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首页> 外文期刊>Sensors >Application of an Online-Biomass Sensor in an Optical Multisensory Platform Prototype for Growth Monitoring of Biotechnical Relevant Microorganism and Cell Lines in Single-Use Shake Flasks
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Application of an Online-Biomass Sensor in an Optical Multisensory Platform Prototype for Growth Monitoring of Biotechnical Relevant Microorganism and Cell Lines in Single-Use Shake Flasks

机译:在线生物量传感器在光学多感测平台原型中的应用,该原型用于监测一次性摇瓶中生物技术相关微生物和细胞系的生长

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In the context of this work we evaluated a multisensory, noninvasive prototype platform for shake flask cultivations by monitoring three basic parameters (pH, pO2 and biomass). The focus lies on the evaluation of the biomass sensor based on backward light scattering. The application spectrum was expanded to four new organisms in addition to E. coli K12 and S. cerevisiae [1]. It could be shown that the sensor is appropriate for a wide range of standard microorganisms, e.g., L. zeae, K. pastoris, A. niger and CHO-K1. The biomass sensor signal could successfully be correlated and calibrated with well-known measurement methods like OD600, cell dry weight (CDW) and cell concentration. Logarithmic and Bleasdale-Nelder derived functions were adequate for data fitting. Measurements at low cell concentrations proved to be critical in terms of a high signal to noise ratio, but the integration of a custom made light shade in the shake flask improved these measurements significantly. This sensor based measurement method has a high potential to initiate a new generation of online bioprocess monitoring. Metabolic studies will particularly benefit from the multisensory data acquisition. The sensor is already used in labscale experiments for shake flask cultivations.
机译:在这项工作的背景下,我们通过监测三个基本参数(pH,pO 2 和生物量)评估了用于摇瓶培养的多传感器,无创原型平台。重点在于基于反向光散射对生物质传感器的评估。除了大肠杆菌K12和酿酒酵母[1]外,其应用范围还扩展到了四个新生物。可以证明该传感器适用于广泛的标准微生物,例如,玉米(L. zeae),巴斯德氏酵母(K. pastoris),黑曲霉(A.niger)和CHO-K1。利用OD 600,细胞干重(CDW)和细胞浓度等众所周知的测量方法,可以成功地对生物量传感器信号进行相关和校准。对数和Bleasdale-Nelder派生的函数足以进行数据拟合。在高信噪比方面,低细胞浓度下的测量已被证明是至关重要的,但是在摇瓶中集成定制的遮光罩可以显着改善这些测量。这种基于传感器的测量方法具有引发新一代在线生物过程监控的巨大潜力。代谢研究将特别受益于多感官数据采集。该传感器已经在实验室规模的实验中用于摇瓶培养。

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