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Molecular Imprinting Technology in Quartz Crystal Microbalance (QCM) Sensors

机译:石英晶体微天平(QCM)传感器中的分子印迹技术

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摘要

Molecularly imprinted polymers (MIPs) as artificial antibodies have received considerable scientific attention in the past years in the field of (bio)sensors since they have unique features that distinguish them from natural antibodies such as robustness, multiple binding sites, low cost, facile preparation and high stability under extreme operation conditions (higher pH and temperature values, etc.). On the other hand, the Quartz Crystal Microbalance (QCM) is an analytical tool based on the measurement of small mass changes on the sensor surface. QCM sensors are practical and convenient monitoring tools because of their specificity, sensitivity, high accuracy, stability and reproducibility. QCM devices are highly suitable for converting the recognition process achieved using MIP-based memories into a sensor signal. Therefore, the combination of a QCM and MIPs as synthetic receptors enhances the sensitivity through MIP process-based multiplexed binding sites using size, 3D-shape and chemical function having molecular memories of the prepared sensor system toward the target compound to be detected. This review aims to highlight and summarize the recent progress and studies in the field of (bio)sensor systems based on QCMs combined with molecular imprinting technology.
机译:分子印迹聚合物(MIP)作为人工抗体,在过去几年中在(生物)传感器领域受到了相当大的科学关注,因为它们具有独特的功能使其与天然抗体区分开来,例如坚固性,多个结合位点,低成本,易于制备在极端操作条件下(较高的pH和温度值等)具有很高的稳定性。另一方面,石英晶体微量天平(QCM)是一种基于测量传感器表面微小质量变化的分析工具。由于QCM传感器的特异性,灵敏度,高精度,稳定性和可重复性,它们是实用且方便的监视工具。 QCM设备非常适合将使用基于MIP的存储器实现的识别过程转换为传感器信号。因此,QCM和MIPs作为合成受体的组合通过使用基于大小,3D形状和化学功能的基于MIP过程的多重结合位点提高灵敏度,所述大小,3D形状和化学功能具有制备的传感器系统对待检测目标化合物的分子存储。这篇综述旨在突出和总结基于QCM结合分子印迹技术的(生物)传感器系统领域的最新进展和研究。

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