National Chromatographic R. & A. Center, Key Laboratory of Separation Science for Analytical Chemistry, Dalian Institute of Chemical Physics, Chinese Academy of Science, Dalian, China.
Anal Bioanal Chem. 2012 Jun;403(8):2173-83. doi: 10.1007/s00216-012-5840-y. Epub 2012 Feb 25.
Protein imprinting is a promising tool for generating artificial biomimetic receptors with antibody-like specific recognition sites. Recently, protein-imprinted materials, as potential antibody substitutes, have attracted much attention in many fields, for example chemical sensors, chromatographic stationary phases, and artificial enzymes, owing to their long-term storage stability, potential re-usability, resistance to harsh environment, and low cost. In this critical review, we focus our discussion on the rational preparation of protein-imprinted materials in terms of choice of template, functional monomer, crosslinker, and polymerization format. In addition, several highlighted applications of protein-imprinted materials are emphasized, not only in well-known fields but also in some unique fields, for example proteomics and tissue engineering. Finally, we propose challenges arising from the intrinsic properties of protein imprinting, for example obtaining the template, heterogeneous binding, and extrinsic competition, for example immobilized aptamers.
蛋白质印迹是一种很有前途的工具,可用于生成具有抗体样特异性识别位点的人工仿生受体。最近,由于其长期储存稳定性、潜在的可重复使用性、抗恶劣环境性和低成本性,作为潜在的抗体替代品,蛋白质印迹材料在化学传感器、色谱固定相和人工酶等许多领域引起了广泛关注。在这篇评论中,我们重点讨论了根据模板、功能单体、交联剂和聚合形式来合理制备蛋白质印迹材料。此外,还强调了蛋白质印迹材料的几个突出应用,不仅在知名领域,而且在一些独特的领域,例如蛋白质组学和组织工程。最后,我们提出了蛋白质印迹固有特性带来的挑战,例如获得模板、异质结合和固定化适体的外在竞争等。