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Recent advances in molecular imprinting technology: current status, challenges and highlighted applications

机译:分子印迹技术的最新进展:现状,挑战和突出的应用

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Molecular imprinting technology (MIT) concerns formation of selective sites in a polymer matrix with the memory of a template. Recently, molecularly imprinted polymers (MIPs) have aroused extensive attention and been widely applied in many fields, such as solid-phase extraction, chemical sensors and artificial antibodies owing to their desired selectivity, physical robustness, thermal stability, as well as low cost and easy preparation. With the rapid development of MIT as a research hotspot, it faces a number of challenges, involving biological macromolecule imprinting, heterogeneous binding sites, template leakage, incompatibility with aqueous media, low binding capacity and slow mass transfer, which restricts its applications in various aspects. This critical review briefly reviews the current status of MIT, particular emphasis on significant progresses of novel imprinting methods, some challenges and effective strategies for MIT, and highlighted applications of MIPs. Finally, some significant attempts in further developing MIT are also proposed (236 references).
机译:分子印迹技术(MIT)涉及具有模板记忆的聚合物基质中选择性位点的形成。近年来,分子印迹聚合物(MIP)由于具有所需的选择性,物理鲁棒性,热稳定性以及低成本和低成本等优点,已引起广泛关注,并已广泛应用于许多领域,例如固相萃取,化学传感器和人工抗体。易于准备。随着麻省理工学院作为研究热点的迅速发展,它面临着许多挑战,包括生物大分子印迹,异质结合位点,模板泄漏,与水性介质不兼容,低结合能力和缓慢的质量转移,这限制了它在各个方面的应用。 。这篇重要的评论简要回顾了麻省理工学院的现状,特别强调了新颖的印迹方法的重大进展,麻省理工学院的一些挑战和有效策略,并重点介绍了MIP的应用。最后,还提出了进一步开发MIT的一些重要尝试(236个参考文献)。

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