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Low-cost sensor system for non-invasive monitoring of cell growth in disposable bioreactors

机译:用于一次性生物反应器中细胞生长的无创监测的低成本传感器系统

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摘要

To ensure productivity and product quality, the parameters of biotechnological processes need to be monitored. Along temperature or pH, one important parameter is the cell density in the culture medium. In this work, we present a low-cost sensor system for online cell growth monitoring in bioreactors via permittivity measurements based on coplanar transmission lines. To evaluate the sensor, E. coli cultivations are performed. We found a good correlation between optical density of the culture medium and the effective permittivity at a frequency of 1 kHz when the sensor is submerged into the culture medium. Measurements at higher frequencies additionally allow monitoring the osmolarity. Furthermore, an improved sensor was successfully used for first noninvasive measurements through the polymer wall of a disposable bioreactor.
机译:为了确保生产率和产品质量,需要监控生物技术过程的参数。沿温度或pH值,一个重要的参数是培养基中的细胞密度。在这项工作中,我们提出了一种低成本的传感器系统,该传感器系统可通过基于共面传输线的介电常数测量来监测生物反应器中的在线细胞生长。为了评估传感器,进行了大肠杆菌培养。当传感器浸入培养基中时,我们发现培养基的光密度与有效介电常数在1 kHz频率之间具有良好的相关性。此外,在较高频率下的测量还可以监测渗透压。此外,改进的传感器已成功用于通过一次性生物反应器的聚合物壁的首次非侵入式测量。

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