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首页> 外文期刊>Analytica chimica acta >Photopolymerization and photostructuring of molecularly imprinted polymers for sensor applications-A review
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Photopolymerization and photostructuring of molecularly imprinted polymers for sensor applications-A review

机译:用于传感器的分子印迹聚合物的光聚合和光结构化-综述

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摘要

Biosensors are already well established in modern analytical chemistry, and have become important tools for clinical diagnostics, environmental analysis, production monitoring, drug detection or screening. They are based on the specific molecular recognition of a target molecule by a biological receptor such as an antibody or an enzyme. Synthetic biomimetic receptors like molecularly imprinted polymers (MIPs) have been shown to be a potential alternative to biomolecules as recognition element for biosens-ing. Produced by a templating process at the molecular level, MIPs are capable of recognizing and binding target molecules with similar specificity and selectivity to their natural analogues. One of the main challenges in MIP sensor development is the miniaturization of MIP structures and their interfacing with the transducer or with a microchip. Photostructuring appears thereby as one of the most suitable methods for patterning MIPs at the micro and nano scale, directly on the transducer surface. In the present review, a general overview on MIPs in biosensing applications is given, and the photopolymerization and photopatterning of MIPs are particularly described.
机译:生物传感器已经在现代分析化学中建立了良好的地位,并已成为用于临床诊断,环境分析,生产监控,药物检测或筛选的重要工具。它们基于诸如抗体或酶的生物受体对靶分子的特异性分子识别。合成的仿生受体如分子印迹聚合物(MIP)已被证明是生物分子作为生物传感识别元件的潜在替代品。通过在分子水平上的模板化过程产生,MIP能够识别和结合具有与其天然类似物相似的特异性和选择性的靶分子。 MIP传感器开发的主要挑战之一是MIP结构的小型化及其与换能器或微芯片的接口。因此,光结构化是最直接在换能器表面上以微米和纳米级图案化MIP的最合适方法之一。在本综述中,给出了在生物传感应用中MIP的一般概述,并且特别描述了MIP的光聚合和光图案化。

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