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Phytosterol Recognition via Rationally Designed Molecularly Imprinted Polymers

机译:通过合理设计的分子印迹聚合物识别植物甾醇

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Molecularly imprinted polymers (MIPs) prepared via a semi-covalent imprinting strategy using stigmasteryl methacrylate as a polymerisable template have been evaluated by static binding methods for their ability to selectively capture other valuable phytosterol targets, including campesterol and brassicasterol. Design criteria based on molecular modelling procedures and interaction energy calculations were employed to aid the selection of the co-monomer type, as well as the choice of co-monomer:template ratios for the formation of the pre-polymerisation complex. These novel hybrid semi-covalently imprinted polymers employed N , N ′-dimethylacryl-amide ( N , N ′-DMAAM) as the functional co-monomer and displayed specific binding capacities in the range 5.2–5.9 mg sterol/g MIP resin. Their binding attributes and selectivities towards phytosterol compounds were significantly different to the corresponding MIPs prepared via non-covalent procedures or when compared to non-imprinted polymers. Cross-reactivity studies using stigmasterol, ergosterol, cholesterol, campesterol, and brassicasterol as single analytes revealed the importance of the A-ring C-3-β-hydroxyl group and the orientational preferences of the D-ring alkyl chain structures in their interaction in the templated cavity with the N , N ′-dimethylamide functional groups of the MIP. Finally, to obtain useful quantities of both campersterol and brassicasterol for these investigations, improved synthetic routes have been developed to permit the conversion of the more abundant, lower cost stigmasterol via a reactive aldehyde intermediate to these other sterols.
机译:已通过静态结合方法评估了通过使用甲基丙烯酸豆蔻基酯作为可聚合模板的半共价印迹策略制备的分子印迹聚合物(MIP)选择性捕获其他有价值的植物甾醇靶标(包括菜油甾醇和菜油甾醇)的能力。采用基于分子建模程序和相互作用能计算的设计标准,以帮助选择共聚单体类型,以及选择共聚单体:模板比例以形成预聚合配合物。这些新颖的杂化半共价印迹聚合物采用N,N'-二甲基丙烯酰胺(N,N'-DMAAM)作为功能性共聚单体,并显示出在5.2-5.9 mg甾醇/ g MIP树脂范围内的比结合能力。它们对植物甾醇化合物的结合属性和选择性与通过非共价程序或与非印迹聚合物制备的相应MIP显着不同。使用豆甾醇,麦角甾醇,胆固醇,菜油甾醇和芸苔甾醇作为单一分析物的交叉反应性研究表明,A环C-3-β-羟基基团的重要性以及D环烷基链结构在它们相互作用中的取向偏好。具有MIP的N,N′-二甲基酰胺官能团的模板腔。最后,为了获得用于这些研究的有用量的樟脑甾醇和芸苔甾醇,已开发出改进的合成路线以允许将更丰富,成本更低的豆甾醇通过反应性醛中间体转化为这些其他甾醇。

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