Ottawa Laboratory-Carling, Canadian Food Inspection Agency, Central Experimental Farm, 960 Carling Avenue, Ottawa, Canada.
J Food Prot. 2011 Mar;74(3):365-72. doi: 10.4315/0362-028X.JFP-10-450.
Enterohemorrhagic Escherichia coli (EHEC) strains bearing the O antigenic determinants O157, O26, O111, O103, and O145 have a high rate of association with foodborne illness worldwide. To expand Canadian food inspection capability, a cloth-based hybridization array system (CHAS) was developed for the identification and characterization of priority EHEC. This method targets key virulence genes (eae, hlyA, vt1, and vt2) plus the rfbE gene specifying the O157 antigenic determinant, and the wzx genes specifying the O26, O111, O103, and O145 determinants. Multiplex PCR products incorporating a digoxigenin label were detected by hybridization with an array of specific oligonucleotide probes immobilized on a polyester cloth support, with subsequent immunoenzymatic assay of the captured amplicons. This method identified the relevant markers in 85 different strains bearing various combinations of the target genes (virulence and priority O-antigen markers). None of the target genes was detected in 26 different strains of other E. coli and non-E. coli bacteria. The CHAS demonstrated 100% inclusivity and 100% exclusivity characteristics, with respect to detection of the various markers among different bacterial strains. The CHAS demonstrated 100% inclusivity and 100% exclusivity characteristics, with respect to detection of the markers among various target and nontarget bacteria. The entire procedure could be completed in less than 5 h, and is useful for the identification of priority EHEC colonies isolated from foods by using enrichment culture techniques.
携带 O 抗原决定簇 O157、O26、O111、O103 和 O145 的肠出血性大肠杆菌 (EHEC) 菌株与全球范围内的食源性疾病有很高的关联率。为了扩大加拿大的食品检验能力,开发了一种基于织物的杂交阵列系统 (CHAS),用于鉴定和表征优先 EHEC。该方法针对关键毒力基因 (eae、hlyA、vt1 和 vt2) 加上指定 O157 抗原决定簇的 rfbE 基因,以及指定 O26、O111、O103 和 O145 决定簇的 wzx 基因。通过与固定在聚酯布载体上的特定寡核苷酸探针杂交,检测包含地高辛标记的多重 PCR 产物,随后对捕获的扩增子进行免疫酶测定。该方法在携带目标基因(毒力和优先 O-抗原标记)各种组合的 85 种不同菌株中鉴定出相关标记。在 26 种不同的大肠杆菌和非大肠杆菌中未检测到目标基因。CHAS 在不同细菌菌株中检测各种标记的包容性和排他性特征均为 100%。CHAS 在检测各种目标和非目标细菌中的标记时具有 100%的包容性和 100%的排他性特征。整个过程可以在不到 5 小时内完成,对于使用富集培养技术从食品中分离出的优先 EHEC 菌落的鉴定非常有用。