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Concept for a solid-state multi-parameter sensor system for cell-culture monitoring

机译:用于细胞培养监测的固态多参数传感器系统的概念

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In this study, a concept for a silicon-based modular solid-state sensor system for inline multi-parameter monitoring of cell-culture fermentation processes is presented. The envisaged multi-parameter sensor system consists of two identical sensor modules and is intended for continuous quantification of up to five (bio-)chemical and physical parameters, namely, glucose and glutamine concentration, pH value, electrolyte conductivity and temperature by applying different transducer principles and/or different operation modes. Experimental results for the field-effect electrolyte-insulator-semiconductor (EIS) sterilisable pH sensor and electrolyte conductivity sensor based on interdigitated electrodes are presented. The ongoing autoclaving does not have any significant impact on the pH-sensitive properties of a Ta_2O_5-gate EIS sensor. Even after 30 autoclaving cycles, the pH sensors show a clear pH response and nearly linear calibration curve with a slope of 57 ± 1 mV/pH. Additional scanning electron microscopy and ellipsometric investigations do not show any visible surface degradation or changes in the thickness of the pH-sensitive Ta_2O_5 layer. The preliminary results demonstrate the suitability of the developed EIS sensor for an inline pH measurement during a fermentation process. In addition, interdigitated electrodes of different geometries serving as electrolyte conductivity sensor have been tested for measurements in relatively high ionic-strength solutions.
机译:在这项研究中,提出了一种用于细胞培养发酵过程的在线多参数监测的基于硅的模块化固态传感器系统的概念。设想的多参数传感器系统由两个相同的传感器模块组成,旨在通过使用不同的传感器连续定量多达五个(生物)化学和物理参数,即葡萄糖和谷氨酰胺浓度,pH值,电解质电导率和温度原理和/或不同的操作模式。提出了基于叉指电极的场效应电解质-绝缘体-半导体(EIS)可消毒pH传感器和电解质电导率传感器的实验结果。正在进行的高压灭菌对Ta_2O_5门EIS传感器的pH敏感特性没有任何重大影响。即使经过30个高压灭菌循环,pH传感器也显示出清晰的pH响应和接近线性的校准曲线,其斜率为57±1 mV / pH。附加的扫描电子显微镜和椭偏研究没有显示任何可见的表面降解或pH敏感的Ta_2O_5层的厚度变化。初步结果表明,开发的EIS传感器适用于发酵过程中的在线pH测量。另外,已经测试了用作电解质电导率传感器的不同几何形状的叉指电极,以在相对高的离子强度溶液中进行测量。

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