Carloni Elisa, Rotundo Luca, Brandi Giorgio, Amagliani Giulia
Department of Biomolecular Science, Section of Hygiene, University of Urbino "Carlo Bo", Via Santa Chiara 27, 61029, Urbino, PU, Italy.
Folia Microbiol (Praha). 2018 Nov;63(6):735-742. doi: 10.1007/s12223-018-0617-0. Epub 2018 May 25.
The application of rapid, specific, and sensitive methods for pathogen detection and quantification is very advantageous in diagnosis of human pathogens in several applications, including food analysis. The aim of this study was the evaluation of a method for the multiplexed detection and quantification of three significant foodborne pathogenic species (Escherichia coli O157, Salmonella spp., and Listeria monocytogenes). The assay combines specific DNA extraction by multiplex magnetic capture hybridization (mMCH) with multiplex real-time PCR. The amplification assay showed linearity in the range 10-10 genomic units (GU)/PCR for each co-amplified species. The sensitivity corresponded to 1 GU/PCR for E. coli O157 and L. monocytogenes, and 10 GU/PCR for Salmonella spp. The immobilization process and the hybrid capture of the MCH showed good efficiency and reproducibility for all targets, allowing the combination in equal amounts of the different nanoparticle types in mMCH. MCH and mMCH efficiencies were similar. The detection limit of the method was 10 CFU in samples with individual pathogens and 10 CFU in samples with combination of the three pathogens in unequal amounts (amount's differences of 2 or 3 log). In conclusion, this multiplex molecular platform can be applied to determine the presence of target species in food samples after culture enrichment. In this way, this method could be a time-saving and sensitive tool to be used in routine diagnosis.
快速、特异且灵敏的病原体检测和定量方法在包括食品分析在内的多种应用中,对于人类病原体的诊断非常有利。本研究的目的是评估一种用于多重检测和定量三种重要食源致病菌种(大肠杆菌O157、沙门氏菌属和单核细胞增生李斯特菌)的方法。该检测方法将多重磁捕获杂交(mMCH)特异性DNA提取与多重实时PCR相结合。对于每种共扩增菌种,扩增检测在10-10基因组单位(GU)/PCR范围内显示出线性关系。大肠杆菌O157和单核细胞增生李斯特菌的灵敏度为1 GU/PCR,沙门氏菌属的灵敏度为10 GU/PCR。MCH的固定过程和杂交捕获对所有靶标均显示出良好的效率和重现性,允许在mMCH中以等量组合不同类型的纳米颗粒。MCH和mMCH的效率相似。该方法的检测限在单一病原体样本中为10 CFU,在三种病原体不等量组合样本中(数量差异为2或3个对数)为10 CFU。总之,这种多重分子平台可用于在培养富集后确定食品样本中靶标菌种的存在。通过这种方式,该方法可能成为一种用于常规诊断的省时且灵敏的工具。