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以2',3',5'-三-O-酰基尿苷为模板用于嘧啶核苷识别的分子印迹聚合物的评估。

Evaluation of molecularly imprinted polymers using 2',3',5'-tri-O-acyluridines as templates for pyrimidine nucleoside recognition.

作者信息

Krstulja Aleksandra, Lettieri Stefania, Hall Andrew J, Delépée Raphael, Favetta Patrick, Agrofoglio Luigi A

机构信息

ICOA UMR CNRS 7311, Université d'Orléans, 45067, Orléans Cedex 2, France.

出版信息

Anal Bioanal Chem. 2014 Oct;406(25):6275-84. doi: 10.1007/s00216-014-8017-z. Epub 2014 Jul 31.

Abstract

In this paper, we describe the synthesis and evaluation of molecularly imprinted polymers (MIPs), prepared using 2',3',5'-tri-O-acyluridines as 'dummy' templates, for the selective recognition of uridine nucleosides. The MIPs were synthesised using a non-covalent approach with 2,6-bis-acrylamidopyridine (BAAPy) acting as the binding monomer and ethylene glycol dimethacrylate (EGDMA) as the cross-linking agent. The MIPs were evaluated in terms of capacity, selectivity and specificity by analytical and frontal liquid chromatography measurements. The results obtained in organic mobile phases suggest that the nucleosides are specifically bound to the polymer by the complementary hydrogen bonding motifs of the binding monomer and the nucleoside bases. The MIPs exhibited relatively high imprinting factors for 2',3',5'-tri-O-acyluridines, while they did not show any binding capacity for other nucleosides lacking the imide moiety on their base. Moreover, the presence of ester-COO groups in the EGDMA cross-linker may lead to the formation of additional hydrogen bonds with the 2',3' and/or 5'-OH of sugar part, allowing enhancement of the recognition of the uridine nucleosides. In aqueous media, results show that the binding is driven by hydrophobic interactions.

摘要

在本文中,我们描述了以2',3',5'-三-O-酰基尿苷为“虚拟”模板制备的分子印迹聚合物(MIP)的合成与评估,用于选择性识别尿苷核苷。采用非共价方法合成MIP,以2,6-双丙烯酰胺基吡啶(BAAPy)作为结合单体,乙二醇二甲基丙烯酸酯(EGDMA)作为交联剂。通过分析型和前沿液相色谱测量对MIP的容量、选择性和特异性进行了评估。在有机流动相中获得的结果表明,核苷通过结合单体与核苷碱基的互补氢键基序特异性结合到聚合物上。MIP对2',3',5'-三-O-酰基尿苷表现出相对较高的印迹因子,而对碱基上缺乏酰亚胺部分的其他核苷没有任何结合能力。此外,EGDMA交联剂中酯-COO基团的存在可能导致与糖部分的2',3'和/或5'-OH形成额外的氢键,从而增强对尿苷核苷的识别。在水性介质中,结果表明结合是由疏水相互作用驱动的。

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