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Rapid, automated separation of specific bacteria from lake water and sewage by flow cytometry and cell sorting.

机译:通过流式细胞仪和细胞分选从湖水中和污水中快速自动分离特定细菌。

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The use of fluorescence-activated flow cytometric cell sorting to obtain highly enriched populations of viable target bacteria was investigated. Preliminary studies employed mixtures of Staphylococcus aureus and Escherichia coli. Cells of S. aureus, when mixed in different proportions with E. coli, could be selectively recovered at a purity in excess of 90%. This was possible even when S. aureus composed only approximately 0.4% of the total cells. Cell sorting was also tested for the ability to recover E. coli from natural lake water populations and sewage. The environmental samples were challenged with fluorescently labelled antibodies specific for E. coli prior to cell sorting. Final sample purities of greater than 70% were routinely achieved, as determined by CFU. Populations of E. coli released into environmental samples were recovered at greater than 90% purity. The use of flow cytometry and cell sorting to detect and recover viable target bacteria present at levels of less than 1% within an indigenous microflora was also demonstrated.
机译:研究了使用荧光激活的流式细胞仪进行分选以获得高度富集的活靶细菌种群。初步研究采用金黄色葡萄球菌和大肠杆菌的混合物。当金黄色葡萄球菌的细胞与大肠杆菌以不同比例混合时,可以选择性地以超过90%的纯度回收。即使金黄色葡萄球菌仅占总细胞的约0.4%,这也是可能的。还测试了细胞分选的从天然湖水种群和污水中回收大肠杆菌的能力。在细胞分选之前,用对大肠杆菌特异的荧光标记抗体攻击环境样品。通过CFU确定,常规样品的最终纯度超过70%。以大于90%的纯度回收释放到环境样品中的大肠杆菌群体。还证明了使用流式细胞仪和细胞分选来检测和回收本地微生物群中存在的低于1%的活靶细菌。

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