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Generating Selective Saccharide Binding Affinity of Phenyl Boronic Acids by using Single-Walled Carbon Nanotube Corona Phases

机译:利用单壁碳纳米管电晕相生成苯基硼酸的选择性糖键结合亲和力

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摘要

Saccharides recognition is challenging due to their low affinity for substrates, yet this recognition is critical for human immunity and glycobiology. Herein, we demonstrate that a polymer or surfactant corona phase surrounding a single-walled carbon nanotube can substantially modify the selectivity of pre-adsorbed phenyl-boronic acids (PBA) for mono-, di-, and poly-saccharides. A library of 17 PBAs including carboxy, nitro, and amino PBA with ortho-, meta-, or para- substitutions are used to generate 144 distinct corona phases. Six in particular demonstrate significantly increased selectivity to specific saccharides including ribose (0.42 mol per total mol), arabinose (0.36), and glucose (0.25), but unusually diminished binding to fructose (0.02). Recognition proceeds by saccharide adsorption into the corona, followed by PBA reaction in a consecutive second order reaction. The results extend to larger saccharides, such as glycosaminoglycans, suggesting promise for protein glycosylation.
机译:由于糖与底物的亲和力低,因此其识别具有挑战性,但这种识别对人体免疫和糖生物学至关重要。在本文中,我们证明了围绕单壁碳纳米管的聚合物或表面活性剂电晕相可以大大改变预吸附的苯基硼酸(PBA)对单糖,二糖和多糖的选择性。使用17 PBA库(包括具有邻位,间位或对位取代的羧基,硝基和氨基PBA)生成144不同的电晕相。特别是六个样品显示出对特定糖的选择性显着提高,包括核糖(每总摩尔0.42μmol),阿拉伯糖(0.36)和葡萄糖(0.25),但与果糖(0.02)的结合却异常减少。通过糖吸附到电晕中进行识别,然后在连续的二级反应中进行PBA反应。结果扩展到更大的糖类,例如糖胺聚糖,暗示了蛋白质糖基化的前景。

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