首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Selectivity mapping of the binding sites of (E)-resveratrol imprinted polymers using structurally diverse polyphenolic compounds present in Pinot noir grape skins
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Selectivity mapping of the binding sites of (E)-resveratrol imprinted polymers using structurally diverse polyphenolic compounds present in Pinot noir grape skins

机译:使用黑比诺葡萄皮中存在的结构多样的多酚化合物对(E)-白藜芦醇印迹聚合物的结合位点进行选择性图谱绘制

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This investigation describes a general procedure for the selectivity mapping of molecularly imprinted polymers, using (E)-resveratrol-imprinted polymers as the exemplar, and polyphenolic compounds present in Pinot noir grape skin extracts as the test compounds. The procedure is based on the analysis of samples generated before and after solid-phase extraction of (E)-resveratrol and other polyphenols contained within the Pinot noir grape skins using (E)-resveratrol-imprinted polymers. Capillary reversed phase high-performance liquid chromatography (RP-HPLC) and electrospray ionisation tandem mass spectrometry (ESI MS/MS) was then employed for compound analysis and identification. Under optimised solid-phase extraction conditions, the (E)-resveratrol-imprinted polymer showed high binding affinity and selectivity towards (E)-resveratrol, whilst no resveratrol was bound by the corresponding non-imprinted polymer. In addition, quercetin-3-O-glucuronide and a dimer of catechin-methyl-5-furfuraldehyde, which share some structural features with (E)-resveratrol, were also bound by the (E)-resveratrol-imprinted polymer. Polyphenols that were non-specifically retained by both the imprinted and non-imprinted polymer were (+)-catechin, a B-type. procyanidin and (-)-epicatechin. The compounds that did not bind to the (E)-resveratrol molecularly imprinted polymer had at least one of the following molecular characteristics in comparison to the (E)-resveratrol template: (i) different spatial arrangements of their phenolic hydroxyl groups, (ii) less than three or more than four phenolic hydroxyl groups, or (iii) contained a bulky substituent moiety. The results show that capillary RP-HPLC in conjunction with ESI MS/MS represent very useful techniques for mapping the selectivity of the binding sites of imprinted polymer. Moreover, this procedure permits performance monitoring of the characteristics of molecularly imprinted polymers intended for solid-phase extraction of bioactive and nutraceutical molecules from diverse agricultural waste sources. (C) 2016 Elsevier B.V. All rights reserved.
机译:这项研究描述了分子印迹聚合物选择性映射的一般程序,使用(E)-白藜芦醇印迹聚合物作为示例,黑比诺葡萄皮提取物中的多酚化合物作为测试化合物。该程序基于使用(E)-白藜芦醇印迹聚合物对(E)-白藜芦醇和黑皮诺葡萄皮中所含其他多酚进行固相萃取之前和之后生成的样品的分析。然后,使用毛细管反相高效液相色谱(RP-HPLC)和电喷雾电离串联质谱(ESI MS / MS)进行化合物分析和鉴定。在优化的固相萃取条件下,(E)-白藜芦醇印迹的聚合物表现出高的结合亲和力和对(E)-白藜芦醇的选择性,而相应的非印迹聚合物则没有白藜芦醇的结合。另外,与(E)-白藜芦醇具有一些结构特征的槲皮素-3-O-葡萄糖醛酸和儿茶素-甲基-5-糠醛的二聚体也被(E)-白藜芦醇印迹的聚合物结合。印迹聚合物和非印迹聚合物均未特异性保留的多酚是(+)-儿茶素,一种B型。原花青素和(-)-表儿茶素。与(E)-白藜芦醇模板相比,不与(E)-白藜芦醇分子印迹聚合物结合的化合物至少具有以下分子特征之一:(i)酚羟基的不同空间排列,(ii )少于三个或四个以上的酚羟基,或(iii)含有庞大的取代基部分。结果表明,毛细管RP-HPLC与ESI MS / MS结合使用非常实用,可用于绘制印迹聚合物结合位点的选择性。而且,该程序允许性能监测分子印迹聚合物的特性,所述分子印迹聚合物旨在从各种农业废物源中固相提取生物活性和营养保健分子。 (C)2016 Elsevier B.V.保留所有权利。

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