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An Integrated Flow Cytometry-Based System for Real-Time High Sensitivity Bacterial Detection and Identification

机译:基于集成流式细胞仪的实时高灵敏度细菌检测和识别系统

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摘要

Foodborne illnesses occur in both industrialized and developing countries, and may be increasing due to rapidly evolving food production practices. Yet some primary tools used to assess food safety are decades, if not centuries, old. To improve the time to result for food safety assessment a sensitive flow cytometer based system to detect microbial contamination was developed. By eliminating background fluorescence and improving signal to noise the assays accurately measure bacterial load or specifically identify pathogens. These assays provide results in minutes or, if sensitivity to one cell in a complex matrix is required, after several hours enrichment. Conventional assessments of food safety require 48 to 56 hours. The assays described within are linear over 5 orders of magnitude with results identical to culture plates, and report live and dead microorganisms. This system offers a powerful approach to real-time assessment of food safety, useful for industry self-monitoring and regulatory inspection.
机译:食源性疾病既发生在工业化国家,也发生在发展中国家,并且由于迅速发展的粮食生产方式而可能在增加。然而,用于评估食品安全性的一些主要工具已经有数十年之久了。为了缩短实现食品安全评估所需的时间,开发了基于灵敏流式细胞仪的系统来检测微生物污染。通过消除背景荧光并改善信噪比,该测定法可以准确地测量细菌负荷或专门鉴定病原体。这些分析可在数分钟内提供结果,或者如果需要对复杂基质中的一个细胞敏感,则可在数小时后进行富集。食品安全的常规评估需要48到56个小时。其中描述的测定法线性超过5个数量级,其结果与培养板相同,并报告了活的和死的微生物。该系统提供了一种功能强大的实时评估食品安全的方法,可用于行业自我监控和法规检查。

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