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Diagnostics method for the rapid quantitative detection and identification of low-level contamination of high-purity water with pathogenic bacteria

机译:快速定量检测和鉴定病原菌对高纯水低浓度污染的诊断方法

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High-purity water (HPW) can be contaminated with pathogenic microorganisms, which may result in human infection. Current culture-based techniques for the detection of microorganisms from HPW can be slow and laborious. The aim of this study was to develop a rapid method for the quantitative detection and identification of pathogenic bacteria causing low-level contamination of HPW. A novel internally controlled multiplex real-time PCR diagnostics assay was designed and optimized to specifically detect and identify Pseudomonas aeruginosa and the Burkholderia genus. Sterile HPW, spiked with a bacterial load ranging from 10 to 10(3) cfu/100 ml, was filtered and the bacterial cells were removed from the filters by sonication. Total genomic DNA was then purified from these bacteria and subjected to testing with the developed novel multiplex real-time PCR diagnostics assay. The specific P. aeruginosa and Burkholderia genus assays have an analytical sensitivity of 3.5 genome equivalents (GE) and 3.7 GE, respectively. This analysis demonstrated that it was possible to detect a spiked bacterial load of 1.06 x 10(2) cfu/100 ml for P. aeruginosa and 2.66 x 10(2) cfu/100 ml for B. cepacia from a 200-ml filtered HPW sample. The rapid diagnostics method described can reliably detect, identify, and quantify low-level contamination of HPW with P. aeruginosa and the Burkholderia genus in < 4 h. We propose that this rapid diagnostics method could be applied to the pharmaceutical and clinical sectors to assure the safety and quality of HPW, medical devices, and patient-care equipment.
机译:高纯水(HPW)可能被病原微生物污染,可能导致人类感染。当前用于检测HPW中微生物的基于培养的技术可能是缓慢而费力的。这项研究的目的是开发一种定量检测和鉴定引起HPW低污染的病原菌的快速方法。设计并优化了一种新型的内部控制的多重实时PCR诊断方法,以特异性检测和鉴定铜绿假单胞菌和伯克霍尔德氏菌属。过滤不饱和HPW,掺入10到10(3)cfu / 100 ml细菌载量的细菌,并通过超声处理将细菌细胞从过滤器中移出。然后从这些细菌中纯化总基因组DNA,并用开发的新型多重实时PCR诊断方法进行测试。特定的铜绿假单胞菌和伯克霍尔德氏菌属测定法的分析灵敏度分别为3.5基因组当量(GE)和3.7 GE。该分析表明,从200 ml过滤的HPW中,铜绿假单胞菌的菌落加标浓度为1.06 x 10(2)cfu / 100 ml,而洋葱状芽孢杆菌为2.66 x 10(2)cfu / 100 ml。样品。所描述的快速诊断方法可以在不到4小时的时间内可靠地检测,鉴定和定量铜绿假单胞菌和伯克霍尔德氏菌属对HPW的低水平污染。我们建议这种快速诊断方法可以应用于制药和临床部门,以确保HPW,医疗设备和患者护理设备的安全性和质量。

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