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Integration of a nanostructured dielectrophoretic device and a surface-enhanced Raman probe for highly sensitive rapid bacteria detection

机译:纳米dielectrophoretic的集成设备和表面增强拉曼探针高度敏感的细菌快速检测

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摘要

This work reports a synergistic approach to the concentration, detection and kinetic monitoring of pathogens through the integration of nanostructured dielectrophoresis (DEP) with nanotag-labelled Surface Enhanced Raman Spectroscopy (SERS). A nanoelectrode array made of embedded Vertically Aligned Carbon Nanofibers (VACNFs) at the bottom of a microfluidic chip was used to effectively capture and concentrate nanotag-labelled E. coli DH alpha 5 cells into a 200 mu m x 200 mu m area on which a Raman laser probe was focused. The SERS nanotags were based on iron oxide-gold (IO-Au) core-shell nanoovals (NOVs) of similar to 50 nm size, which were coated with a QSY21 Raman reporter and attached to E. coli through specific immunochemistry. The combination of the greatly enhanced Raman signal by the SERS nanotags and the effective DEP concentration significantly improved the detection limit and speed. The SERS signal was measured with both a confocal Raman microscope and a portable Raman probe during DEP capture, and was fully validated with fluorescence microscopy measurements under all DEP conditions. The SERS measurements were sensitive enough to detect a single bacterium. A concentration detection limit as low as 210 cfu ml(-1) using a portable Raman system was obtained with a DEP capture time of only similar to 50 s. These results demonstrate the potential to develop a compact portable system for rapid and highly sensitive detection of specific pathogens. This system is reusable, requires minimum sample preparation, and is amenable to field applications.
机译:这工作报告一个协同方法浓度、检测和动态监测通过集成的病原体纳米介电泳(DEP)nanotag-labelled表面增强拉曼光谱学(ser)。嵌入式垂直对齐碳纳米纤维(VACNFs)微流控芯片的底部用于有效地捕获和集中精神nanotag-labelled大肠杆菌DHα5细胞200μm x 200μm区喇曼激光器探针是专注。在铁oxide-gold (IO-Au)核壳nanoovals(11月)类似于50 nm大小,这是涂有QSY21喇曼记者和连接通过特定的免疫化学大肠杆菌。极大的增强拉曼信号的组合由ser nanotags和有效管理浓度显著提高检出限和速度。测量与共焦拉曼显微镜和一个便携式拉曼探针DEP捕获,与荧光完全验证在所有DEP条件下显微镜测量。ser测量足够敏感检测一个细菌。检出限低至210 cfu毫升(1)使用便携式拉曼系统获得了管理捕获时间只有类似于50年代。结果表明开发的潜力快速和高度紧凑的便携式系统敏感的特定病原体的检测。系统是可重用的,要求最低样本准备,并服从应用程序。

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