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SEL a Selective Enrichment Broth for Simultaneous Growth of Salmonella enterica Escherichia coli O157:H7 and Listeria monocytogenes

机译:SEL沙门氏菌大肠杆菌O157:H7和单核细胞增生性李斯特菌同时生长的选择性富集肉汤

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摘要

Multipathogen detection on a single-assay platform not only reduces the cost for testing but also provides data on the presence of pathogens in a single experiment. To achieve this detection, a multipathogen selective enrichment medium is essential to allow the concurrent growth of pathogens. SEL broth was formulated to allow the simultaneous growth of Salmonella enterica, Escherichia coli O157:H7, and Listeria monocytogenes. The results were compared to those obtained with the respective individual selective enrichment broths, Rappaport-Vassiliadis (RV) for S. enterica, modified E. coli broth with 20 mg of novobiocin/liter for E. coli O157:H7, and Fraser broth for L. monocytogenes, and a currently used universal preenrichment broth (UPB). The growth of each pathogen in SEL inoculated at 101 or 103 CFU/ml was superior to that in the respective individual enrichment broth, except in the case of RV, in which Salmonella cells inoculated at both concentrations grew equally well. In mixed-culture experiments with cells of the three species present in equal concentrations or at a 1:10:1,000 ratio, the overall growth was proportional to the initial inoculation levels; however, the growth of L. monocytogenes was markedly suppressed when cells of this species were present at lower concentrations than those of the other two species. Further, SEL was able to resuscitate acid- and cold-stressed cells, and recovery was comparable to that in nonselective tryptic soy broth containing 6% yeast extract but superior to that in the respective individual selective broths. SEL promoted the growth of all three pathogens in a mixture in ready-to-eat salami and in turkey meat samples. Moreover, each pathogen was readily detected by a pathogen-specific immunochromatographic lateral-flow or multiplex PCR assay. Even though the growth of each pathogen in SEL was comparable to that in UPB, SEL inhibited greater numbers of nontarget organisms than did UPB. In summary, SEL was demonstrated to be a promising new multiplex selective enrichment broth for the detection of the three most prominent food-borne pathogens by antibody- or nucleic acid-based methods.
机译:在单一测定平台上进行多病原体检测不仅可以降低测试成本,而且可以在单一实验中提供有关病原体存在的数据。为了实现这种检测,多病原体选择性富集培养基对于允许病原体同时生长至关重要。配制SEL肉汤以允许沙门氏菌,大肠杆菌O157:H7和单核细胞增生李斯特氏菌同时生长。将结果与分别使用单独的选择性富集肉汤,用于肠炎链球菌的Rappaport-Vassiliadis(RV),用于大肠杆菌O157:H7的含20 mg新霉素/升的改良大肠杆菌肉汤和用于F.单核细胞增生李斯特菌和目前使用的通用预富集肉汤(UPB)。在10 1 或10 3 CFU / ml接种的SEL中,每种病原体的生长均优于各个单独的富集肉汤,在RV中除外。两种浓度接种的沙门氏菌细胞均生长良好。在三个物种的细胞以相同浓度或以1:10:1,000的比例存在的混合培养实验中,总体生长与初始接种水平成正比。然而,当该物种的细胞以比其他两个物种更低的浓度存在时,单核细胞增生李斯特菌的生长被显着抑制。此外,SEL能够使受酸和冷应激的细胞恢复活力,其回收率与含有6%酵母提取物的非选择性胰蛋白酶大豆肉汤相当,但优于各个单独的选择性肉汤。 SEL促进了即食香肠和火鸡肉样品中混合物中所有三种病原体的生长。此外,通过病原体特异性免疫层析侧流或多重PCR分析很容易检测出每种病原体。即使SEL中每种病原体的生长与UPB中的病原体生长相当,但SEL抑制的非目标生物数量均比UPB大。总之,SEL被证明是一种有前途的新的多重选择性富集肉汤,用于通过基于抗体或核酸的方法检测三种最主要的食源性病原体。

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