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Simultaneous Electrochemical Impedance Spectroscopy and Localized Surface Plasmon Resonance in a Microfluidic Chip: New Insights into the Spatial Origin of the Signal

机译:同时电化学阻抗谱和微流控芯片中的局部表面等离子体共振:信号的空间起源的新见解。

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A novel flow-through sensor based on electrochemical impedance spectroscopy (EIS) and localized surface plasmon resonance (LSPR) for analyzing biomolecular interactions under flow and static conditions is developed and characterized. The sensor consists of a double side gold-coated perforated polycarbonate membrane as part of a microfluidic system made of poly(dimethylsiloxane) (PDMS). LSPR and EIS measurements are carried out simultaneously by applying media changes (water to NaCl solutions), unspecific adsorption of bovine serum albumin (BSA), or specific lectin binding on glycopolymer brushes. For BSA binding at the surface, EIS sensor signals mainly contain information from the binding activities at the sensor surface at low frequencies, whereas at high frequencies the change of bulk medium is the main contribution to the EIS signal. Here, the LSPR signal corresponds with EIS signal,at high frequency. In contrast, in the case of lectin binding on glycopolymer brushes (3.4 nm thick), where the binding mainly takes place in the brush layer in the vicinity of the surface, LSPR data are correlated with the EIS signals at low frequencies. This leads to the conclusion that the origin of LSPR signals strongly depends on surface coverage and can be specified by simultaneously carrying out EIS measurements.
机译:基于电化学阻抗谱(EIS)和局部表面等离子体共振(LSPR)的新型流通传感器用于分析在流动和静态条件下的生物分子相互作用。该传感器由双面镀金的多孔聚碳酸酯膜组成,这是由聚二甲基硅氧烷(PDMS)制成的微流体系统的一部分。 LSPR和EIS测量可通过应用介质变化(水至NaCl溶液),牛血清白蛋白(BSA)的非特异性吸附或糖聚合物刷上的特异性凝集素结合来同时进行。对于表面上的BSA结合,EIS传感器信号主要包含低频时来自传感器表面结合活动的信息,而在高频下,散装介质的变化是EIS信号的主要贡献。此处,LSPR信号对应于高频的EIS信号。相反,在凝集素在糖聚合物刷(3.4 nm厚)上结合的情况下,结合主要发生在表面附近的刷层中,LSPR数据与低频下的EIS信号相关。由此得出结论,LSPR信号的来源很大程度上取决于表面覆盖范围,并且可以通过同时执行EIS测量来确定。

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