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首页> 外文期刊>Spectrochimica acta, Part A. Molecular and biomolecular spectroscopy >Fabricating multifunctional low-toxicity ratiometric fluorescent probe for individual detection of Cu2+/glutamate and continuous sensing for glutamate via Cu2+-based platform
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Fabricating multifunctional low-toxicity ratiometric fluorescent probe for individual detection of Cu2+/glutamate and continuous sensing for glutamate via Cu2+-based platform

机译:用于各个检测Cu2 + /谷氨酸的多功能低毒性比率荧光探针,并通过Cu2 +基于平台进行谷氨酸的连续感测

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摘要

Herein, a multifunctional ratiometric fluorescent (RF) probe Fe-MIL-88NH(2)@RhB was fabricated for individual detection of Cu2+/Glu and continuous sensing of Glu based on unique coordination principle by encapsulating RhB into the porous of metal-organic-framework-Fe-MIL-88NH(2). Designed Fe-MIL88NH(2)@RhB platform could selectively identify Cu(II)/Glu accompanying a turn-off/turn-on fluorescent behavior with good linearity. Moreover, if the Fe-MIL-88NH(2)@RhB/Cu2+ is treated with Glu continuously, the quenching fluorescence of this platform (after Cu2+ sensing at blue emission) would be further in turn restored. Utilizing Fe-MIL-88NH(2)@RhB probe, the imaging of intracellular Cu(II) and Glu in living A549 cells was successful conducted through divisional channels with a satisfactory low cytotoxicity, meanwhile, the sensing results of Glu in serum by the molecular logic gate was also superior, which may use for development of an medical occupational tool for amyotrophic lateral sclerosis tentative diagnosis. In addition, the MOF shows di-modal response (color and lumescence) to Cu2+ and Glu with excellent selectivity against a wide range of other interference analytes, and the corresponding portable lowtoxicity on-line test strips for Cu2+ and Glu recognize has exhibited a remarkable visually chromogenic phenomena, which may utilize for monitoring these contaminants in real water sample. Finally, the feasibility of probe to monitor Cu2+ and Glu in foodstuffs was also evaluated. (C) 2021 Elsevier B.V. All rights reserved.
机译:基于独特的配位原理,通过将RhB封装在金属-有机骨架-Fe-MIL-88NH(2)多孔材料中,制备了一种多功能比率荧光(RF)探针Fe-MIL-88NH(2)@RhB,用于Cu2+/Glu的单独检测和Glu的连续传感。设计的Fe-MIL88NH(2)@RhB平台可以选择性地识别Cu(II)/Glu,同时具有良好的线性关/开荧光特性。此外,如果将Fe-MIL-88NH(2)@RhB/Cu2+连续用Glu处理,则该平台的猝灭荧光(在蓝色发射的Cu2+感应后)将进一步恢复。利用Fe-MIL-88NH(2)@RhB探针,通过分裂通道成功地对活的A549细胞中的细胞内Cu(II)和Glu进行了成像,具有令人满意的低细胞毒性,同时,通过分子逻辑门对血清中Glu的传感结果也更优,这可能用于开发一种用于肌萎缩侧索硬化症初步诊断的医疗职业工具。此外,MOF显示出对Cu2+和Glu的双模式响应(颜色和亮度),对多种其他干扰分析物具有良好的选择性,相应的便携式Cu2+和Glu低毒在线测试条显示出显著的视觉显色现象,可用于监测真实水样中的这些污染物。最后,对探针用于食品中Cu2+和Glu监测的可行性进行了评估。(c)2021爱思唯尔B.V.保留所有权利。

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