Bayer Technology Services GmbH, 51368 Leverkusen, Germany.
J Biotechnol. 2013 May 20;165(2):133-7. doi: 10.1016/j.jbiotec.2013.03.008. Epub 2013 Mar 30.
In an attempt to support robust automated sampling and analysis of mammalian cell bioreactors, an integrated platform, BaychroMA®, was developed which includes an innovative sterile sampling device, automated sample transport, a sample preparation module, online analyzers, and communication interfaces to process automation systems. The robustness of this platform was verified by applying it to a laboratory-scale perfusion bioreactor that was operated for over 100 days. Both manual and automated samples were collected over the course of the run and a comparison was made for cell density, viability, glucose, and lactate concentrations. The highest variability (14.4%) was seen for cell density estimates while those for viability, glucose, and lactate were 0.7, 12.9, and 8.2%, respectively. In addition, cell density set-point changes were made towards the end of the perfusion culture and the high frequency automated samples provided a higher resolution description of the dynamics of cell density change compared to less frequent manual sampling. Overall, our results indicate stable and robust operation of the BaychroMAT® platform in a long-term perfusion culture. This success should readily translate to shorter duration fed-batch cultures thereby enabling feed-back control based on real-time nutrient measurements.
为了支持哺乳动物细胞生物反应器的强大自动化采样和分析,开发了一个集成平台 BaychroMA®,其中包括一个创新的无菌采样设备、自动化样品传输、样品制备模块、在线分析仪以及与过程自动化系统的通信接口。通过将该平台应用于运行超过 100 天的实验室规模灌注生物反应器,验证了该平台的稳健性。在运行过程中收集了手动和自动样本,并对细胞密度、活力、葡萄糖和乳酸浓度进行了比较。细胞密度估计的变化最大(14.4%),而活力、葡萄糖和乳酸的变化分别为 0.7%、12.9%和 8.2%。此外,在灌注培养的后期对细胞密度设定点进行了更改,与较不频繁的手动采样相比,高频自动采样提供了对细胞密度变化动态的更高分辨率描述。总体而言,我们的结果表明 BaychroMAT®平台在长期灌注培养中稳定且稳健地运行。这一成功应该很容易转化为更短持续时间的补料分批培养,从而能够基于实时养分测量进行反馈控制。