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Differential Sensing of Saccharides Based on an Array of Fluorinated Benzosiloxaborole Receptors

机译:基于一系列氟化苯甲硅氧烷基硼酸酯受体的糖精的差分传感

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摘要

Fluorinated benzosiloxaboroles–silicon congeners of benzoxaboroles, were synthesized and tested as molecular receptors for mono- and disaccharides. The receptors differed in the Lewis acidity of the boron center as well as in the number of potential binding sites. The calculated stability constants indicated different binding affinity of benzosiloxaborole derivatives towards selected saccharides, enabling their classification using a receptor array-based sensing. Unique fluorescence fingerprints were created on the basis of competitive interactions of the studied receptors with both Alizarin Red S (ARS) and tested saccharide molecules. Detailed chemometric analysis of the obtained fluorescence data (based on partial least squares-discriminant analysis and hierarchical clustering analysis) provided the differential sensing of common saccharides, in particular the differentiation between glucose and fructose. In addition, DFT calculations were carried out to shed light on the binding mechanism under different pH conditions.
机译:合成并测试了含氟苯并氧杂硼烷的硅同类物,并作为单糖和二糖的分子受体进行了测试。受体在硼中心的路易斯酸度以及潜在的结合位点数量上有所不同。计算的稳定性常数表明苯并硅氧烷基硼烷衍生物对选定的糖具有不同的结合亲和力,从而使其能够使用基于受体阵列的传感进行分类。在研究的受体与茜素红S(ARS)和被测糖分子的竞争性相互作用的基础上,创建了独特的荧光指纹。对获得的荧光数据进行详细的化学计量学分析(基于偏最小二乘判别分析和层次聚类分析)提供了对普通糖类的差异感测,特别是葡萄糖和果糖之间的差异。另外,进行DFT计算以阐明在不同pH条件下的结合机理。

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