Xu Long, Huang Yun-An, Zhu Qiu-Jin, Ye Chun
School of Liquor & Food Engineering, Guizhou University, Guiyang 550025, China.
Key Laboratory of Agricultural & Animal Products Store and Processing of Guizhou Province, Guiyang 550025, China.
Int J Mol Sci. 2015 Aug 7;16(8):18328-47. doi: 10.3390/ijms160818328.
Chitosan is widely used in molecular imprinting technology (MIT) as a functional monomer or supporting matrix because of its low cost and high contents of amino and hydroxyl functional groups. The various excellent properties of chitosan, which include nontoxicity, biodegradability, biocompatibility, and attractive physical and mechanical performances, make chitosan a promising alternative to conventional functional monomers. Recently, chitosan molecularly-imprinted polymers have gained considerable attention and showed significant potential in many fields, such as curbing environmental pollution, medicine, protein separation and identification, and chiral-compound separation. These extensive applications are due to the polymers' desired selectivity, physical robustness, and thermal stability, as well as their low cost and easy preparation. Cross-linkers, which fix the functional groups of chitosan around imprinted molecules, play an important role in chitosan molecularly-imprinted polymers. This review summarizes the important cross-linkers of chitosan molecularly-imprinted polymers and illustrates the cross-linking mechanism of chitosan and cross-linkers based on the two glucosamine units. Finally, some significant attempts to further develop the application of chitosan in MIT are proposed.
壳聚糖因其低成本以及高含量的氨基和羟基官能团,作为功能单体或支撑基质被广泛应用于分子印迹技术(MIT)。壳聚糖具有多种优异性能,包括无毒、可生物降解、生物相容性以及吸引人的物理和机械性能,这使得壳聚糖成为传统功能单体的一个有前景的替代品。最近,壳聚糖分子印迹聚合物受到了广泛关注,并在许多领域展现出巨大潜力,如控制环境污染、医学、蛋白质分离与鉴定以及手性化合物分离。这些广泛应用归因于聚合物所需的选择性、物理稳定性、热稳定性,以及它们的低成本和易于制备。交联剂将壳聚糖的官能团固定在印迹分子周围,在壳聚糖分子印迹聚合物中起着重要作用。本文综述了壳聚糖分子印迹聚合物的重要交联剂,并基于两个葡糖胺单元阐述了壳聚糖与交联剂的交联机理。最后,提出了一些进一步拓展壳聚糖在分子印迹技术中应用的重要尝试。