首页> 外文期刊>Cytometry, Part A: the journal of the International Society for Analytical Cytology >Development and laboratory-scale testing of a fully automated online flow cytometer for drinking water analysis
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Development and laboratory-scale testing of a fully automated online flow cytometer for drinking water analysis

机译:全自动在线流式细胞仪用于饮用水分析的开发和实验室规模的测试

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摘要

Accurate and sensitive online detection tools would benefit both fundamental research and practical applications in aquatic microbiology. Here, we describe the development and testing of an online flow cytometer (FCM), with a specific use foreseen in the field of drinking water microbiology. The system incorporated fully automated sampling and fluorescent labeling of bacterial nucleic acids with analysis at 5-min intervals for periods in excess of 24 h. The laboratory scale testing showed sensitive detection (< 5% error) of bacteria over a broad concentration range (1 × 10 ~3-1 × 10 ~6 cells mL ~(-1)) and particularly the ability to track both gradual changes and dramatic events in water samples. The system was tested with bacterial pure cultures as well as indigenous microbial communities from natural water samples. Moreover, we demonstrated the possibility of using either a single fluorescent dye (e.g., SYBR Green I) or a combination of two dyes (SYBR Green I and Propidium Iodide), thus broadening the application possibilities of the system. The online FCM approach described herein has considerable potential for routine and continuous monitoring of drinking water, optimization of specific drinking water processes such as biofiltration or disinfection, as well as aquatic microbiology research in general.
机译:准确而灵敏的在线检测工具将有益于水生微生物学的基础研究和实际应用。在这里,我们描述了在线流式细胞仪(FCM)的开发和测试,并预测了饮用水微生物学领域的特定用途。该系统结合了细菌核酸的全自动采样和荧光标记,并每隔5分钟进行分析,持续时间超过24小时。实验室规模的测试表明,在较宽的浓度范围(1×10〜3-1×10〜6个细胞mL〜(-1))内,细菌的检测灵敏度很高(误差小于5%),特别是能够跟踪细菌的逐渐变化和水样中的戏剧性事件。该系统用细菌纯培养物以及天然水样本中的本地微生物群落进行了测试。此外,我们证明了使用单一荧光染料(例如SYBR Green I)或两种染料(SYBR Green I和碘化丙啶)结合使用的可能性,从而拓宽了该系统的应用可能性。本文所述的在线FCM方法具有常规和连续监测饮用水,优化特定饮用水过程(例如生物过滤或消毒)以及一般水生微生物研究的巨大潜力。

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