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Advances in DNA Microarray Technology for the Detection of Foodborne Pathogens

机译:DNA微阵列技术在食源性致病菌检测中的进展

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Hundreds of foodborne infection cases occur around the world, and up to one third of the population in industrialized nations suffers from foodborne illness each year. The advent of genetic-based technologies made feasible developing sensitive and specific screening tests for the detection of microbial pathogens. Microarray-based technologies represent an advance in nucleic acid testing methods whose main features include miniaturization, ability to parallelize sample processing, and ease of automation. Many applications, based on both commercial and custom arrays, have already been reported. The constant attempt to obtain reliable, sensitive, and robust methods has also driven the development of different molecular methods, relying on hybridization or on enzymatic techniques (such as minisequencing/extension or ligation). At the same time, probe design strategies and data analysis pipelines have been refined as well, in order to make result evaluations faster and less prone to errors. The high number of genetic information already available allowed reaching a resolution below the species level, being able to discriminate among serovars or strains, thanks to the careful choice of variable regions. Currently, the sensitivity of the assays can be as low as 1 CFU/g for some bacteria after enrichment. In this review, we present an overview of the most important advances in microarray technologies in the foodborne pathogen detection field.
机译:全世界有数以百计的食源性感染病例,每年工业化国家中多达三分之一的人口患有食源性疾病。基于遗传的技术的出现使得开发灵敏且特异的筛查测试以检测微生物病原体成为可能。基于微阵列的技术代表了核酸测试方法的进步,其主要特征包括小型化,并行化样品处理的能力以及易于自动化。已经报道了许多基于商业和定制阵列的应用。不断寻求可靠,灵敏和鲁棒的方法,这也依赖于杂交或酶促技术(例如最小测序/延伸或连接)推动了不同分子方法的发展。同时,探针设计策略和数据分析管道也得到了完善,以使结果评估更快,更不容易出错。由于精心选择了可变区,因此已经可获得的大量遗传信息可以使分辨率降低到物种水平以下,从而能够区分血清型或品系。目前,富集后某些细菌的测定灵敏度可能低至1 CFU / g。在这篇综述中,我们概述了食源性病原体检测领域中微阵列技术最重要的进展。

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