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Microbiologic quality of an untreated water sample analyzed by a novel DNA chip for simultaneous detection of microorganisms

机译:通过新型DNA芯片分析的未处理水样品的微生物质量,可同时检测微生物

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Consumption of contaminated drinking water heavily contributes to the burden of gastrointestinal waterborne diseases. Conventional detection methodologies present several shortcomings, such as indirect measure of indicator species, low throughput and time consume. DNA chips have the potential to serve as surveillance systems for the simultaneous detection of pathogens overcoming these limitations. We have developed a DNA chip for simultaneous detection of multiple waterborne pathogens. Species specific DNA probes were implemented on a microarray, for microorganism detection. Present study reports the results of one untreated water sample analyzed by conventional methods and by the DNA chip. The results were concordant for the mandatory organisms (total coliforms, Escherichia coli , fecal enterococci) using both methods, reinforcing the utility and proof-ofconcept of the DNA chip. However, it is necessary a prior enrichment in a culture medium in order to obtain a positive signal using the DNA chip. The DNA chip may be a valuable distinctive tool for waterborne pathogens detection
机译:饮用受污染的饮用水极大地增加了胃肠道水传播疾病的负担。传统的检测方法存在一些缺点,例如间接测量指示剂种类,低通量和时间消耗。 DNA芯片有潜力用作同时检测克服这些限制的病原体的监视系统。我们已经开发了一种DNA芯片,可同时检测多种水生病原体。在微阵列上实施了物种特异性DNA探针,用于微生物检测。本研究报告了一种通过常规方法和DNA芯片分析的未经处理的水样品的结果。使用两种方法,结果与强制性有机体(大肠菌群,大肠杆菌,粪便肠球菌)一致,从而增强了DNA芯片的实用性和概念验证。然而,为了使用DNA芯片获得阳性信号,有必要预先在培养基中富集。 DNA芯片可能是检测水生病原体的有价值的独特工具

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