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Fluorescent Ensemble Based on Bispyrene Fluorophore and Surfactant Assemblies: Sensing and Discriminating Proteins in Aqueous Solution

机译:基于双芴荧光团和表面活性剂组合的荧光体:感知和区分水溶液中的蛋白质

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摘要

A particular bispyrene fluorophore (1) with two pyrene moieties covalently linked via a hydrophilic spacer was synthesized. Fluorescence measurements reveal that the fluorescence emission of 1 could be well modulated by a cationic surfactant, dodecyltrimethylammonium bromide (DTAB). Protein sensing studies illustrate that the selected ensemble based on 1/DTAB assemblies exhibits ratiometric responses to nonmetalloproteins and turn-off responses to metalloproteins, which can be used to differentiate the two types of proteins. Moreover, negatively charged nonmetalloproteins can be discriminated from the positively charged ones according to the difference in ratiometric responses. Fluorescence sensing studies with control bispyrenes indicate that the polarity of the spacer connecting two pyrene moieties plays an important role in locating bispyrene fluorophore in DTAB assemblies, which further influences its sensing behaviors to noncovalent interacting proteins. This study sheds light on the influence of the probe structure on the sensing performance of a fluorescent ensemble based on probe and surfactant assemblies.
机译:合成了具有通过亲水性间隔基共价连接的两个pyr部分的特定双py荧光团(1)。荧光测量结果表明,阳离子表面活性剂十二烷基三甲基溴化铵(DTAB)可以很好地调节1的荧光发射。蛋白质感测研究表明,基于1 / DTAB装配体选择的集合表现出对非金属蛋白的比例响应和对金属蛋白的关闭响应,可用于区分两种类型的蛋白。此外,根据比例响应的差异,可以将带负电荷的非金属蛋白与带正电荷的非金属蛋白区分开。对照双吡咯的荧光传感研究表明,连接两个pyr部分的间隔基的极性在DTAB组件中双吡咯荧光团的定位中起着重要作用,这进一步影响了其对非共价相互作用蛋白的传感行为。这项研究揭示了探针结构对基于探针和表面活性剂组装的荧光团簇的传感性能的影响。

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