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

机译:用于生物传感应用的双模电光技术:综述

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摘要

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.
机译:监测生物分子相互作用是研究复杂的生物过程和诊断疾病的关键要求。能够提供无标签,实时洞察这些相互作用的技术对于科学和临床社区具有巨大的价值。使用可以提供有关单个生物分子过程多个参数的并行信息的技术,可以提高对生物分子相互作用的了解,并提高检测精度。例如,电光技术结合了光学和电化学信息,以提供更准确和详细的测量结果,从而提供对分子结构和功能的独特见解。在这里,我们对电光生物传感的主要方法进行比较,即电化学表面等离振子共振(EC-SPR),电化学光波导光模光谱(EC-OWLS)和最近报道的基于硅的电子光子方法。该比较考虑了不同的应用空间,例如低浓度生物分子的检测,整合,为了解生物分子过程而对光-物质相互作用的定制以及表面上生物相互作用的2D成像。

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