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'Quinone-phenol' transduction activated excited-state intramolecular proton transfer: A new strategy toward ratiometric fluorescent probe for sulfite in living cells

机译:“醌-苯酚”转导活化态分子内质子转移:活细胞中亚硫酸盐配比荧光探针的新策略

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摘要

2-(2'-Hydroxyphenyl) benzothiazoles (HBT) are well-known excited-state intramolecular proton transfer (ESIPT) molecules and have been ingeniously elaborated for fluorescent probes construction. However, most of HBT-based ratiometric fluorescent probes are based on the phenolic hydroxyl (-OH) protection/deprotection strategy. In this work, we integrate the pi-conjugation interruption reaction and the "quinone phenol" transduction-activated ESIPT within a benzothiazole-containing rhodol derivative (1), and develop a ratiometric fluorescent probe for sulfite. Upon treating with sulfite, the pi-conjugation system of 1 was interrupted and the "quinone phenol" transduction occurred simultaneously, which leads to the ESIPT process between the phenolic OH and benzothiazole unit upon photoexcitation. The above conversions result in the decrease of the emission band at 578 nm along with a concomitant increase of a new fluorescence peak at 453 nm. The fluorescent intensity (I-453/I-578) increases linearly with sulfite concentration up to 8 mu M with a detection of 0.22 mu M (38). The proposed probe shows excellent selectivity toward sulfite over other common anions and nucleophiles. Moreover, the cellular imaging experiment indicated probe 1 possesses low cytotoxicity and desirable cell permeability for biological applications. (C) 2015 Elsevier Ltd. All rights reserved.
机译:2-(2'-羟基苯基)苯并噻唑(HBT)是众所周知的激发态分子内质子转移(ESIPT)分子,并且经过精心设计,可用于荧光探针的构建。但是,大多数基于HBT的比例荧光探针均基于酚羟基(-OH)保护/脱保护策略。在这项工作中,我们将pi偶联中断反应和“醌苯酚”转导激活的ESIPT整合在含苯并噻唑的rhodol衍生物(1)中,并开发了用于亚硫酸盐的比例荧光探针。经亚硫酸盐处理后,1的pi共轭体系被中断,“醌酚”的转导同时发生,在光激发下导致酚OH和苯并噻唑单元之间的ESIPT过程。上述转化导致在578nm处发射带的减少以及在453nm处新的荧光峰的伴随增加。荧光强度(I-453 / I-578)在亚硫酸盐浓度高达8μM时线性增加,检出率为0.22μM(38)。提出的探针对亚硫酸盐的选择性优于其他常见阴离子和亲核试剂。此外,细胞成像实验表明探针1具有低细胞毒性和生物学应用所需的细胞通透性。 (C)2015 Elsevier Ltd.保留所有权利。

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