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分子印迹材料用于选择性生物识别。

Molecularly Imprinted Materials for Selective Biological Recognition.

机构信息

School of Natural and Applied Science, Northwestern Polytechnical University, Xi'an, 710072, P. R. China.

Department of Mechanical Engineering, National University of Singapore 9 Engineering Drive 1, 117575, Singapore.

出版信息

Macromol Rapid Commun. 2019 Sep;40(17):e1900096. doi: 10.1002/marc.201900096. Epub 2019 May 21.

Abstract

Molecular imprinting is an approach of generating imprinting cavities in polymer structures that are compatible with the target molecules. The cavities have memory for shape and chemical recognition, similar to the recognition mechanism of antigen-antibody in organisms. Their structures are also called biomimetic receptors or synthetic receptors. Owing to the excellent selectivity and unique structural predictability of molecularly imprinted materials (MIMs), practical MIMs have become a rapidly evolving research area providing key factors for understanding separation, recognition, and regenerative properties toward biological small molecules to biomacromolecules, even cell and microorganism. In this review, the characteristics, morphologies, and applicability of currently popular carrier materials for molecular imprinting, especially the fundamental role of hydrogels, porous materials, hierarchical nanoparticles, and 2D materials in the separation and recognition of biological templates are discussed. Moreover, through a series of case studies, emphasis is given on introducing imprinting strategies for biological templates with different molecular scales. In particular, the differences and connections between small molecular imprinting (bulk imprinting, "dummy" template imprinting, etc.), large molecular imprinting (surface imprinting, interfacial imprinting, etc.), and cell imprinting strategies are demonstrated in detail. Finally, future research directions are provided.

摘要

分子印迹是一种在聚合物结构中生成与目标分子相匹配的印迹腔的方法。这些腔具有形状和化学识别的记忆功能,类似于生物体内抗原-抗体的识别机制。它们的结构也被称为仿生受体或合成受体。由于分子印迹材料(MIMs)具有出色的选择性和独特的结构可预测性,实用的 MIMs 已成为一个快速发展的研究领域,为理解生物小分子、生物大分子、甚至细胞和微生物的分离、识别和再生特性提供了关键因素。在这篇综述中,讨论了目前流行的分子印迹载体材料的特点、形态和适用性,特别是水凝胶、多孔材料、分级纳米粒子和 2D 材料在生物模板分离和识别中的基本作用。此外,通过一系列案例研究,重点介绍了针对不同分子尺度的生物模板的印迹策略。特别详细地展示了小分子印迹(整体印迹、“虚拟”模板印迹等)、大分子印迹(表面印迹、界面印迹等)和细胞印迹策略之间的差异和联系。最后,提供了未来的研究方向。

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