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简化食源性病原体检测:一种原位高亲和力捕获和染色概念。

Simplified detection of food-borne pathogens: an in situ high affinity capture and staining concept.

机构信息

Université de Lyon 1, F-69000, Lyon, CNRS, UMR5558, Laboratoire de Biométrie et Biologie Evolutive, F-69622, Villeurbanne, France.

出版信息

J Microbiol Methods. 2012 Dec;91(3):501-5. doi: 10.1016/j.mimet.2012.09.015. Epub 2012 Sep 25.

Abstract

Food industries need simple, rapid and cost-effective solutions for pathogen detection in food and environmental samples. In this paper, we describe a simple but novel detection concept combining an affinity capture surface and intracellular metabolic marker to visualize the bacterial presence on the affinity surface. The surface of a Solid Phase Support (SPS) is functionalized with specific phage tail proteins targeted to the bacterial pathogen of interest. The SPS is placed directly into the primary food enrichment bag after stomaching. Following incubation, the captured bacteria are visually detected in situ as a result of the bacterial reduction of the colorless soluble substrate triphenyltetrazolium chloride (TTC) (present in the primary culture medium) to an intracellular red insoluble formazan product. Detection on the SPS is observed as an intense red color after 22 to 40 hours of enrichment. This is not impaired by the presence of food particles and the natural background microflora. The in situ method significantly simplifies pathogen detection by eliminating any post-enrichment intervention that is necessary in the traditional methods of analysis. We have demonstrated the application of this new approach for the detection of Escherichia coli O157: H7, Listeria spp. and Salmonella spp. in artificially contaminated food samples.

摘要

食品行业需要简单、快速且具有成本效益的方法来检测食品和环境样本中的病原体。本文介绍了一种简单但新颖的检测概念,该概念结合了亲和捕获表面和细胞内代谢标志物,以可视化亲和表面上细菌的存在。固相载体 (SPS) 的表面用针对目标细菌病原体的特定噬菌体尾部蛋白进行功能化。SPS 在进行胃消化后直接放入初级食品富集袋中。孵育后,由于细菌将无色可溶性底物三苯基四唑氯化物 (TTC)(存在于初级培养基中)还原为细胞内红色不溶性甲臜产物,因此可在原位检测到捕获的细菌。富集 22 至 40 小时后,SPS 上的检测会呈现出强烈的红色。这不会受到食物颗粒和自然背景微生物群的影响。该原位方法通过消除传统分析方法中所需的任何富集后干预,显著简化了病原体检测。我们已经证明了该新方法在人工污染食品样品中检测大肠杆菌 O157:H7、李斯特菌属和沙门氏菌属的应用。

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