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Enhancing performance of a miniaturized surface plasmon resonance sensor in the reflectance detection mode using a waveguide-coupled bimetallic chip

机译:使用波导耦合双金属芯片在反射率检测模式下增强小型表面等离子体共振传感器的性能

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摘要

The characteristics of a waveguide-coupled bimetallic (WcBiM) chip in a miniaturized surface plasmon resonance (SPR) sensor and its detection capability for a low molecular weight biomolecule were investigated. The configuration of the WcBiM chip was gold (Au)/waveguide (ZnS-SiO2)/silver (Ag). In the intensity measurement mode, the sensitivity could be improved by reducing the full width at half maximum (FWHM) of the reflectance curve. The FWHM of the WcBiM chip is narrower than that of the Au chip, which suggests that the slope of the reflectance curve for the WcBiM chip is steeper. In order to generate enhanced resolution, the reflectance should be monitored at the specific angle where the slope is the steepest in the reflectance curve. For the detection of biotin that is a low molecular weight biomolecule, streptavidin was formed on the SPR sensor chip surface. The response of the SPR to biotin at various concentrations was then acquired. The sensitivities of the WcBiM chip and the Au chip were 0.0052%/(ng/ml) and 0.0021%/(ng/ml), respectively. The limit of detection of the biotin concentration for both the WcBiM and Au chips was calculated. The values were 2.87 ng/ml for the WcBiM chip and 16.63 ng/ml for the Au chip. Enhancement of the sensitivity in the intensity detection mode was achieved using the WcBiM chip compared with the Au chip. Therefore, sufficient sensitivity for the detection of a disease-related biomarker is attainable with the WcBiM chip in the intensity measurement mode using a miniaturized SPR sensor.
机译:研究了小型表面等离子体共振(SPR)传感器中波导耦合双金属(WcBiM)芯片的特性及其对低分子量生物分子的检测能力。 WcBiM芯片的配置为金(Au)/波导(ZnS-SiO2)/银(Ag)。在强度测量模式下,可以通过减小反射率曲线的半峰全宽(FWHM)来提高灵敏度。 WcBiM芯片的FWHM比Au芯片的FWHM窄,这表明WcBiM芯片的反射率曲线的斜率更陡。为了产生更高的分辨率,应该在反射率曲线中斜率最陡的特定角度处监视反射率。为了检测低分子量生物分子的生物素,在SPR传感器芯片表面形成了链霉亲和素。然后获得SPR对各种浓度的生物素的反应。 WcBiM芯片和Au芯片的灵敏度分别为0.0052%/(ng / ml)和0.0021%/(ng / ml)。计算了WcBiM和Au芯片的生物素浓度检测极限。对于WcBiM芯片,该值为2.87 ng / ml,对于Au芯片,该值为16.63 ng / ml。与Au芯片相比,使用WcBiM芯片可以提高强度检测模式下的灵敏度。因此,利用WcBiM芯片在使用小型化的SPR传感器的强度测量模式下,能够获得与疾病相关的生物标志物的检测足够的灵敏度。

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