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首页> 外文期刊>Bioprocess Engineering: Bioreactors Upstream and Downstream Processes Measurement and Control >Hydrodynamic shear forces increase Japanese encephalitis virus production from microcarrier-grown Vero cells
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Hydrodynamic shear forces increase Japanese encephalitis virus production from microcarrier-grown Vero cells

机译:流体动力剪切力增加了微载体生长的Vero细胞产生的日本脑炎病毒的产量

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Understanding the effect of hydrodynamic shear forces on microcarrier-attached cells is critical in several viral vaccine production processes, owing to that only the anchorage-dependent cells can be used for virus propagation in cultures. This study demonstrated that increasing the hydrodynamic shear forces in microcarrier cultures can increase the production of a vaccine strain of Japanese encephalitis virus ton a per cell basis) in Vero cells but not BHK-21. The shear force-enhanced JEV production were highly effective at around 2-3 d post infection and required the concentration of fetal bovine serum supplemented in medium above 2.5%. To our knowledge, this study reports for the first time that increasing the hydrodynamic shear forces on microcarrier-grown cells increases virus production in agitated bioreactor cultures. [References: 16]
机译:在几个病毒疫苗的生产过程中,了解流体动力剪切力对附着于微载体的细胞的影响至关重要,这是因为只有锚定依赖性细胞才能用于培养物中的病毒繁殖。这项研究表明,在微载体培养物中增加水动力剪切力可以增加Vero细胞中日本脑炎病毒疫苗株的产量(每细胞每吨),而不是BHK-21。剪切力增强的JEV产生在感染后约2-3天非常有效,并且需要在2.5%以上的培养基中补充胎牛血清的浓度。据我们所知,该研究首次报道了在微载体生长的细胞上增加流体动力剪切力会增加搅拌生物反应器培养物中的病毒产量。 [参考:16]

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