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Molecularly imprinted stationary phase prepared by reverse micro-emulsion polymerization for selective recognition of gatifloxacin in aqueous media

机译:反相微乳液聚合制备分子印迹固定相用于选择性识别加替沙星在水性介质中的作用

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摘要

A new stationary phase for selectively recognizing gatifloxacin in aqueous media based on molecularly imprinted microspheres (MIMs) has been prepared by water/oil reverse micro-emulsion polymerization. The MIMs were prepared using gatifloxacin as the template, N, N'-methylenebisacrylamide as cross-linker and acrylamide and acryloyl-β-CD (β-CD-A, synthesized by ester reaction of acrylic acid with β-CD) as combinatorial functional monomers. The surface morphology of MIMs was characterized by scanning electron microscopy. The properties of MIMs recognition for gatifloxacin in water were studied by adsorption kinetics, adsorption isotherms combined with Scatchard analysis and selective recognition experiments. The results showed that the synthesized MIMs had an excellent ability to selectively recognize gatifloxacin in aqueous media. MIMs were employed as the chromatographic stationary phase to successfully separate the template gatifloxacin from its analogues. Discovering the mechanism of the MIMs recognition revealed that the memory cavities in the surface of the MIMs and hydrophobic effects between the template and the cavities of the β-CD residues were the primary contributions to the special recognition process.
机译:通过水/油反向微乳液聚合制备了一种新的固定相,用于基于分子印迹微球(MIM)选择性识别水性介质中的加替沙星。以加替沙星为模板,N,N'-亚甲基双丙烯酰胺为交联剂,丙烯酰胺和丙烯酰基-β-CD(β-CD-A,由丙烯酸与β-CD进行酯反应合成)制备MIMs。单体。 MIM的表面形态通过扫描电子显微镜表征。通过吸附动力学,吸附等温线,Scatchard分析和选择性识别实验研究了水中加替沙星的MIMs识别特性。结果表明,合成的MIM具有优异的选择性识别加替沙星在水性介质中的能力。 MIM被用作色谱固定相,以成功地将模板加替沙星与其类似物分离。发现MIMs识别的机制揭示了MIMs表面的记忆腔以及模板和β-CD残基腔之间的疏水作用是特殊识别过程的主要贡献。

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