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电合成分子印迹聚合物传感平台在生物分析物检测中的最新进展。

Recent Advances in Electrosynthesized Molecularly Imprinted Polymer Sensing Platforms for Bioanalyte Detection.

机构信息

Faculty of Science & Engineering, Div. of Chemistry & Environmental Science, Manchester Metropolitan University, John Dalton Building, Chester Street, Manchester M1 5GD, UK.

Sensor Engineering, Faculty of Science and Engineering, Maastricht University, P.O. Box 616, 6200 MD Maastricht, The Netherlands.

出版信息

Sensors (Basel). 2019 Mar 9;19(5):1204. doi: 10.3390/s19051204.

Abstract

The accurate detection of biological materials has remained at the forefront of scientific research for decades. This includes the detection of molecules, proteins, and bacteria. Biomimetic sensors look to replicate the sensitive and selective mechanisms that are found in biological systems and incorporate these properties into functional sensing platforms. Molecularly imprinted polymers (MIPs) are synthetic receptors that can form high affinity binding sites complementary to the specific analyte of interest. They utilise the shape, size, and functionality to produce sensitive and selective recognition of target analytes. One route of synthesizing MIPs is through electropolymerization, utilising predominantly constant potential methods or cyclic voltammetry. This methodology allows for the formation of a polymer directly onto the surface of a transducer. The thickness, morphology, and topography of the films can be manipulated specifically for each template. Recently, numerous reviews have been published in the production and sensing applications of MIPs; however, there are few reports on the use of electrosynthesized MIPs (eMIPs). The number of publications and citations utilising eMIPs is increasing each year, with a review produced on the topic in 2012. This review will primarily focus on advancements from 2012 in the use of eMIPs in sensing platforms for the detection of biologically relevant materials, including the development of increased polymer layer dimensions for whole bacteria detection and the use of mixed monomer compositions to increase selectivity toward analytes.

摘要

几十年来,对生物材料的准确检测一直是科学研究的前沿领域。这包括对分子、蛋白质和细菌的检测。仿生传感器旨在复制生物系统中发现的敏感和选择性机制,并将这些特性纳入功能传感平台。分子印迹聚合物 (MIPs) 是可以形成与特定目标分析物互补的高亲和力结合位点的合成受体。它们利用形状、大小和功能来对目标分析物进行敏感和选择性识别。合成 MIPs 的一种途径是通过电化学聚合,主要使用恒电位方法或循环伏安法。这种方法允许聚合物直接在换能器表面形成。可以专门针对每个模板来操纵薄膜的厚度、形态和形貌。最近,在 MIPs 的生产和传感应用方面已经发表了许多评论;然而,关于电合成 MIPs (eMIPs) 的使用却很少有报道。每年利用 eMIPs 的出版物和引文数量都在增加,2012 年就该主题发表了一篇评论。本综述将主要关注 2012 年以来在用于检测生物相关材料的传感平台中使用 eMIPs 的进展,包括为检测整个细菌而增加聚合物层尺寸的发展,以及使用混合单体组成来提高对分析物的选择性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fda7/6427210/a62f31162ff5/sensors-19-01204-g001.jpg

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