School of Veterinary Medicine, University of California, Davis, U.S.A.
Faculty of Veterinary Medicine, University of Sarajevo, Sarajevo, Bosnia and Herzegovina.
Biomol Biomed. 2023 Jul 3;23(4):640-648. doi: 10.17305/bb.2022.8693.
Food contaminated with bacterial pathogens is a great threat to human health and food spoilage, having an impact on public health and the food industry. Research in food safety seeks to develop a practical, rapid, and sensitive detection technique for food-borne pathogens. In the past few decades, real-time quantitative polymerase chain reaction (qPCR) has been developed, and multiplex qPCR is a preferred feature. Multiplex qPCR enables the simultaneous amplification of many targets of interest in one reaction by using more than one pair of primers. In this study, we have developed and evaluated a hydrolysis (TaqMan) probe-based system for simultaneous detection of eight of the most common food-borne pathogens in a single-step procedure by multiplex qPCR. A multicolor combinational probe coding (MCPC) strategy was utilized that allows multiple fluorophores to label different probes in combinatorial manner. This strategy enabled simultaneous detection, identification, and quantification of targeted genes. The efficiency of the individual qPCR reactions for each target gene had values comparable to those established for multiplex qPCR, with detection limits of approximately < 10 copies of DNA per reaction. Pathogen load helps to predict bacteriological quality status in food products and serves to validate the efficiency of procedures to minimize or eliminate their presence, so newly developed multiplex qPCR was quantitative for each pathogen. During sample preparation, a step to concentrate the target organism from a relatively large sample size, remove all potential PCR inhibitors, and yield samples in a volume suitable for qPCR was incorporated.
食品中细菌病原体的污染对人类健康和食品变质构成了巨大威胁,影响公共健康和食品工业。食品安全研究旨在开发一种实用、快速和敏感的食源性病原体检测技术。在过去的几十年中,实时定量聚合酶链反应(qPCR)已经得到了发展,并且多重 qPCR 是首选的特征。多重 qPCR 通过使用多对引物,可以在一个反应中同时扩增多个感兴趣的目标。在这项研究中,我们开发并评估了一种基于水解(TaqMan)探针的系统,用于通过多重 qPCR 一步法同时检测八种最常见的食源性病原体。采用了多色组合探针编码(MCPC)策略,该策略允许以组合方式用多个荧光标记不同的探针。这种策略能够同时检测、鉴定和定量目标基因。每个目标基因的个体 qPCR 反应的效率与为多重 qPCR 建立的效率相当,检测限约为每个反应<10 个拷贝的 DNA。病原体负荷有助于预测食品中细菌质量状况,并验证最小化或消除其存在的程序的效率,因此新开发的多重 qPCR 可对每种病原体进行定量。在样品制备过程中,采用了从相对较大的样品量中浓缩目标生物的步骤,去除所有潜在的 PCR 抑制剂,并产生适合 qPCR 的体积的样品。