Department of Micro- and Nanotechnology, Technical University of Denmark, Ørsteds Plads, DK-2800 Kgs, Lyngby, Denmark.
Laboratory of Applied Micro and Nanotechnology (LAMINATE), National Food Institute, Technical University of Denmark (DTU-Food), Denmark.
Biosens Bioelectron. 2017 May 15;91:606-615. doi: 10.1016/j.bios.2017.01.018. Epub 2017 Jan 11.
Molecularly imprinted polymers (MIPs) are biomimetics which can selectively bind to analytes of interest. One of the most interesting areas where MIPs have shown the biggest potential is food analysis. MIPs have found use as sorbents in sample preparation attributed to the high selectivity and high loading capacity. MIPs have been intensively employed in classical solid-phase extraction and solid-phase microextraction. More recently, MIPs have been combined with magnetic bead extraction, which greatly simplifies sample handling procedures. Studies have consistently shown that MIPs can effectively minimize complex food matrix effects, and improve recoveries and detection limits. In addition to sample preparation, MIPs have also been viewed as promising alternatives to bio-receptors due to the inherent molecular recognition abilities and the high stability in harsh chemical and physical conditions. MIPs have been utilized as receptors in biosensing platforms such as electrochemical, optical and mass biosensors to detect various analytes in food. In this review, we will discuss the current state-of-the-art of MIP synthesis and applications in the context of food analysis. We will highlight the imprinting methods which are applicable for imprinting food templates, summarize the recent progress in using MIPs for preparing and analysing food samples, and discuss the current limitations in the commercialisation of MIPs technology. Finally, future perspectives will be given.
分子印迹聚合物(MIPs)是一种仿生材料,能够对目标分析物进行选择性结合。MIPs 最具潜力的应用领域之一是食品分析。由于具有高选择性和高负载能力,MIPs 已被用作样品制备中的吸附剂。MIPs 已被广泛应用于经典的固相萃取和固相微萃取中。最近,MIPs 已与磁珠萃取结合使用,这大大简化了样品处理程序。研究一致表明,MIPs 可以有效减少复杂的食品基质效应,提高回收率和检测限。除了样品制备,MIPs 还由于其固有分子识别能力和在恶劣化学和物理条件下的高稳定性,被视为生物受体的有前途的替代品。MIPs 已被用作电化学生物传感器、光学生物传感器和质量生物传感器等生物传感平台中的受体,以检测食品中的各种分析物。在本文中,我们将讨论 MIP 合成及其在食品分析中的应用的最新进展。我们将重点介绍适用于食品模板印迹的印迹方法,总结使用 MIPs 制备和分析食品样品的最新进展,并讨论 MIPs 技术商业化的当前限制。最后给出未来展望。