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首页> 外文期刊>Sensors >Dielectric Spectroscopy and Optical Density Measurement for the Online Monitoring and Control of Recombinant Protein Production in Stably Transformed Drosophila melanogaster S2 Cells
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Dielectric Spectroscopy and Optical Density Measurement for the Online Monitoring and Control of Recombinant Protein Production in Stably Transformed Drosophila melanogaster S2 Cells

机译:介电谱和光密度测量用于在线监测和控制稳定转化的果蝇S2细胞重组蛋白生产的过程

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摘要

The production of recombinant proteins in bioreactors requires real-time process monitoring and control to increase process efficiency and to meet the requirements for a comprehensive audit trail. The combination of optical near-infrared turbidity sensors and dielectric spectroscopy provides diverse system information because different measurement principles are exploited. We used this combination of techniques to monitor and control the growth and protein production of stably transformed Drosophila melanogaster S2 cells expressing antimicrobial proteins. The in situ monitoring system was suitable in batch, fed-batch and perfusion modes, and was particularly useful for the online determination of cell concentration, specific growth rate ( μ ) and cell viability. These data were used to pinpoint the optimal timing of the key transitional events (induction and harvest) during batch and fed-batch cultivation, achieving a total protein yield of ~25 mg at the 1-L scale. During cultivation in perfusion mode, the OD 880 signal was used to control the bleed line in order to maintain a constant cell concentration of 5 × 10 7 cells/mL, thus establishing a turbidostat/permittistat culture. With this setup, a five-fold increase in productivity was achieved and 130 mg of protein was recovered after 2 days of induced perfusion. Our results demonstrate that both sensors are suitable for advanced monitoring and integration into online control strategies.
机译:生物反应器中重组蛋白的生产需要实时过程监控,以提高过程效率并满足全面审核跟踪的要求。光学近红外浊度传感器和介电谱的结合提供了多种系统信息,因为采用了不同的测量原理。我们使用这种技术的组合来监视和控制表达抗微生物蛋白的稳定转化的果蝇S2细胞的生长和蛋白生产。原位监测系统适用于分批,补料分批和灌注模式,对于在线确定细胞浓度,比生长率(μ)和细胞生存力特别有用。这些数据用于确定分批和补料分批培养过程中关键过渡事件(诱导和收获)的最佳时间,从而在1 L规模下获得约25 mg的总蛋白产量。在灌注模式下培养期间,OD 880信号用于控制放血线,以维持5×10 7个细胞/ mL的恒定细胞浓度,从而建立了一个浊度计/电导率计培养器。通过这种设置,在诱导灌流2天后,生产率提高了5倍,回收了130 mg的蛋白质。我们的结果表明,这两种传感器都适合进行高级监视并集成到在线控制策略中。

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