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Simultaneous detection of multiple biomarkers by means of SERS on polymer nanopillar - gold arrays

机译:通过聚合物纳米玻璃 - 金阵列的SERS同时检测多种生物标志物 - 金阵列

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The detection of biomarkers by means of Surface Enhanced Raman Spectroscopy (SERS) is foreseen to became a very important tool in the clinical practice because of its excellent sensitivity and potential for the simultaneous detection of multiple biomarkers. In the present paper we describe how it was possible to build a sensor for the detection of genetic biomarkers involved in acute myeloid leukemia. The assay is based on the use of a specifically designed SERS substrate made of a 2D crystal structure of polymeric pillars embedded in a gold layer. This substrate is characterized by good enhancing properties coupled with an excellent homogeneity. The SERS substrate was conjugated with DNA probes complementary to a target sequence and used in a sandwich assay with gold nanoparticles labeled with a second DNA probe and a Raman reporter. The so developed assay allowed the detection of a leukemia biomarker (WTl gene) and an housekeeping gene with low picomolar sensitivity. At last, we optimized the assay in order to tackle one of the main limitations of SERS based assay: the loss of signal that is observed when the Raman spectra are collected in liquid. Combining a preferential functionalization on the polymeric pillars with a different height of the polymer pillars from the gold layer the assay demonstrated its effectiveness even when measured in buffer.
机译:通过表面增强的拉曼光谱(SERS)检测生物标志物(SERS)是因为其在临床实践中成为一个非常重要的工具,因为其具有同时检测多种生物标志物的优异敏感性和潜力。在本文中,我们描述了如何建立用于检测急性髓鞘白血病遗传生物标志物的传感器。该测定基于使用由嵌入金层中的聚合物柱的2D晶体结构制成的专门设计的SERS基板。该基板的特征在于良好的增强性能,其耦合具有优异的均匀性。将SERS衬底与与靶序列互补的DNA探针缀合,并用夹层测定用含有第二DNA探针的金纳米颗粒和拉曼报告者。所开发的测定允许检测白血病生物标志物(WTL基因)和具有低皮质摩尔敏感性的内政基因。最后,我们优化了测定以解决基于SERS的测定的主要局限性:当在液体中收集拉曼光谱时观察到的信号丢失。将优先官能化与来自金层的聚合物柱的不同高度的聚合物柱的优先官能化相结合,即使在缓冲液中测量时也表现出其有效性。

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