Agricultural Research Service, U.S. Department of Agriculture, Wyndmoor, Pennsylvania 19038, USA.
Annu Rev Anal Chem (Palo Alto Calif). 2011;4:151-72. doi: 10.1146/annurev-anchem-061010-114010.
Incidental contamination of foods by pathogenic bacteria and/or their toxins is a serious threat to public health and the global economy. The presence of food-borne pathogens and toxins must be rapidly determined at various stages of food production, processing, and distribution. Producers, processors, regulators, retailers, and public health professionals need simple and cost-effective methods to detect different species or serotypes of bacteria and associated toxins in large numbers of food samples. This review addresses the desire to replace traditional microbiological plate culture with more timely and less cumbersome rapid, biosensor-based methods. Emphasis focuses on high-throughput, multiplexed techniques that allow for simultaneous testing of numerous samples, in rapid succession, for multiple food-borne analytes (primarily pathogenic bacteria and/or toxins).
食源性致病菌和/或其毒素偶然污染食品,对公共健康和全球经济构成严重威胁。在食品生产、加工和配送的各个阶段,都必须快速检测食源性致病菌和毒素的存在。生产者、加工者、监管者、零售商和公共卫生专业人员需要简单且具有成本效益的方法,以便在大量食品样本中检测不同种类或血清型的细菌和相关毒素。本文综述了用更及时、更不繁琐的快速、基于生物传感器的方法替代传统微生物平板培养的愿望。重点是高通量、多重技术,这些技术可以快速连续地同时测试多个样品,用于多种食源性分析物(主要是致病性细菌和/或毒素)的检测。