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Peptide-based biosensors: From self-assembled interfaces to molecular probes in electrochemical assays

机译:基于肽的生物传感器:从自组装界面到电化学测定中的分子探针

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Redox-tagged peptides have emerged as functional materials with multiple applications in the area of sensing and biosensing applications due to their high stability, excellent redox properties and versatility of biomolecular interactions. They allow direct observation of molecular interactions in a wide range of affinity and enzymatic assays and act as electron mediators. Short helical peptides possess the ability to self-assemble in specific configurations with the possibility to develop in highly-ordered, stable 1D, 2D and 3D architectures in a hierarchical controlled manner. We provide here a brief overview of the electrochemical techniques available to study the electron transfer in peptide films with particular interest in developing biosensors with immobilized peptide motifs, for biological and clinical applications. (C) 2017 Elsevier B.V. All rights reserved.
机译:氧化还原肽由于其高稳定性,优异的氧化还原性能和生物分子相互作用而具有多种应用,具有多种应用。 它们允许直接观察各种亲和力和酶测定中的分子相互作用,并用作电子介质。 短螺旋肽具有在特定配置中自组装的能力,其能够以分层控制的方式以高度有序,稳定的1D,2D和3D架构开发。 在此提供的简要概述了用于研究肽薄膜的电子转移,特别是在开发具有固定化肽基序的生物传感器的肽膜中的电子转移,用于生物和临床应用。 (c)2017 Elsevier B.v.保留所有权利。

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