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Functional Molecular Interfaces for Impedance-Based Diagnostics

机译:基于阻抗的诊断功能的功能分子界面

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摘要

In seeking to develop and optimize reagentless electroanalytical assays, a consideration of the transducing interface features lies key to any subsequent sensitivity and selectivity. This review briefly summarizes some of the most commonly used receptive interfaces that have been employed within the development of impedimetric molecular sensors. We discuss the use of high surface area carbon, nanoparticles, and a range of bioreceptors that can subsequently be integrated. The review spans the most commonly utilized biorecognition elements, such as antibodies, antibody fragments, aptamers, and nucleic acids, and touches on some novel emerging alternatives such as nanofragments, molecularly imprinted polymers, and bacteriophages. Reference is made to the immobilization chemistries available along with a consideration of both optimal packing density and recognition probe orientation. We also discuss assay-relevant mechanistic details and applications in real sample analysis.
机译:在寻求开发和优化无可测量的电分析测定中,考虑转换界面特征是任何随后的敏感性和选择性的关键。 本综述简要概述了一些最常用的接受界面,这些接收界面已在阻抗分子传感器的开发中使用。 我们讨论使用高表面积碳,纳米颗粒和一系列能够随后整合的生物受体。 该评论跨越最常用的生物释认元素,例如抗体,抗体片段,适体和核酸,并且触及一些新出现的替代品,例如纳米痕,分子印迹聚合物和噬菌体。 通过考虑最佳填充密度和识别探针取向,参考固定化学品。 我们还讨论了测定相关的机制细节和实际样本分析中的应用。

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