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Infection dynamics and virus-induced apoptosis in cell culture-based influenza vaccine production-Flow cytometry and mathematical modeling

机译:基于细胞培养的流感疫苗生产中的感染动力学和病毒诱导的凋亡-流式细胞术和数学建模

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摘要

Cell culture-based influenza vaccine manufacturing is of growing importance. Depending on virus strains, differences in infection dynamics, virus-induced apoptosis, cell lysis and virus yields are observed. Comparatively little is known concerning details of virus-host cell interaction on a cellular level and virus spreading in a population of cells in bioreactors. In this study, the infection of MDCK cells with different influenza A virus strains in lab-scale microcarrier culture was investigated by flow cytometry. Together with the infection status of cells, virus-induced apoptosis was monitored. A mathematical model has been formulated to describe changes in the concentration of uninfected and infected adherent cells, dynamics of virus particle release (infectious virions, hemagglutinin content), and the time course of the percentage composition of the cell population.
机译:基于细胞培养的流感疫苗的生产越来越重要。根据病毒株,观察到感染动力学,病毒诱导的凋亡,细胞裂解和病毒产量方面的差异。关于病毒-宿主细胞在细胞水平上的相互作用以及病毒在生物反应器中的细胞群中传播的细节,鲜为人知。在这项研究中,通过流式细胞术研究了在实验室规模的微载体培养中不同甲型流感病毒株对MDCK细胞的感染。连同细胞的感染状态,监测病毒诱导的凋亡。已经建立了一个数学模型来描述未感染和感染的贴壁细胞浓度的变化,病毒颗粒释放的动力学(感染性病毒粒子,血凝素含量)以及细胞群体百分组成的时间过程。

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