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Synthesis and ligand recognition of paracetamol selective polymers: semi-covalent versus non-covalent molecular imprinting

机译:对乙酰氨基酚选择性聚合物的合成和配体识别:半共价与非共价分子印迹

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摘要

Three molecular imprinting strategies, each based upon a series of ethylene glycol dimethacrylate (EGDMA) cross-linked co-polymers, have been used to produce materials selective for the commonly used analgesic and antipyretic agent paracetamol (p-acetaminophen or 4-acetamidophenol) (1). The polymers were synthesised using either a semi-covalent imprinting strategy based upon 4-acetamidophenyl-(4-vinylphenyl) carbonate (4) or a non-covalent strategy based on methacrylic acid (MAA) as the functional monomer, or by employing a combination of these strategies. Radioligand binding studies demonstrated low template affinity in polymers offering only a single electrostatic interaction point for recognition via the phenolic residue in the template, whereas binding was substantially increased upon the introduction of a second binding mode, namely interaction at the acetamide moiety. HPLC analyses revealed no imprinting effect in the purely semi-covalent system, and only a minor effect in the purely non-covalent systems. However, a pronounced imprinting effect was demonstrated for polymers prepared by a combination of semi-covalent and non-covalent imprinting. This study illustrates a limitation of both the non-covalent and the semi-covalent strategies when it comes to achieving imprinted selectivity for small and poorly functionalised templates such as paracetamol. Parallels with conclusions from studies with antibodies are discussed.
机译:三种分子印迹策略均基于一系列的乙二醇二甲基丙烯酸酯(EGDMA)交联共聚物,已被用于生产对常用止痛药和解热剂对乙酰氨基酚(对乙酰氨基酚或4-对乙酰氨基酚)具有选择性的材料( 1)。使用基于4-乙酰氨基苯基-(4-乙烯基苯基)碳酸酯(4)的半共价印迹策略或基于甲基丙烯酸(MAA)作为功能性单体的非共价策略,或通过组合使用这些策略。放射性配体结合研究表明,聚合物中的模板亲和力低,仅提供单个静电相互作用点即可通过模板中的酚残基进行识别,而引入第二种结合模式后,即在乙酰胺部分的相互作用,结合力大大提高。 HPLC分析表明,在纯半共价体系中没有印迹作用,而在纯非共价体系中只有很小的作用。然而,对于通过半共价和非共价压印的组合制备的聚合物,表现出明显的压印效果。这项研究说明了对于小而功能差的模板(如扑热息痛)实现印迹选择性时非共价和半共价策略的局限性。讨论了与抗体研究结论平行的部分。

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  • 来源
    《Organic & biomolecular chemistry》 |2009年第15期|3148-3155|共8页
  • 作者单位

    Bioorganic and Biophysical Chemistry Laboratory, School of Pure and Applied Natural Sciences, University of Kalmar, SE-39182 Kalmar, Sweden;

    Bioorganic and Biophysical Chemistry Laboratory, School of Pure and Applied Natural Sciences, University of Kalmar, SE-39182 Kalmar, Sweden;

    Department of Chemistry, University of Tromso, N- 9037 Tromso, Norway;

    Bioorganic and Biophysical Chemistry Laboratory, School of Pure and Applied Natural Sciences, University of Kalmar, SE-39182 Kalmar, Sweden;

    Bioorganic and Biophysical Chemistry Laboratory, School of Pure and Applied Natural Sciences, University of Kalmar, SE-39182 Kalmar, Sweden;

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