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Versatile automated continuous flow system (VersAFlo) for bioanalysis and bioprocess control

机译:用于生物分析和生物过程控制的多功能自动连续流系统(VersAFlo)

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Flow injection analysis provides a convenient platform for the use of biosensors in the monitoring of bio-processes. A major requirement in bioprocess monitoring is real time information about various process parameters like concentration of products and substrates, flow rates, and injection volumes. Depending on the application, the monitoring requirements vary and this results in a need for different measurement flow schemes. Common flow schemes employed with biosensing are FIA, SIA, BIA and multi-commuted flow. In this work, a versatile platform to employ biosensors for continuous analysis of bioprocesses with precise control of flow, volume and defined events has been developed. The system is based on National Instruments LabVIEW and employs piston-, peristaltic pumps, motorized injection valves and 2-way and 3-way solenoid valves. The system supports data acquisition, controls interface with devices and visualization of data from multiple detectors used in biosensing. The system was successfully evaluated for the analysis of a model analyte, human immunoglobulin G (IgG), employing continuous flow-EUSA in competitive mode with optical detection. The flow-immunosensor showed very good linearity; from 5 to 400 μg/ml. The system had excellent reproducibility and stability with a relative standard deviation of 4.75%. The immunosensor was also subjected to a model first order kinetics of target analyte concentration and the results from the sensor agreed well with the estimated concentration. The flexibility of the system gives that different flow configurations easily can be set up and the dynamic range of analysis can be adapted by varying different flow conditions for measurement, thereby controlling different reaction times in the biosensor system. The system could be useful for online analysis and control of bioprocesses employing biosensors. Further, with automated data collection and analysis, the system provides excellent basis for cross platform data communication for integrated control.
机译:流动注射分析为在生物过程监控中使用生物传感器提供了便利的平台。生物过程监控的主要要求是有关各种过程参数的实时信息,例如产品和底物的浓度,流速和进样量。取决于应用,监视要求会有所不同,因此需要使用不同的测量流程方案。生物传感采用的常见流程是FIA,SIA,BIA和多通流。在这项工作中,开发了一个通用平台,该平台采用生物传感器对生物过程进行连续分析,并精确控制流量,体积和确定的事件。该系统基于National Instruments LabVIEW,并采用活塞泵,蠕动泵,电动喷射阀以及2通和3通电磁阀。该系统支持数据采集,控制与设备的接口以及可视化来自生物传感中使用的多个检测器的数据。该系统已成功采用竞争性模式的连续流EUSA和光学检测技术,用于分析模型分析物人类免疫球蛋白G(IgG)的分析。流动免疫传感器显示出非常好的线性。 5至400μg/ ml。该系统具有出色的重现性和稳定性,相对标准偏差为4.75%。免疫传感器还经受了目标分析物浓度的模型一级动力学,并且传感器的结果与估计的浓度非常吻合。系统的灵活性使得可以轻松设置不同的流量配置,并且可以通过改变不同的流量条件进行测量来调整分析的动态范围,从而控制生物传感器系统中的不同反应时间。该系统对于使用生物传感器的生物过程的在线分析和控制可能是有用的。此外,借助自动数据收集和分析,该系统为跨平台数据通信提供了出色的基础,以进行集成控制。

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