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High titer MVA and influenza A virus production using a hybrid fed-batch/perfusion strategy with an ATF system

机译:使用ATF系统的混合分批/灌注混合策略高滴度生产MVA和甲型流感病毒

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摘要

A cultivation strategy to increase the productivity of Modified Vaccinia Ankara (MVA) virus in high-cell density processes is presented. Based on an approach developed in shake flask cultures, this strategy was established in benchtop bioreactors, comprising the growth of suspension AGE1.CR.pIX cells to high cell densities in a chemically defined medium before infection with the MVA-CR19 virus strain. First, a perfusion regime was established to optimize the cell growth phase. Second, a fed-batch regime was chosen for the initial infection phase to facilitate virus uptake and cell-to-cell spreading. Afterwards, a switch to perfusion enabled the continuous supply of nutrients for the late stages of virus propagation. With maximum infectious titers of 1.0 × 1010 IU/mL, this hybrid fed-batch/perfusion strategy increased product titers by almost one order of magnitude compared to conventional batch cultivations. Finally, this strategy was also applied to the production of influenza A/PR/8/34 (H1N1) virus considered for manufacturing of inactivated vaccines. Using the same culture system, a total number of 3.8 × 1010 virions/mL was achieved. Overall, comparable or even higher cell-specific virus yields and volumetric productivities were obtained using the same cultivation systems as for the conventional batch cultivations. In addition, most viral particles were found in the culture supernatant, which can simplify further downstream operations, in particular for MVA viruses. Considering the current availability of well-described perfusion/cell retention technologies, the present strategy may contribute to the development of new approaches for viral vaccine production.Electronic supplementary materialThe online version of this article (10.1007/s00253-019-09694-2) contains supplementary material, which is available to authorized users.
机译:提出了在高细胞密度过程中提高改良安卡拉牛痘(MVA)病毒生产力的培养策略。基于摇瓶培养中开发的方法,在台式生物反应器中建立了该策略,包括在感染MVA-CR19病毒株之前,在化学成分确定的培养基中使AGE1.CR.pIX悬浮液细胞生长至高细胞密度。首先,建立灌注方案以优化细胞生长阶段。其次,在初始感染阶段选择了分批补料方案,以促进病毒吸收和细胞间扩散。之后,转向灌注使病毒繁殖后期可以持续供应营养。与常规分批培养相比,这种混合的分批补料/灌流策略的最大感染滴度为1.0××10 10 IU / mL,将产品滴度提高了近一个数量级。最后,该策略还应用于考虑用于生产灭活疫苗的A / PR / 8/34(H1N1)流感病毒的生产。使用相同的培养系统,获得总数为3.8×10 10 病毒粒子/ mL。总体而言,使用与常规分批培养相同的培养系统,可获得相当甚至更高的细胞特异性病毒产量和体积生产率。此外,在培养上清液中发现了大多数病毒颗粒,这可以简化进一步的下游操作,尤其是对于MVA病毒。考虑到目前描述良好的灌注/细胞保留技术的可用性,本策略可能有助于开发生产病毒疫苗的新方法。电子补充材料本文的在线版本(10.1007 / s00253-019-09694-2)包含补充材料,授权用户可以使用。

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