Molecular imprinting in particle-stabilized emulsions: enlarging template size from small molecules to proteins and cells

L. Ye, Tongchang Zhou, Xiantao Shen
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引用次数: 11

Abstract

Abstract Molecular imprinting of small organic compounds is now a standard procedure for preparation of tailor-designed affinity materials. Molecularly imprinted polymers (MIPs) have outstanding stability and can be prepared in a large quantity, therefore are useful replacements for biological receptors for a number of applications including product purification, analytical separation, chemical sensing and controlled delivery and biomineralization. Although preparation of MIPs, in particular using the non-covalent imprinting strategy, has become a routine practice in many research laboratories, new synthetic methods continued to be invented, which contribute to new MIPs with unprecedented functional performances. As the size of the template increases from small organic compounds to biomacromolecules to large virus particles and cells, the traditional methods of imprinting often fail to give useful MIP products. Another important aspect is the shift from organic solvents to water for MIPs designed for treatment or analysis of biological samples. The demand on water-compatibility and recognition of larger entities for MIPs call for new and efficient synthetic methods. This mini review will summarize the recent progress of molecular imprinting using particle-stabilized emulsion as a general synthetic platform to furnish the new MIPs with the desired functions.
颗粒稳定乳剂中的分子印迹:从小分子扩大到蛋白质和细胞的模板尺寸
小有机化合物的分子印迹现在是一个标准的程序,为量身定制的亲和材料的制备。分子印迹聚合物(MIPs)具有优异的稳定性,可以大量制备,因此在产品纯化、分析分离、化学传感和控制递送以及生物矿化等许多应用中是生物受体的有用替代品。尽管制备MIPs,特别是使用非共价印迹策略,已经成为许多研究实验室的常规做法,但新的合成方法不断被发明,这有助于新的MIPs具有前所未有的功能性能。随着模板尺寸的增加,从小的有机化合物到生物大分子再到大的病毒颗粒和细胞,传统的印迹方法往往无法获得有用的MIP产品。另一个重要方面是从有机溶剂到水的MIPs设计用于处理或分析生物样品的转变。对水相容性的要求和对大型实体的识别要求新的和有效的合成方法。本文综述了近年来以颗粒稳定乳液为合成平台的分子印迹技术的研究进展,以期为新型分子印迹聚合物提供所需的功能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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