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使用固定床生物反应器中的稳定生产细胞系连续生产慢病毒载体。

Continuous manufacturing of lentiviral vectors using a stable producer cell line in a fixed-bed bioreactor.

作者信息

Stibbs Dale J, Silva Couto Pedro, Takeuchi Yasuhiro, Rafiq Qasim A, Jackson Nigel B, Rayat Andrea C M E

机构信息

Department of Biochemical Engineering, University College London, Bernard Katz Building, Gower Street, London WC1E 6BT, UK.

Division of Infection and Immunity, University College London, Cruciform Building, Gower Street, London WC1E 6BT, UK.

出版信息

Mol Ther Methods Clin Dev. 2024 Feb 9;32(1):101209. doi: 10.1016/j.omtm.2024.101209. eCollection 2024 Mar 14.

Abstract

Continuous manufacturing of lentiviral vectors (LVs) using stable producer cell lines could extend production periods, improve batch-to-batch reproducibility, and eliminate costly plasmid DNA and transfection reagents. A continuous process was established by expanding cells constitutively expressing third-generation LVs in the iCELLis Nano fixed-bed bioreactor. Fixed-bed bioreactors provide scalable expansion of adherent cells and enable a straightforward transition from traditional surface-based culture vessels. At 0.5 vessel volume per day (VVD), the short half-life of LVs resulted in a low total infectious titer at 1.36 × 10 TU cm. Higher perfusion rates increased titers, peaking at 7.87 × 10 TU cm at 1.5 VVD. The supernatant at 0.5 VVD had a physical-to-infectious particle ratio of 659, whereas this was 166 ± 15 at 1, 1.5, and 2 VVD. Reducing the pH from 7.20 to 6.85 at 1.5 VVD improved the total infectious yield to 9.10 × 10 TU cm. Three independent runs at 1.5 VVD and a culture pH of 6.85 showed low batch-to-batch variability, with a coefficient of variation of 6.4% and 10.0% for total infectious and physical LV yield, respectively. This study demonstrated the manufacture of high-quality LV supernatant using a stable producer cell line that does not require induction.

摘要

使用稳定的生产细胞系连续生产慢病毒载体(LVs)可以延长生产周期,提高批次间的重现性,并消除昂贵的质粒DNA和转染试剂。通过在iCELLis Nano固定床生物反应器中扩增组成型表达第三代LVs的细胞,建立了一个连续过程。固定床生物反应器可实现贴壁细胞的可扩展扩增,并能从传统的基于表面的培养容器直接过渡。在每天0.5个容器体积(VVD)的情况下,LVs的短半衰期导致在1.36×10 TU/cm时总感染滴度较低。较高的灌注速率提高了滴度,在1.5 VVD时达到峰值7.87×10 TU/cm。0.5 VVD时的上清液物理粒子与感染性粒子的比例为659,而在1、1.5和2 VVD时为166±15。在1.5 VVD时将pH从7.20降至6.85,使总感染产量提高到9.10×10 TU/cm。在1.5 VVD和培养pH为6.85的情况下进行的三次独立运行显示批次间变异性较低,总感染性和物理LV产量的变异系数分别为6.4%和10.0%。本研究证明了使用无需诱导的稳定生产细胞系生产高质量LV上清液。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/390b/10907162/4a3095e53785/fx1.jpg

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