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Monitoring bacterial growth using tunable resistive pulse sensing with a pore-based technique

机译:使用基于孔的技术,通过可调电阻脉冲感应监测细菌生长

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A novel bacterial growth monitoring method using a tunable resistive pulse sensor (TRPS) system is introduced in this study for accurate and sensitive measurement of cell size and cell concentration simultaneously. Two model bacterial strains, Bacillus subtilis str.168 (BSU168) and Escherichia coli str.DH5α (DH5α), were chosen for benchmarking the growth-monitoring performance of the system. Results showed that the technique of TRPS is sensitive and accurate relative to widely used methods, with a lower detection limit of cell concentration measurement of 5×10~5 cells/ml; at the same time, the mean coefficient of variation from TRPS was within 2 %. The growth of BSU168 and DH5α in liquid cultures was studied by TRPS, optical density (OD), and colony plating. Compared to OD measurement, TRPS-measured concentration correlates better with colony plating (R =0.85 vs. R =0.72), which is often regarded as the gold standard of cell concentration determination. General agreement was also observed by comparing TRPS-derived cell volume measurements and those determined from microscopy. We have demonstrated that TRPS is a reliable method for bacterial growth monitoring, where the study of both cell volume and cell concentration are needed to provide further details about the physical aspects of cell dynamics in real time.
机译:本研究介绍了一种使用可调节电阻式脉冲传感器(TRPS)系统的新型细菌生长监测方法,可同时精确,灵敏地测量细胞大小和细胞浓度。选择了两个模型细菌菌株,枯草芽孢杆菌str.168(BSU168)和大肠杆菌str.DH5α(DH5α),以对系统的生长监控性能进行基准测试。结果表明,相对于广泛使用的方法,TRPS技术灵敏,准确,细胞浓度检测的下限为5×10〜5个细胞/ ml。同时,TRPS的平均变异系数在2%以内。通过TRPS,光密度(OD)和菌落平板研究了BSU168和DH5α在液体培养物中的生长。与OD测量相比,TRPS测量的浓度与菌落平板之间的相关性更好(R = 0.85 vs. R = 0.72),这通常被视为确定细胞浓度的金标准。通过比较衍生自TRPS的细胞体积测量值和通过显微镜确定的细胞体积测量值,也观察到总体一致。我们已经证明,TRPS是一种可靠的细菌生长监测方法,需要对细胞体积和细胞浓度进行研究,以便实时提供有关细胞动力学物理方面的进一步详细信息。

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