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Rapid On-Site Monitoring of Bacteria in Freshwater Environments Using a Portable Microfluidic Counting System

机译:使用便携式微流体计数系统快速现场监测淡水环境中的细菌

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Freshwater environments and natural water parks are important as recreation areas; however, people enjoying recreation at the river- or lake-side are sometimes infected with pathogenic microbes. Microbiological monitoring is fundamental for the routine evaluation of water quality. Fluorescent staining techniques are regarded as among the most useful rapid microbiological methods; however, preparation of samples for fluorescence microscopy is often labor-intensive, and one usually has to take the samples to a laboratory for measurement, which often alters the culturability of bacteria in the samples. These factors have created demand for a rapid and simple method of bacterial quantification in freshwater that can be performed on-site. In this study, we applied our microfluidic device, which was originally designed for on-chip fluorescent staining and semi-automated counting of target microbial cells with fluorescent antibody-staining, to enumerate bacterial cells in freshwater. This was combined with a self-made portable system for rapid on-site monitoring of the bacterial cells. Numbers of both esterase-active bacteria and total bacteria in pond water samples could be successfully determined by on-chip staining with 6-carboxyfluorescein diacetate and SYBR Green II, respectively, using the portable microfluidic counting system. The counting was completed within 1h (30 min for pre-filtration of freshwater and 30 min for on-chip staining and counting). These results indicate that rapid and accurate counting of bacterial cells in freshwater can be performed and this technique could be applied for "on-site first screening" purposes in microbial quality control of freshwater.
机译:淡水环境和天然水公园是娱乐区的重要性;然而,在河流或湖边享受娱乐的人有时会感染致病微生物。微生物监测是水质评估的基础。荧光染色技术被认为是最有用的快速微生物方法中的;然而,用于荧光显微镜的样品的制备通常是劳动密集型的,并且通常必须将样品捕获到测量实验室,这通常会改变样品中细菌的培养性。这些因素在现场进行的淡水中产生了对淡水中的细菌定量的快速和简单方法的需求。在这项研究中,我们应用了我们的微流体装置,最初是设计用于片上荧光染色和半自动计数的荧光抗体染色的靶微生物细胞,以枚举淡水中的细菌细胞。将其与自制便携式系统相结合,用于快速现场监测细菌细胞。通过使用便携式微流体计数系统分别通过用6-羧基荧光素二乙酸酯和SYBR Green II的片上染色可以成功地确定酯酶活性细菌和池塘水样中的总细菌。计数在1H以内完成(30分钟以进行淡水预过滤,用于片上染色和计数30分钟)。这些结果表明,可以进行淡水中的细菌细胞的快速和准确计数,并且该技术可以应用于淡水微生物质量控制中的“现场第一筛选”目的。

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