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SERS Technique for Rapid Screening and Species Identification of E. Coli, Listeria, and Salmonella

机译:SERS技术用于快速筛查和物种鉴定大肠杆菌,李斯特菌和沙门氏菌

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Techniques for routine and rapid screening of the presence of foodborne bacteria are needed, and this study reports the feasibility of citrate-reduced silver colloidal SERS for identifying E. coli, Listeria, and Salmonella. Relative standard deviation(RSD) of SERS spectra from silver colloidal suspensions and ratios of P-0 SERS peaks from small molecule (K3P04) were used to assess the reproducibility, stability, and binding effectiveness of citrate-reduced silver colloids over batch and storage process. The results suggested the reproducibility of silver colloids over batch process and also stability and consistent binding effectiveness over 60-day storage period. Notably, although silver colloidal nanoparticles were stable for at least 90 days, their binding effectiveness began to decrease slightly after 60-day storage, with a binding reduction of about 12% at 90th day. Colloidal silver SERS, as demonstrated here, could be an important alternative technique in the rapid and simultaneous screeningof the presence of three most outbreak bacteria due to the exclusive biomarkers, label-free and easy sampling attribute.
机译:需要进行常规和快速筛查食物中的细菌存在的技术,这项研究报告了柠檬酸盐还原的银胶体SERs鉴定大肠杆菌,李斯特菌和沙门氏菌的可行性。来自银胶体悬浮液的梭菌偏差(RSD)与小分子(K3P04)的P-0 SERS峰的比率(K3P04)的相对标准偏差(RSD)用于评估柠檬酸盐还原的银胶体在批量和储存过程中的再现性,稳定性和结合效果。结果表明银胶体对批量过程的再现性,以及60天的储存期超过60天的稳定性和一致的结合效果。值得注意的是,虽然银胶体纳米颗粒稳定至少90天,但它们的结合效果开始在60天储存后略微降低,并且在第90天的结合减少约12%。如这里所示,胶体银柱可以是由于独家生物标志物,无标记和易采样属性而快速和同时筛选三种最爆发的细菌的筛选中的重要替代技术。

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