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Selective and Sensitive Detection of Heavy Metal Ions in 100% Aqueous Solution and Cells with a Fluorescence Chemosensor Based on Peptide Using Aggregation-Induced Emission

机译:基于聚集诱导发射的基于肽的荧光化学传感器选择性和灵敏地检测100%水溶液和细胞中的重金属离子

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摘要

A fluorescent peptidyl chemosensor for the detection of heavy metal ions in aqueous solution as well as in cells was synthesized on the basis of the peptide receptor for the metal ions using an aggregation-induced emission fluorophore. The peptidyl chemosensor (1) bearing tetraphenylethylene fluorophore showed an exclusively selective turn-on response to, Hg2+ among 16 metal ions in aqueous buffered solution containing NaCl. The peptidyl chemosensor complexed Hg2+ ions and then aggregated in aqueous buffered solution, resulting in the significant enhancement (OFF-On) of emissions at around 470 nm. The fluorescent sensor showed a highly sensitive response to Hg2+, and about 1.0 equiv of Hg2+ was enough for the saturation of the emission intensity change. The detection limit (5.3 nM, R-2 = 0.99) of 1 for Hg2+ ions was lower than the maximum allowable level of He in drinking water by EPA. Moreover, the peptidyl chemosensor penetrated live cells and detected intracellular Hg2+ ions by the turn-on response.
机译:使用聚集诱导的发射荧光团,基于金属离子的肽受体,合成了用于检测水溶液和细胞中重金属离子的荧光肽基化学传感器。带有四苯基乙烯荧光团的肽基化学传感器(1)在含NaCl的缓冲水溶液中显示出对16种金属离子中Hg2 +的唯一选择性开启响应。肽基化学传感器使Hg2 +离子络合,然后聚集在缓冲水溶液中,导致大约470 nm处的发射显着增强(OFF-On)。荧光传感器对Hg2 +表现出高度敏感的响应,大约1.0当量的Hg2 +足以满足发射强度变化的饱和要求。 Hg2 +离子的检出限(5.3 nM,R-2 = 0.99)低于EPA中饮用水中He的最大允许水平。此外,肽基化学传感器穿透活细胞并通过开启响应检测到细胞内Hg2 +离子。

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