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Development of a New Integrated Diagnostic Test for Identification and Characterization of Pathogens

机译:开发用于病原体鉴定和表征的新型综合诊断测试

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Animal diseases directly cause multi-million dollar losses world-wide. Therefore a rapid, highly specific, cost-effective diagnostic test for detecting a large set of bacterial virulence and antimicrobial resistance genes simultaneously is necessary. Hence, our group, the BCBG (Bacterial Chips Bacterial Genes) group, proposes developing a powerful molecular tool (DNA microarray) to detect a broad range of infectious agents, their endogenous main virulence factors and antibiotic resistance genes simultaneously. Effectively, a 70-mer oligonucleotide microarray capable of detecting the presence or absence of 169 Escherichia coli virulence genes or virulence marker genes as well as their variants, in addition to 30 principal antimicrobial resistance genes previously characterized in E. coli strains was developed by our group. This microarray was validated with a large collection of well characterized pathogenic and reference E. coli strains. Moreover, we are developing a new powerful clinical diagnostic microarray tool, to identify pathogenic bacteria of veterinary interest. The commercialization of this assay would allow same day diagnosis of infectious agents and their antibiotic resistance resulting in early treatment. In addition, this technology is also applicable to microbial quality control of food and water.
机译:动物疾病在世界范围内直接造成数百万美元的损失。因此,需要一种快速,高度特异性,具有成本效益的诊断测试,以同时检测大量细菌毒力和抗菌素耐药基因。因此,我们的小组BCBG(细菌芯片细菌基因)小组建议开发一种功能强大的分子工具(DNA微阵列),以同时检测多种传染原,其内源主要毒力因子和抗生素抗性基因。有效地,除了我们以前在大肠杆菌菌株中表征的30种主要抗微生物抗性基因外,我们还开发了一种70聚体寡核苷酸微阵列,能够检测169种大肠杆菌毒力基因或毒力标记基因及其变体的存在与否。组。大量特征明确的病原性和参考大肠杆菌菌株对该微阵列进行了验证。此外,我们正在开发一种新的功能强大的临床诊断微阵列工具,以鉴定兽医感兴趣的病原菌。该测定法的商业化将可在当天诊断出传染病及其对抗生素的耐药性,从而导致早期治疗。另外,该技术还适用于食品和水的微生物质量控制。

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