假模板分子印迹聚合物传感器在分析和生物分析中的应用

IF 3.7 Q1 CHEMISTRY, ANALYTICAL
Alaa Bedair , Mahmoud Hamed , Mahmoud El Hassab , Reham E. Kannouma , Reda M. Abdelhameed , Fotouh R. Mansour
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引用次数: 0

摘要

分子印迹技术(MIT)是一种由合成聚合物衍生的针对特定目标分子制备人工受体的方法。用于合成分子印迹聚合物(MIPs)的技术导致与目标分子的确切结构,大小和官能团适当匹配的空腔的发展。因此,这些mip能够特异性地识别目标分子。近几十年来,它已被广泛应用于各种领域,如色谱,抗体和受体模拟,固相萃取,生物传感器等。然而,MIPs在选择模板方面面临限制,主要是因为化合物的安全性和稳定性不足,这使得实验过程具有挑战性。此外,当使用目标分析物作为模板时,存在模板泄漏或不完全去除的可能性,从而导致对实验结果的潜在干扰。因此,MIT的模板分子可能并不总是可以被直接利用。MIT虚拟模板的出现为防止这些情况提供了方便和实用的解决方案。因此,虚拟MIT (DMIT)已经成为一种很有前途的方法。本文综述了DMIT在传感和生物传感中的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dummy template molecularly imprinted polymer-based sensors in analytical and bioanalytical applications
Molecular imprinting technology (MIT) is a method for the preparation of artificial receptors for a certain target molecule derived from synthetic polymers. The technique used in synthesizing the molecularly imprinted polymers (MIPs) results in the development of cavities that are properly matched to the exact structure, sizes, and functional groups of the targeted molecule. As a result, these MIPs are capable of specifically identifying the target molecules. In recent decades, it has been widely employed across various fields such as chromatography, antibody and receptor mimetics, solid-phase extraction, biosensors, and others. However, MIPs faced restrictions in selecting the template, mostly because of the insufficient safety and inadequate stability of the compound, making experimental procedures challenging. Furthermore, when utilizing the target analyte as the template, there is a possibility of template leakage or incomplete removal, leading to potential interference with the experimental outcomes. Consequently, the template molecule for MIT may not always be acceptable for direct utilization. The advent of the MIT dummy template offers a convenient and practical solution to prevent these scenarios. As a result, the dummy MIT (DMIT) has emerged as a promising approach. In this review, the roles of DMIT in sensing and biosensing are discussed.
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来源期刊
Talanta Open
Talanta Open Chemistry-Analytical Chemistry
CiteScore
5.20
自引率
0.00%
发文量
86
审稿时长
49 days
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