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Aptamer-Based Plasmonic Sensor Array for Discrimination of Proteins and Cells with the Naked Eye

机译:基于适体的等离子传感器阵列,用于裸眼识别蛋白质和细胞

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摘要

We developed a colorimetric sensor array with reported protein aptamers as nonspecific receptors. We found that different target proteins could make the aptamer-protected gold nanoparticles (AuNPs) exhibit different aggregation behaviors in the presence of a high concentration salt and cause various color change. On the basis of this phenomenon, we applied a series of reported protein aptamers as a receptor array obtaining a distinct response pattern to each target protein. Seven proteins have been well distinguished with the naked eye at the 50 nM level. Cancerous human cells have also been discriminated from noncancerous cells. This method is simple, label-free, and sensitive. It will broaden the application filed of plasmonic nanoparticle-based sensors and give a new direction of developing sensitive array sensing systems.
机译:我们开发了一种比色传感器阵列,其中报道了蛋白质适体作为非特异性受体。我们发现不同的目标蛋白可以使适体保护的金纳米颗粒(AuNPs)在高浓度盐存在下表现出不同的聚集行为,并引起各种颜色变化。基于此现象,我们应用了一系列报道的蛋白适体作为受体阵列,从而获得了对每种靶蛋白的独特反应模式。用50 nM的肉眼可以很好地分辨出7种蛋白质。癌细胞也已与非癌细胞区分开。此方法简单,无标签且敏感。这将拓宽基于等离子纳米粒子的传感器的应用领域,并为开发灵敏的阵列传感系统提供新的方向。

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