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用于水相介质传感的亲水 MIPs。

Towards water compatible MIPs for sensing in aqueous media.

机构信息

Institute for Materials Research, Hasselt University, Agoralaan, Building D, B-3590, Diepenbeek, Belgium.

出版信息

J Mol Recognit. 2012 Jun;25(6):344-51. doi: 10.1002/jmr.2191.

Abstract

When synthesizing molecularly imprinted polymers (MIPs), a few fundamental principles should be kept in mind. There is a strong correlation between porogen polarity, MIP microenvironment polarity and the imprinting effect itself. The combination of these parameters eventually determines the overall binding behavior of a MIP in a given solvent. In addition, it is shown that MIP binding is strongly influenced by the polarity of the rebinding solvent. Because the use of MIPs in biomedical environments is of considerable interest, it is important that these MIPs perform well in aqueous media. In this article, various approaches are explored towards a water compatible MIP for the target molecule l-nicotine. To this end, the imprinting effect together with the MIP matrix polarity is fine-tuned during MIP synthesis. The binding behavior of the resulting MIPs is evaluated by performing batch rebinding experiments that makes it possible to select the most suitable MIP/non-imprinted polymer couple for future application in aqueous environments. One method to achieve improved compatibility with water is referred to as porogen tuning, in which porogens of varying polarities are used. It is demonstrated that, especially when multiple porogens are mixed, this approach can lead to superior performance in aqueous environments. Another method involves the incorporation of polar or non-polar comonomers in the MIP matrix. It is shown that by carefully selecting these monomers, it is also possible to obtain MIPs, which can selectively bind their target in water.

摘要

在合成分子印迹聚合物(MIPs)时,需要牢记几个基本原则。致孔剂的极性、MIP 微环境极性与印迹效应本身之间存在很强的相关性。这些参数的组合最终决定了 MIP 在给定溶剂中的整体结合行为。此外,研究表明 MIP 的结合强烈受到重结合溶剂极性的影响。由于 MIP 在生物医学环境中的应用具有相当大的兴趣,因此这些 MIP 在水介质中表现良好非常重要。在本文中,我们探讨了针对目标分子 l-烟碱的水相兼容 MIP 的各种方法。为此,在 MIP 合成过程中,对印迹效应和 MIP 基质极性进行了微调。通过进行批量重结合实验来评估所得 MIP 的结合行为,这使得能够选择最适合的 MIP/非印迹聚合物对,以便将来在水相环境中应用。一种提高与水兼容性的方法称为致孔剂调谐,其中使用具有不同极性的致孔剂。结果表明,特别是当混合使用多种致孔剂时,这种方法可以在水相环境中带来更好的性能。另一种方法涉及在 MIP 基质中掺入极性或非极性共聚单体。结果表明,通过仔细选择这些单体,也可以获得能够在水中选择性结合其靶标的 MIP。

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