释放出羧酸。吡啶鎓体系最成功,并测试了两种羧酸的释放:γ-氨基丁酸(GABA)和色氨酸。笼中的GABA进行光化学裂解,化学收率> 95%,光化学收率1%。它在700 nm处表现出1100 GM的双光子吸收截面,对应于10±3 GM的双光子解开截面。

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