Modelling, monitoring and control of plasmid bioproduction in Escherichia coli cultures

M. Lopes, T. Scholtz, D. Silva, I. Santos, T. Silva, P. Sampaio, Ricardo M. Couto, V. V. Lopes, C. Calado
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引用次数: 3

Abstract

An integrated approach for modelling, monitoring and control the plasmid bioproduction in Escherichia coli cultures is presented. In a first stage, by the implementation of a kinetic model for E. coli cultures, a better bioprocess understanding was reached, concerning the availability of nutrients and products along the bioprocess, and their effects on the plasmid production. Results presented may provide significant help for future modelling and monitoring implementation. In a second stage, FTIR spectroscopy coupled with chemometrics, namely PLS regression, shows its potential as a high-throughput technique for simultaneously estimating the key variables involved in the plasmid production process by E. coli cultures run under distinct conditions. Finally, owing to online monitoring and process control, an NIR fibre optic probe and chemometrics provided promising results concerning the control of biomass and carbon sources in E. coli cultures.
大肠杆菌培养中质粒生物生产的建模、监测和控制
提出了一种模拟、监测和控制大肠杆菌培养中质粒生物生产的综合方法。在第一阶段,通过实施大肠杆菌培养动力学模型,对生物过程有了更好的了解,包括生物过程中营养物质和产物的可用性,以及它们对质粒生产的影响。所提出的结果可能为未来的建模和监测实施提供重要的帮助。在第二阶段,FTIR光谱与化学计量学相结合,即PLS回归,显示了其作为一种高通量技术的潜力,可以同时估计在不同条件下大肠杆菌培养质粒生产过程中涉及的关键变量。最后,由于在线监测和过程控制,近红外光纤探针和化学计量学在控制大肠杆菌培养物的生物量和碳源方面提供了有希望的结果。
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