首页> 外文期刊>Biotechnology Progress >Use of Operating Windows in the Assessment of Integrated Robotic Systems for the Measurement of Bioprocess Kinetics
【24h】

Use of Operating Windows in the Assessment of Integrated Robotic Systems for the Measurement of Bioprocess Kinetics

机译:在评估用于测量生物过程动力学的集成机器人系统中使用操作窗口

获取原文
获取原文并翻译 | 示例
           

摘要

This study examines the utility of an automated liquid handling robot integrated with a microwell plate reader to enable the rapid acquisition of bioprocess kinetic data.The relationship between the key parameters for liquid handling accuracy and precision and the sample detection period has been characterized for typical low-viscosity (<2.0 mPacentre dots) aqueous and organic phases and for a high-viscosity aqueous phase (60 mPacentre dots),all exhibiting Newtonian rheology.The use of a simple graphical method enables the suitability of a given automation platform to be assessed once the user has determined the minimum sample detection period and the minimum accurate and precise dispense volume.This provides for a reduction in the duration of any experiment by maximizing well usage within each microwell plate.The suitability of employing an integrated automation platform to gather kinetic data for systems typical of those encountered in bioprocessing is analyzed via a series of case studies.Application to alkaline cell lysis,where disruption is complete within 120 s,showed that the range of available dispense volumes and the number of wells that can be utilized is limited.In contrast,analysis of a system exhibiting slow process kinetics,the fermentation of Escherichia coli TOP10 pQR239 in microwell plates,demonstrated that,for a typical sample detection period of 30 min,the only restrictions on the degree of well utilization are the liquid handling accuracy and precision and the volume capacity of the liquid handling robot.Finally,liquid-liquid extraction,an example of a kinetically independent operation,was also examined.In this case,only a single equilibrium measurement is required,which means that the only restrictions to the utilization of the integrated devices are the liquid handling accuracy and precision.Integrated automation platforms represent a powerful process development tool over traditional experimental methods used for bioprocess development.Smaller volumes of reagent and sample can be used to achieve greater throughput,while high levels of reproducibility and sensitivity are maintained.
机译:这项研究探讨了自动液体处理机器人与微孔板读取器集成的实用性,可以快速获取生物过程动力学数据。对于典型的低处理量,液体处理精度和精度的关键参数与样品检测时间之间的关系已被表征。粘度(<2.0 mPacentre点)的水相和有机相,以及高粘度水相(60 mPacentre的点),均表现出牛顿流变性。使用简单的图形方法可使对给定自动化平台的适用性进行一次评估用户已经确定了最小的样品检测周期和最小的准确和精确的分配量,这通过最大程度地利用每个微孔板中的孔来减少任何实验的持续时间。采用集成的自动化平台来收集动力学数据的适用性通过一系列案例分析了典型的生物处理系统在碱性细胞裂解中的应用,在120 s内完成破坏,表明可用分配体积的范围和可利用的孔数是有限的。相反,对过程动力学较慢的系统进行分析,则发酵微孔板中的TOP10 pQR239大肠杆菌分析表明,在典型的样品检测时间为30分钟的情况下,对孔利用率的唯一限制是液体处理的准确性,精度和液体处理机器人的容量。还研究了动力学独立操作的示例液-液萃取。在这种情况下,仅需要单个平衡测量,这意味着对集成设备的利用的唯一限制是液体处理的准确性和精度。集成的自动化平台代表了用于生物过程开发的传统实验方法之上的强大过程开发工具。大量的试剂和样品可用于实现更高的通量,同时保持高水平的重现性和灵敏度。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号