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首页> 外文期刊>Colloids and Surfaces, B. Biointerfaces >Development of impedimetric and optical calcium biosensor by using modified gold electrode with porcine S100A12 protein
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Development of impedimetric and optical calcium biosensor by using modified gold electrode with porcine S100A12 protein

机译:猪S100A12蛋白修饰金电极开发阻抗式和光学钙生物传感器

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We describe the development of a label free method to analyze the interactions between Ca~(2+) and the porcine S100A12 protein immobilized on polyvinyl butyral (PVB). The modified gold electrodes were characterized using cyclic voltammetry (CV), electrochemical impedance spectroscopy (EIS), scanning electron microscopy (SEM) and surface plasmon resonance (SPR) techniques. SEM analyses of PVB and PVB-S100A12 showed a heterogeneous distribution of PVB spherules on gold surface. EIS and CV measurements have shown that redox probe reactions on the modified gold electrodes were partially blocked due the adsorption of PVB-S100A12, and confirm the existence of a positive response of the immobilized S100A12 to the presence of calcium ions. The biosensor exhibited a wide linear response to Ca~(2+) concentrations ranging from 12.5 to 200mM. The PVB-S100A12 seems to be bound to the gold electrode surface by physical adsorption; we observed an increase of 1184.32m° in the SPR angle after the adsorption of the protein on the PVB surface (in an indication that 9.84ng of S100A12 are adsorbed per mm~2 of the Au-PVB electrode), followed by a further increase of 581.66m° after attachment of the Ca~(2+) ions. In addition, no SPR response is obtained for non-specific ions. These studies might be useful as a platform for the design of new reusable and sensitive biosensing devices that could find use in the clinical applications.
机译:我们描述了一种无标记方法的发展,以分析Ca〜(2+)与固定在聚乙烯醇缩丁醛(PVB)上的猪S100A12蛋白之间的相互作用。修饰的金电极使用循环伏安法(CV),电化学阻抗谱(EIS),扫描电子显微镜(SEM)和表面等离子体共振(SPR)技术进行表征。 SEM对PVB和PVB-S100A12的分析表明,金表面上PVB球的分布不均。 EIS和CV测量表明,修饰的金电极上的氧化还原探针反应由于PVB-S100A12的吸附而被部分阻止,并证实了固定的S100A12对钙离子存在正响应。该生物传感器对Ca〜(2+)浓度范围为12.5至200mM的线性响应较宽。 PVB-S100A12似乎是通过物理吸附结合到金电极表面的。我们观察到蛋白质在PVB表面上的吸附后SPR角增加了1184.32m°(这表明,每mm〜2的Au-PVB电极吸附了9.84ng S100A12),然后进一步增加Ca〜(2+)离子附着后的581.66m°。另外,对于非特异性离子没有获得SPR响应。这些研究可用作设计可在临床应用中使用的新型可重复使用的敏感生物传感设备的平台。

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