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首页> 外文期刊>Analytical chemistry >Simple Boric Acid-Based Fluorescent Focusing for Sensing of Glucose and Glycoprotein via Multipath Moving Supramolecular Boundary Electrophoresis Chip
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Simple Boric Acid-Based Fluorescent Focusing for Sensing of Glucose and Glycoprotein via Multipath Moving Supramolecular Boundary Electrophoresis Chip

机译:简单的基于硼酸的荧光聚焦通过多径移动超分子边界电泳芯片检测葡萄糖和糖蛋白。

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摘要

Boric acid-based fluorescent complex probe of BBV-HPTS (boronic acid-based benzyl viologen (BBV) and hydroxypyrene trisulfonic acid trisodium salt (HPTS)) was rarely used for sensitive sensing of saccharide (especially glycoprotein) via electrophoresis. We proposed a novel model of moving supramolecular boundary (MSB) formed with monosaccharide or glycoprotein in microcolumn and the complex probe of BBV-HPTS in the cathodic injection tube, developed a method of MSB fluorescent focusing for sensitive recognition of monosaccharide and glycoprotein, and designed a special multipath capillary electrophoresis (CE) chip for relative experiments. As a proof of concept, glucose and hemoglobin A1c (HbA_(1c)) were respectively used as the mode saccharide and glycoprotein for the relevant demonstration. The experiments revealed that (i) the complex of BBV-HPTS could interact with free glucose or bound one in glycoprotein; (ii) the fluorescent signal was a function of glucose or glycoprotein content approximately; and (iii) interestingly the fluorescent band motion was dependent on glucose content. The developed method had the following merits: (i) low cost; (ii) low limit of detection (down to 1.39 pg/mL for glucose and 2.0 pg per capillary HbA_(1c)); and (iii) high throughput (up to 12 runs or more per patch) and speed (less than 5 min). The developed method has potential use for sensitive monitoring of monosaccharide and glycoprotein in biomedical samples.
机译:BBV-HPTS的基于硼酸的荧光复合探针(基于硼酸的苄基紫精(BBV)和羟基py三磺酸三钠盐(HPTS))很少用于通过电泳灵敏地感测糖(尤其是糖蛋白)。我们提出了一种由微柱中的单糖或糖蛋白形成的移动超分子边界(MSB)模型和阴极注射管中BBV-HPTS的复杂探针的新模型,开发了一种MSB荧光聚焦方法用于单糖和糖蛋白的敏感识别,并设计了一种特殊的多径毛细管电泳(CE)芯片,用于相关实验。作为概念证明,分别使用葡萄糖和血红蛋白A1c(HbA_(1c))作为模式糖和糖蛋白进行相关演示。实验表明:(i)BBV-HPTS的复合物可以与游离葡萄糖相互作用或与糖蛋白结合。 (ii)荧光信号大约是葡萄糖或糖蛋白含量的函数; (iii)有趣的是,荧光带的运动取决于葡萄糖含量。所开发的方法具有以下优点:(i)成本低; (ii)检测下限低(葡萄糖低至1.39 pg / mL,每个毛细管HbA_(1c)低至2.0 pg); (iii)高吞吐量(每个补丁最多可运行12次或更多)和速度(不到5分钟)。所开发的方法可能用于灵敏监测生物医学样品中的单糖和糖蛋白。

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