Chair of Bioprocess Engineering, Otto-Von-Guericke-University Magdeburg, Magdeburg, Germany.
Bioprocess Engineering, Max Planck Institute for Dynamics of Complex Technical Systems, Magdeburg, Germany.
Appl Microbiol Biotechnol. 2023 Oct;107(19):5947-5961. doi: 10.1007/s00253-023-12689-9. Epub 2023 Aug 5.
Retroviral vectors derived from murine leukemia virus (MLV) are used in somatic gene therapy applications e.g. for genetic modification of hematopoietic stem cells. Recently, we reported on the establishment of a suspension viral packaging cell line (VPC) for the production of MLV vectors. Human embryonic kidney 293-F (HEK293-F) cells were genetically modified for this purpose using transposon vector technology. Here, we demonstrate the establishment of a continuous high cell density (HCD) process using this cell line. First, we compared different media regarding the maximum achievable viable cell concentration (VCC) in small scale. Next, we transferred this process to a stirred tank bioreactor before we applied intensification strategies. Specifically, we established a perfusion process using an alternating tangential flow filtration system. Here, VCCs up to 27.4E + 06 cells/mL and MLV vector titers up to 8.6E + 06 transducing units/mL were achieved. Finally, we established a continuous HCD process using a tubular membrane for cell retention and continuous viral vector harvesting. Here, the space-time yield was 18-fold higher compared to the respective batch cultivations. Overall, our results clearly demonstrate the feasibility of HCD cultivations for high yield production of viral vectors, especially when combined with continuous viral vector harvesting. KEY POINTS: • A continuous high cell density process for MLV vector production was established • The tubular cell retention membrane allowed for continuous vector harvesting • The established process had a 18-fold higher space time yield compared to a batch.
逆转录病毒载体来源于鼠白血病病毒(MLV),用于体细胞核移植基因治疗应用,例如对造血干细胞进行遗传修饰。最近,我们报道了建立悬浮病毒包装细胞系(VPC)用于生产 MLV 载体。为此,使用转座子载体技术对人胚肾 293-F(HEK293-F)细胞进行了遗传修饰。在这里,我们展示了使用该细胞系建立连续高细胞密度(HCD)工艺的过程。首先,我们比较了不同培养基在小规模下可达到的最大活细胞浓度(VCC)。接下来,我们将该过程转移到搅拌槽生物反应器中,然后应用强化策略。具体来说,我们使用交替切向流过滤系统建立了灌注过程。在这里,达到了 27.4E+06 个细胞/mL 的 VCC 和高达 8.6E+06 个转导单位/mL 的 MLV 载体滴度。最后,我们使用管状膜进行细胞保留和连续病毒载体收获,建立了连续 HCD 工艺。在这里,与相应的分批培养相比,时空产率提高了 18 倍。总之,我们的结果清楚地表明了 HCD 培养在高产病毒载体生产中的可行性,尤其是与连续病毒载体收获相结合时。关键点:• 建立了用于 MLV 载体生产的连续高细胞密度工艺。• 管状细胞保留膜允许连续收获载体。• 与分批培养相比,所建立的工艺时空产率提高了 18 倍。