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Mathematical model of adherent Vero cell growth and poliovirus production in animal component free medium

机译:无动物成分培养基中粘附性Vero细胞生长和脊髓灰质炎病毒产生的数学模型

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摘要

Sabin-IPV (or sIPV, inactivated polio vaccine based on attenuated Sabin strains) is anticipated to replace the oral polio vaccine for the endgame in polio eradication. Optimization of sIPV production will lead to a better economically feasible vaccine. To assist process optimization, we studied Sabin type 1 poliovirus (PV) infection kinetics on Vero cells in controlled bioreactor vessels. The aim of our study was to develop a descriptive mathematical model able to capture the dynamics of adherent Vero cell growth and PV infection kinetics in animal component free medium. The model predicts the cell density, metabolites profiles, and viral yields in time. We found that the multiplicity of infection (MOI) and the time of infection (TOI) within the investigated range did not affect maximal PV yields, but they did affect the process time. The latter may be reduced by selecting a low TOI and a high MOI. Additionally, we present a correlation between viral titers and D-antigen, a measure for immunogenicity, of Sabin type 1 PV. The developed model is adequate for further studies of the cell metabolism and infection kinetics and may be used to identify control strategies to increase viral productivity. Increased viral yields reduce costs of polio vaccines with large implications on public health.
机译:预计Sabin-IPV(或sIPV,基于减毒Sabin毒株的灭活脊髓灰质炎疫苗)将取代口服脊髓灰质炎疫苗,以根除脊髓灰质炎。 sIPV生产的优化将导致更好的经济可行的疫苗。为了协助工艺优化,我们研究了受控生物反应器容器中Vero细胞的Sabin 1型脊髓灰质炎病毒(PV)感染动力学。我们研究的目的是建立一个描述性数学模型,该模型能够捕获无动物成分培养基中粘附的Vero细胞生长和PV感染动力学的动力学。该模型可以及时预测细胞密度,代谢物谱和病毒产量。我们发现,在研究范围内,感染复数(MOI)和感染时间(TOI)不会影响最大PV产量,但会影响加工时间。可以通过选择低TOI和高MOI来减少后者。此外,我们提出了Sabin 1型PV的病毒滴度与D抗原(一种免疫原性的量度)之间的相关性。开发的模型足以用于细胞代谢和感染动力学的进一步研究,并可用于确定控制策略以提高病毒生产力。病毒产量的增加降低了脊髓灰质炎疫苗的成本,这对公共卫生具有重大影响。

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  • 来源
    《Bioprocess and Biosystems Engineering》 |2015年第3期|543-555|共13页
  • 作者单位

    Institute for Translational Vaccinology, Process Development, PO BOX 450, 3720 AL Bilthoven, The Netherlands,Biotechnology Department, Delft University of Technology, Julianalaan 67, 2628 BC Delft, The Netherlands;

    Institute for Translational Vaccinology, Process Development, PO BOX 450, 3720 AL Bilthoven, The Netherlands;

    Institute for Translational Vaccinology, Process Development, PO BOX 450, 3720 AL Bilthoven, The Netherlands;

    Biotechnology Department, Delft University of Technology, Julianalaan 67, 2628 BC Delft, The Netherlands;

    Institute for Translational Vaccinology, Process Development, PO BOX 450, 3720 AL Bilthoven, The Netherlands;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    IPV; Vero cell metabolism; Sabin poliovirus; Mathematical modeling;

    机译:IPV;Vero细胞代谢;沙宾脊髓灰质炎病毒;数学建模;

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