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A Saccharide Chemosensor Array Developed Based on an Indicator Displacement Assay Using a Combination of Commercially Available Reagents

机译:基于指示剂位移分析技术的糖化学传感器阵列的开发,结合​​使用市售试剂

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摘要

Herein, a very simple colorimetric chemosensor array is reported for saccharides (D-glucose, D-fructose, D-xylose, D-galactose, D-mannose, L-rhamnose, and N-acetyl-D-gluosamine). While various types of chemosensors for saccharides have been investigated extensively to-this-date, tremendous additional efforts are still required on a regular basis for the syntheses of new chemosensors. Complicated syntheses would be a bottleneck, given that artificial receptor-based chemosensing systems are not so popular in comparison to biomaterial-based (e.g., enzyme-based) sensing systems. Toward this end, chemosensor array systems using molecular self-assembled materials can avoid the abovementioned synthetic efforts and achieve simultaneous qualitative and quantitative detection of a number of guest saccharides. Using a practical approach, we focus on an indicator displacement assay (IDA) to fabricate a chemosensor array for colorimetric saccharide sensing. On this basis, 3-nitrophenylboronic acid (3-NPBA) spontaneously reacts with catechol dyes such as alizarin red S (ARS), bromopyrogallol red (BPR), pyrogallol red (PR), and pyrocatechol violet (PV), and yields boronate ester derivatives with color changes. The addition of saccharides into the aqueous solution of the boronate esters induces color recovery owing to the higher binding affinity of 3-NPBA for saccharides, thus resulting in the release of dyes. By employing this system, we have succeeded in discriminating saccharides qualitatively and quantitatively with a classification success rate of 100%. Most importantly, our chemosensor array has been fabricated by only mixing low cost commercially available reagents in situ, which means that complicated synthetic processes are avoided for saccharide sensing. We believe this simple colorimetric assay that uses only commercially available reagents can create new, user-friendly supramolecular sensing pathways for saccharides.
机译:在此,报道了一种非常简单的比色化学传感器阵列,用于糖类(D-葡萄糖,D-果糖,D-木糖,D-半乳糖,D-甘露糖,L-鼠李糖和N-乙酰基-D-葡糖胺)。迄今为止,尽管已对各种类型的糖化学传感器进行了广泛的研究,但对于合成新的化学传感器,仍需要定期做出巨大的额外努力。鉴于与基于生物材料的(例如基于酶的)感测系统相比,基于人工受体的化学传感系统不那么受欢迎,因此复杂的合成将成为瓶颈。为此,使用分子自组装材料的化学传感器阵列系统可以避免上述合成工作,并且可以同时定性和定量检测多种客体糖。使用一种实用的方法,我们专注于指示器位移测定(I​​DA),以制造用于比色糖感测的化学传感器阵列。在此基础上,3-硝基苯基硼酸(3-NPBA)与儿茶酚染料如茜素红S(ARS),溴邻苯三酚红(BPR),邻苯三酚红(PR)和邻苯二酚紫(PV)自发反应,生成硼酸酯随颜色变化的导数。由于3-NPBA对糖类具有更高的结合亲和力,因此将糖类添加到硼酸酯的水溶液中会引起颜色恢复,从而导致染料的释放。通过使用该系统,我们成功地定性和定量地鉴定了糖类,分类成功率为100%。最重要的是,我们的化学传感器阵列仅通过就地混合低成本的市售试剂而制成,这意味着可以避免复杂的合成过程来进行糖类传感。我们相信,这种仅使用市售试剂的简单比色测定法可以为糖类创造新的,用户友好的超分子传感途径。

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