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Computational Insights on Sulfonamide Imprinted Polymers

机译:磺酰胺印迹聚合物的计算见解

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摘要

Molecular imprinting is one of the most efficient methods for preparing synthetic receptors that possess user defined recognition properties. Despite general success of non-covalent imprinting for a large variety of templates, some groups of compounds remain difficult to tackle due to their structural complexity. In this study we investigate preparation of molecularly imprinted polymers that can bind sulfonamide compounds, which represent important drug candidates. Compared to the biological system that utilizes metal coordinated interaction, the imprinted polymer provided pronounced selectivity when hydrogen bond interaction was employed in an organic solvent. Computer simulation of the interaction between the sulfonamide template and functional monomers pointed out that although methacrylic acid had strong interaction energy with the template, it also possessed high non-specific interaction with the solvent molecules of tetrahydrofuran as well as being prone to self-complexation. On the other hand, 1-vinyl-imidazole was suitable for imprinting sulfonamides as it did not cross-react with the solvent molecules or engage in self-complexation structures.
机译:分子印迹是制备具有用户定义的识别特性的合成受体的最有效方法之一。尽管非共价印迹在各种模板上获得普遍成功,但由于结构复杂,某些化合物组仍然难以解决。在这项研究中,我们研究了可以与代表重要候选药物的磺酰胺化合物结合的分子印迹聚合物的制备。与利用金属配位相互作用的生物系统相比,当在有机溶剂中采用氢键相互作用时,印迹聚合物具有明显的选择性。磺酰胺模板与功能单体之间相互作用的计算机模拟指出,尽管甲基丙烯酸与模板具有很强的相互作用能,但它与四氢呋喃的溶剂分子也具有很高的非特异性相互作用,并且易于自络合。另一方面,由于1-乙烯基咪唑不与溶剂分子发生交叉反应或参与自络合结构,因此适合于印迹磺酰胺。

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