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基于 CBD 磁分离与 A511::检测的活细胞超高灵敏快速诊断

Ultrasensitive and Fast Diagnostics of Viable Cells by CBD Magnetic Separation Combined with A511:: Detection.

机构信息

Institute of Food, Nutrition and Health, ETH Zurich, Schmelzbergstrasse 7, 8092 Zurich, Switzerland.

出版信息

Viruses. 2018 Nov 13;10(11):626. doi: 10.3390/v10110626.

Abstract

The genus includes foodborne pathogens that cause life-threatening infections in those at risk, and sensitive and specific methods for detection of these bacteria are needed. Based on their unrivaled host specificity and ability to discriminate viable cells, bacteriophages represent an ideal toolbox for the development of such methods. Here, the authors describe an ultrasensitive diagnostic protocol for by combining two phage-based strategies: (1) specific capture and concentration of target cells by magnetic separation, harnessing cell wall-binding domains from phage endolysins (CBD-MS); and (2) highly sensitive detection using an adaptation of the A511:: bioluminescent reporter phage assay in a microwell plate format. The combined assay enabled direct detection of approximately 100 bacteria per ml of pure culture with genus-level specificity in less than 6 h. For contaminated foods, the procedure included a 16 h selective enrichment step, followed by CBD-MS separation and A511:: detection. It was able to consistently detect extremely low numbers (0.1 to 1.0 cfu/g) of viable cells, in a total assay time of less than 22 h. These results demonstrate the superiority of this phage-based assay to standard culture-based diagnostic protocols for the detection of viable bacteria, with respect to both sensitivity and speed.

摘要

该属包括食源性病原体,可导致高危人群发生危及生命的感染,因此需要敏感且特异的方法来检测这些细菌。基于其无与伦比的宿主特异性和区分活细胞的能力,噬菌体是开发此类方法的理想工具。在这里,作者通过结合两种基于噬菌体的策略,描述了一种针对 的超灵敏诊断方案:(1)利用 噬菌体内切溶素的细胞壁结合结构域(CBD-MS)通过磁分离特异性捕获和浓缩靶细胞;(2)在微孔板格式中,采用 A511::发光报告噬菌体测定法的改编进行高度灵敏的检测。组合检测方法能够在不到 6 小时的时间内直接检测到每毫升纯培养物中约 100 个细菌,具有属水平的特异性。对于污染食品,该程序包括 16 小时的选择性富集步骤,然后进行 CBD-MS 分离和 A511::检测。它能够始终以小于 22 小时的总检测时间检测到极低数量(0.1 至 1.0 cfu/g)的活菌。这些结果表明,与基于标准培养的诊断方案相比,这种基于噬菌体的检测方法在灵敏度和速度方面都具有优越性,可用于检测活菌。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a36c/6266503/d5fcf115808f/viruses-10-00626-g001.jpg

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