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首页> 外文期刊>ACS applied materials & interfaces >Culture-Free Detection of Bacterial Pathogens on Plasmonic Nanopillar Arrays Using Rapid Raman Mapping
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Culture-Free Detection of Bacterial Pathogens on Plasmonic Nanopillar Arrays Using Rapid Raman Mapping

机译:使用快速拉曼映射,无培养检测等离子体纳米玻璃阵列上的细菌病原体

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We utilized a fast Raman spectral mapping technique for fast detection of bacterial pathogens. Three-dimensional (3D) plasmonic nanopillar arrays were fabricated using the nanolithography-free process consisting of maskless Ar plasma treatment of a polyethylene terephthalate substrate and subsequent metal deposition. Bacterial pathogens were immobilized on the positively charged poly(L-lysine)-coated 3D plasmonic substrate through electrostatic interactions. Then, the bacterial surfaces were selectively labeled with antibody-conjugated surface-enhanced Raman scattering (SERS) nanotags, and Raman mapping images were collected and statistically analyzed for quantitative analysis of bacteria. Salmonella typhimurium was selected as a model pathogen bacterium to confirm the efficacy of our SERS imaging technique. Minimum number of Raman mapping points with statistical reliability was determined to reduce assay time. It was possible to get a statistically reliable standard calibration curve for 529 pixels (laser spot with 60 mu m interval), which required a total mapping time of 45 min to get a standard calibration curve for five different concentrations of bacteria in the 0 to 10(6) CFU/mL range. No amplification step was necessary for quantification because low-abundance target bacteria could be measured using the Raman spectral mapping technique. Therefore, this approach allows accurate quantification of bacterial pathogens without any culturing or enrichment process.
机译:我们利用快速拉曼光谱映射技术,用于快速检测细菌病原体。使用纳米光刻的无掩模Ar等离子体处理和随后的金属沉积,使用纳米光刻的无掩模AR等离子体处理来制造三维(3D)等离子体纳米玻璃阵列。通过静电相互作用将细菌病原体固定在带正电荷的聚(L-赖氨酸) - 涂覆的3D等离子体基底上。然后,用抗体缀合的表面增强拉曼散射(SERS)纳米轨选择性地标记细菌表面,并在统计上分析拉曼映射图像以进行细菌的定量分析。选择沙门氏菌毒鼠作为模型病原体细菌,以确认我们的SERS成像技术的功效。确定具有统计可靠性的最小拉曼映射点以减少测定时间。有可能获得529像素的统计可靠的标准校准曲线(60μm的激光斑点),其总映射时间为45分钟,以获得5种不同浓度的0到10级别的标准校准曲线(6)CFU / ml范围。由于可以使用拉曼光谱映射技术来测量低丰度靶细菌,因此不需要扩增步骤。因此,这种方法可以准确地定量细菌病原体而没有任何培养或富集过程。

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