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A Novel Application for Low Frequency Electrochemical Impedance Spectroscopy as an Online Process Monitoring Tool for Viable Cell Concentrations

机译:低频电化学阻抗谱的新应用作为活细胞浓度的在线过程监测工具

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摘要

New approaches in process monitoring during industrial fermentations are not only limited to classical pH, dO2 and offgas analysis, but use different in situ and online sensors based on different physical principles to determine biomass, product quality, lysis and far more. One of the very important approaches is the in situ accessibility of viable cell concentration (VCC). This knowledge provides increased efficiency in monitoring and controlling strategies during cultivations. Electrochemical impedance spectroscopy—EIS—is used to monitor biomass in a fermentation of E. coli BL21(DE3), producing a recombinant protein using a fed batch-based approach. Increases in the double layer capacitance (Cdl), determined at frequencies below 1 kHz, are proportional to the increase of biomass in the batch and fed batch phase, monitored in offline and online modes for different cultivations. A good correlation of Cdl with cell density is found and in order to get an appropriate verification of this method, different state-of-the-art biomass measurements are performed and compared. Since measurements in this frequency range are largely determined by the double layer region between the electrode and media, rather minor interferences with process parameters (aeration, stirring) are to be expected. It is shown that impedance spectroscopy at low frequencies is a powerful tool for cultivation monitoring.
机译:工业发酵过程监控的新方法不仅限于经典的pH值,dO2和废气分析,而且基于不同的物理原理使用不同的原位和在线传感器来确定生物量,产品质量,裂解等。非常重要的方法之一是活细胞浓度(VCC)的就地可及性。这些知识可提高栽培期间监控策略的效率。电化学阻抗谱法(EIS)用于监测大肠杆菌BL21(DE3)发酵过程中的生物量,并使用基于分批补料的方法生产重组蛋白。在低于1 kHz的频率下确定的双层电容(Cdl)的增加与分批和补料分批阶段中生物量的增加成比例,并以离线和在线模式监控不同的种植情况。发现Cdl与细胞密度具有良好的相关性,并且为了获得对该方法的适当验证,进行了不同水平的生物量测量并进行了比较。由于在此频率范围内的测量很大程度上取决于电极和介质之间的双层区域,因此,预计会对工艺参数(充气,搅拌)产生较小的干扰。结果表明,低频阻抗谱是用于培养监测的强大工具。

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