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首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >A simple chip free-flow electrophoresis for monosaccharide sensing via supermolecule interaction of boronic acid functionalized quencher and fluorescent dye
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A simple chip free-flow electrophoresis for monosaccharide sensing via supermolecule interaction of boronic acid functionalized quencher and fluorescent dye

机译:通过硼酸官能化的淬灭剂和荧光染料的超分子相互作用进行单糖传感的简单芯片自由流动电泳

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Here, a simple micro free-flow electrophoresis (μFFE) was developed for fluorescence sensing of monosaccharide via supermolecule interaction of synthesized boronic acid functionalized benzyl viologen (ο-BBV) and fluorescent dye. The μFFE contained two open electrode cavities and an ion-exchange membrane was sandwiched between two polymethylmethacrylate plates. The experiments demonstrated the following merits of developed μFFE: (i) up to 90.5% of voltage efficiency due to high conductivity of ion-exchange membrane; (ii) a strong ability against influence of bubble produced in two electrodes due to open design of electrode cavities; and (iii) reusable and washable separation chamber (45 mm × 17 mm × 100 μm, 77 μL) avoiding the discard of μFFE due to blockage of solute precipitation in chamber. Remarkably, the μFFE was first designed for the sensing of monosaccharide via the supermolecule interaction of synthesized ο-BBV, fluorescent dye, and monosaccharide. Under the optimized conditions, the minimum concentration of monosaccharide that could be detected was 1 × 10-11 M. Finally, the developed device was used for the detection of 0.3 mM glucose spiked in human urine. All of the results demonstrated the feasibility of monosaccharide detection via the μFFE.
机译:在这里,开发了一种简单的微自由流动电泳(μFFE),用于通过合成的硼酸官能化的苄基紫精(ο-BBV)和荧光染料的超分子相互作用对单糖进行荧光感测。 μFFE包含两个敞开的电极腔,并且离子交换膜夹在两个聚甲基丙烯酸甲酯板之间。实验证明了开发的μFFE具有以下优点:(i)由于离子交换膜的高电导率,电压效率高达90.5%; (ii)由于电极腔的开放设计而具有很强的抵抗两个电极中产生的气泡的能力; (iii)可重复使用和可清洗的分离室(45 mm×17 mm×100μm,77μL),避免了由于分离室内的溶质沉淀而造成的μFFE的丢弃。值得注意的是,μFFE首先设计用于通过合成的α-BBV,荧光染料和单糖的超分子相互作用来感测单糖。在优化的条件下,可以检测的最小单糖浓度为1×10-11M。最后,将开发的设备用于检测人尿中加标的0.3 mM葡萄糖。所有结果证明了通过μFFE检测单糖的可行性。

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