Max Planck Institute for Dynamics of Complex Technical Systems, Sandtorstr. 1, 39106 Magdeburg, Germany; Advanced Materials and Processes (MAP), Elite Graduate Program, University of Erlangen-Nuremberg, Martenstr. 5-7, 91058 Erlangen, Germany.
Max Planck Institute for Dynamics of Complex Technical Systems, Sandtorstr. 1, 39106 Magdeburg, Germany; University of Applied Sciences Esslingen, Kanalstrasse 33, 73728 Esslingen, Germany.
Vaccine. 2014 Feb 12;32(8):1003-11. doi: 10.1016/j.vaccine.2013.11.044. Epub 2013 Nov 19.
Hollow fiber bioreactors (HFBRs) have been widely described as capable of supporting the production of highly concentrated monoclonal antibodies and recombinant proteins. Only recently HFBRs have been proposed as new single-use platforms for production of high-titer influenza A virus. These bioreactors contain multiple hollow fiber capillary tubes that separate the bioreactor in an intra- and an extra-capillary space. Cells are usually cultured in the extra-capillary space and can grow to a very high cell concentration. This work describes the evaluation of the single-use hollow fiber bioreactor PRIMER HF (Biovest International Inc., USA) for production of influenza A virus. The process was setup, characterized and optimized by running a total of 15 cultivations. The HFBRs were seeded with either adherent or suspension MDCK cells, and infected with influenza virus A/PR/8/34 (H1N1), and the pandemic strain A/Mexico/4108/2009 (H1N1). High HA titers and TCID₅₀ of up to 3.87 log₁₀(HA units/100 μL) and 1.8 × 10(10)virions/mL, respectively, were obtained for A/PR/8/34 influenza strain. Influenza virus was collected by performing multiple harvests of the extra-capillary space during a virus production time of up to 12 days. Cell-specific virus yields between 2,000 and 8,000 virions/cell were estimated for adherent MDCK cells, and between 11,000 and 19,000 virions/cell for suspension MDCK.SUS2 cells. These results do not only coincide with the cell-specific virus yields obtained with cultivations in stirred tank bioreactors and other high cell density systems, but also demonstrate that HFBRs are promising and competitive single-use platforms that can be considered for commercial production of influenza virus.
中空纤维生物反应器(HFBRs)被广泛描述为能够支持高浓度单克隆抗体和重组蛋白的生产。直到最近,HFBR 才被提议作为生产高滴度甲型流感病毒的新型一次性使用平台。这些生物反应器包含多个中空纤维毛细管,将生物反应器分隔在毛细管内空间和毛细管外空间中。细胞通常在毛细管外空间中培养,可以生长到非常高的细胞浓度。本工作描述了用于生产甲型流感病毒的一次性使用中空纤维生物反应器 PRIMER HF(Biovest International Inc.,美国)的评估。通过总共运行 15 个培养物来设置、表征和优化该过程。HFBR 用贴壁或悬浮 MDCK 细胞接种,并感染甲型流感病毒 A/PR/8/34(H1N1)和大流行株 A/Mexico/4108/2009(H1N1)。对于 A/PR/8/34 流感株,获得了高达 3.87 log₁₀(HA 单位/100 μL)和 1.8×10(10)病毒粒子/mL 的高 HA 滴度和 TCID₅₀。通过在长达 12 天的病毒生产时间内多次收获毛细管外空间来收集流感病毒。对于贴壁 MDCK 细胞,估计细胞特异性病毒产量在 2,000 到 8,000 个病毒粒子/细胞之间,对于悬浮 MDCK.SUS2 细胞,估计细胞特异性病毒产量在 11,000 到 19,000 个病毒粒子/细胞之间。这些结果不仅与搅拌罐生物反应器和其他高细胞密度系统培养中获得的细胞特异性病毒产量一致,还表明 HFBR 是有前途的、有竞争力的一次性使用平台,可用于商业生产流感病毒。