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双模光电技术在生物传感应用中的研究进展综述

Dual-Mode Electro-Optical Techniques for Biosensing Applications: A Review.

机构信息

Department of Physics, University of York, York YO10 5DD, UK.

Department of Electronic Engineering, University of York, York YO10 5DD, UK.

出版信息

Sensors (Basel). 2017 Sep 7;17(9):2047. doi: 10.3390/s17092047.

Abstract

The monitoring of biomolecular interactions is a key requirement for the study of complex biological processes and the diagnosis of disease. Technologies that are capable of providing label-free, real-time insight into these interactions are of great value for the scientific and clinical communities. Greater understanding of biomolecular interactions alongside increased detection accuracy can be achieved using technology that can provide parallel information about multiple parameters of a single biomolecular process. For example, electro-optical techniques combine optical and electrochemical information to provide more accurate and detailed measurements that provide unique insights into molecular structure and function. Here, we present a comparison of the main methods for electro-optical biosensing, namely, electrochemical surface plasmon resonance (EC-SPR), electrochemical optical waveguide lightmode spectroscopy (EC-OWLS), and the recently reported silicon-based electrophotonic approach. The comparison considers different application spaces, such as the detection of low concentrations of biomolecules, integration, the tailoring of light-matter interaction for the understanding of biomolecular processes, and 2D imaging of biointeractions on a surface.

摘要

生物分子相互作用的监测是研究复杂生物过程和疾病诊断的关键要求。能够提供无标记、实时洞察这些相互作用的技术对科学界和临床界都具有巨大的价值。通过能够提供单个生物分子过程多个参数的并行信息的技术,可以实现对生物分子相互作用的更深入理解和提高检测准确性。例如,光电技术将光学和电化学信息结合起来,提供更准确、更详细的测量结果,从而深入了解分子结构和功能。在这里,我们比较了光电生物传感的主要方法,即电化学表面等离子体共振(EC-SPR)、电化学光导波光路光谱学(EC-OWLS)和最近报道的基于硅的光电方法。比较考虑了不同的应用空间,例如检测低浓度的生物分子、集成、调整光-物质相互作用以理解生物分子过程以及在表面上进行 2D 生物相互作用成像。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/246d/5620729/c07c1a664275/sensors-17-02047-g001.jpg

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