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Detection of Viruses: Atomic Force Microscopy and Surface Enhanced Raman Spectroscopy

机译:病毒检测:原子力显微镜和表面增强拉曼光谱

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This paper demonstrates the capability of atomic force microscopy (AFM) and surface enhanced Raman spectroscopy (SERS) to function effectively as ultra-sensitive readout tools for chip-scale platforms designed for pathogen detection in complex biological media. AFM allows direct (i.e., label-free) visualization and quantification of nanometer-sized viruses captured on a smooth, selective surface. AFM readout led to optimization of a capture substrate for feline calicivirus (FCV), and yielded a limit of detection of 3 x 10~6 FCV/mL. SERS-based detection of FCV, carried out in a sandwich-type assay, requires labelling of the substrate-bound FCV with a selective extrinsic Raman label (ERL). These studies yielded a limit of detection of 1 x 10~6 FCV/mL. The prospects of these two readout methods as additions to the arsenal of tools in bioterrorism prevention are briefly discussed.
机译:本文证明了原子力显微镜(AFM)和表面增强拉曼光谱(SERS)能够有效地用作芯片级平台的超灵敏读出工具,这些平台旨在为复杂生物介质中的病原体检测设计。 AFM允许直接(即无标签)可视化和量化捕获在光滑,选择性表面上的纳米级病毒。 AFM读数可优化猫杯状病毒(FCV)的捕获底物,检测极限为3 x 10〜6 FCV / mL。在三明治型测定中进行的基于SERS的FCV检测需要使用选择性外在拉曼标记(ERL)标记与底物结合的FCV。这些研究的检测极限为1 x 10〜6 FCV / mL。简要讨论了这两种读出方法作为生物恐怖预防工具库的补充的前景。

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