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Surface-Enhanced Raman Spectroscopy Based Quantitative Bioassay on Aptamer-Functionalized Nanopillars Using Large-Area Raman Mapping

机译:基于表面增强拉曼光谱的大面积拉曼作图对适体功能化纳米柱的定量生物测定

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摘要

Surface-enhanced Raman spectroscopy (SERS) has been used in a variety of biological applications due to its high sensitivity and specificity. Here, we report a SERS-based biosensing approach for quantitative detection of biomolecules. A SERS substrate bearing gold-decorated silicon nanopillars is functionalized with aptamers for sensitive and specific detection of target molecules. In this study, TAMRA-labeled vasopressin molecules in the picomolar regime (1 pM to 1 nM) are specifically captured by aptamers on the nanostructured SERS substrate and monitored by using an automated SERS signal mapping technique. From the experimental results, we show concentration-dependent SERS responses in the picomolar range by integrating SERS signal intensities over a scanning area. It is also noted that our signal mapping approach significantly improves statistical reproducibility and accounts for spot-to-spot variation in conventional SERS quantification. Furthermore, we have developed an analytical model capable of predicting experimental intensity distributions on the substrates for reliable quantification of biomolecules. Lastly, we have calculated the minimum needed area of Raman mapping for efficient and reliable analysis of each measurement. Combining our SERS mapping analysis with an aptamer-functionalized nanopillar substrate is found to be extremely efficient for detection of low-abundance biomolecules.
机译:表面增强拉曼光谱(SERS)由于其高灵敏度和特异性而被用于各种生物学应用中。在这里,我们报告了一种基于SERS的生物传感方法,用于定量检测生物分子。带有金装饰的硅纳米柱的SERS基板用适配子进行功能化,可灵敏地检测目标分子。在这项研究中,皮摩尔状态(1 pM至1 nM)中TAMRA标记的加压素分子被纳米结构SERS底物上的适体特异性捕获,并使用自动SERS信号定位技术进行监测。从实验结果来看,我们通过积分扫描区域内的SERS信号强度,显示了在皮摩尔范围内浓度依赖性SERS响应。还应注意,我们的信号映射方法可显着提高统计重现性,并说明常规SERS定量分析中的点对点变化。此外,我们已经开发了一种分析模型,能够预测底物上的实验强度分布,以可靠地定量生物分子。最后,我们计算了拉曼测绘所需的最小面积,以便对每次测量进行有效而可靠的分析。我们发现,将我们的SERS定位分析与适体功能化的纳米柱基质相结合,对于检测低丰度生物分子非常有效。

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