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A Model System for Pathogen Detection Using a Two-Component Bacteriophage/Bioluminescent Signal Amplification Assay

机译:一种使用双组分噬菌体/生物发光信号放大测定的病原体检测模型系统

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Microbial contamination has become a mounting concern the last decade due to an increased emphasis of minimally processed food products specifically produce, and the recognition of foodborne pathogens such as Campylobacter jejuni, Escherichia coli 0157:H7, and Listeria monocytogenes. This research investigates a detection approach utilizing bacteriophage pathogen specificity coupled with a bacterial bioluminescent bioreporter utilizing the quorum sensing molecule from Vibrio fischeri, N-(3-oxohexanoyl)-homoserine lactone (3-oxo-C6-HSL). The 3-oxo-C6-HSL molecules diffuse out of the target cell after infection and induce bioluminescence from a population of 3-oxo-C6-HSL bioreporters (ROLux). E. coli phage M13, a well-characterized bacteriophage, offers a model system testing the use of bacteriophage for pathogen detection through cell-to-cell communication via a LuxR/3-oxo-C6-HSL system. Simulated temperate phage assays tested functionality of the ROLux reporter and production of 3-oxo-C6-HSL by various test strains. These assays showed detection limits of 10 cfu after 24 hours in a varietry of detection formats. Assays incorporating the bacteriophage M13-luxI with the ROLux reporter and a known population of target cells were subsequently developed and have shown consistent detection limits of 10~5cfu target organisms. Measurable light response from high concentrations of target cells was almost immediate, suggesting an enrichment step to further improve detection limits and reduce assay time.
机译:微生物污染已经成为过去十年的持续担忧,因为增加了微小加工的食品特异性生产的食品,以及鉴别食虫病原体,例如Campylobacter Jejuni,Escherichia Coli 0157:H7和Histeria单核细胞增生。该研究研究了利用来自弧菌Fischeri,N-(3-氧己酰基)-Homoserine内酯(3-氧代-C6-HSL)的克鲁姆感测分子偶联的噬菌体病原体特异性的检测方法。 3-氧代-C6-HSL分子在感染后弥漫于靶细胞,并从3-氧代-C6-HSL生物投发器(ROLUX)的群体中诱导生物发光。大肠杆菌噬菌体M13,一种特征良好的噬菌体,提供了一种模型系统,其测试使用噬菌体通过通过Luxr / 3-oxo-C6-HSL系统通过细胞对细胞通信使用噬菌体检测。模拟温带噬菌体测定试验ROLUX报告者的功能和各种测试菌株的3-氧代-C6-HSL的生产。这些测定在检测格式的变量下24小时后显示出10个CFU的检测限。随后开发了与ROLUMOPOPAR和ROLUMOPOPAR和已知的靶细胞群体群体的测定,并显示了10〜5CFU靶生物的一致检测限。来自高浓度的靶细胞的可测量光反应几乎立即,表明进一步改善检测限并降低测定时间的富集步骤。

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