Janczura Marta, Luliński Piotr, Sobiech Monika
Department of Organic Chemistry, Faculty of Pharmacy, Medical University of Warsaw, Banacha 1, 02-097 Warszawa, Poland.
Materials (Basel). 2021 Apr 8;14(8):1850. doi: 10.3390/ma14081850.
In the last 10 years, we have witnessed an extensive development of instrumental techniques in analytical methods for determination of various molecules and ions at very low concentrations. Nevertheless, the presence of interfering components of complex samples hampered the applicability of new analytical strategies. Thus, additional sample pre-treatment steps were proposed to overcome the problem. Solid sorbents were used for clean-up samples but insufficient selectivity of commercial materials limited their utility. Here, the application of molecularly imprinted polymers (MIPs) or ion-imprinted polymers (IIPs) in the separation processes have recently attracted attention due to their many advantages, such as high selectivity, robustness, and low costs of the fabrication process. Bulk or monoliths, microspheres and core-shell materials, magnetically susceptible and stir-bar imprinted materials are applicable to different modes of solid-phase extraction to determine target analytes and ions in a very complex environment such as blood, urine, soil, or food. The capability to perform a specific separation of enantiomers is a substantial advantage in clinical analysis. The ion-imprinted sorbents gained interest in trace analysis of pollutants in environmental samples. In this review, the current synthetic approaches for the preparation of MIPs and IIPs are comprehensively discussed together with a detailed characterization of respective materials. Furthermore, the use of sorbents in environmental, food, and biomedical analyses will be emphasized to point out current limits and highlight the future prospects for further development in the field.
在过去十年中,我们见证了用于测定极低浓度下各种分子和离子的分析方法中仪器技术的广泛发展。然而,复杂样品中干扰成分的存在阻碍了新分析策略的适用性。因此,人们提出了额外的样品预处理步骤来解决这个问题。固体吸附剂被用于净化样品,但商业材料的选择性不足限制了它们的实用性。在此,分子印迹聚合物(MIPs)或离子印迹聚合物(IIPs)在分离过程中的应用最近因其诸多优点而受到关注,例如高选择性、稳健性以及制备过程的低成本。整体或块状材料、微球和核壳材料、磁性敏感和搅拌棒印迹材料适用于不同模式的固相萃取,以测定血液、尿液、土壤或食物等非常复杂环境中的目标分析物和离子。在临床分析中,能够对映体进行特异性分离是一个显著优势。离子印迹吸附剂在环境样品中污染物的痕量分析方面引起了关注。在这篇综述中,将全面讨论目前制备MIPs和IIPs的合成方法以及各自材料的详细表征。此外,将强调吸附剂在环境、食品和生物医学分析中的应用,以指出当前的局限性并突出该领域进一步发展的未来前景。