Global Product Development and Supply, Bristol Myers Squibb Company, Devens, Massachusetts, USA.
Global Product Development and Supply, Bristol Myers Squibb Company, Summit, New Jersey, USA.
Biotechnol Bioeng. 2021 Sep;118(9):3334-3347. doi: 10.1002/bit.27723. Epub 2021 Mar 11.
The goal of cell culture process intensification is to improve productivity while maintaining acceptable quality attributes. In this report, four processes, namely a conventional manufacturing Process A, and processes intensified by enriched N-1 seed (Process B), by perfusion N-1 seed (Process C), and by perfusion production (Process D) were developed for the production of a monoclonal antibody. The three intensified processes substantially improved productivity, however, the product either failed to meet the specification for charge variant species (main peak) for Process D or the production process required early harvest to meet the specification for charge variant species, Day 10 or Day 6 for Processes B and C, respectively. The lower main peak for the intensified processes was due to higher basic species resulting from higher C-terminal lysine. To resolve this product quality issue, we developed an enzyme treatment method by introducing carboxypeptidase B (CpB) to clip the C-terminal lysine, leading to significantly increased main peak and an acceptable and more homogenous product quality for all the intensified processes. Additionally, Processes B and C with CpB treatment extended bioreactor durations to Day 14 increasing titer by 38% and 108%, respectively. This simple yet effective enzyme treatment strategy could be applicable to other processes that have similar product quality issues.
细胞培养过程强化的目标是在保持可接受的质量属性的同时提高生产力。在本报告中,开发了四种工艺,即传统的制造工艺 A,通过富集 N-1 种子(工艺 B)、灌注 N-1 种子(工艺 C)和灌注生产(工艺 D)强化的工艺,用于生产单克隆抗体。这三种强化工艺大大提高了生产力,但产品要么不符合电荷变异物种(主峰)的规格(对于工艺 D),要么生产工艺需要提前收获以满足电荷变异物种的规格,对于工艺 B 和 C,分别为第 10 天或第 6 天。强化工艺中主峰较低是由于较高的 C 末端赖氨酸导致较高的碱性物种。为了解决这个产品质量问题,我们开发了一种酶处理方法,通过引入羧肽酶 B(CpB)来剪断 C 末端赖氨酸,从而显著增加主峰,并使所有强化工艺的产品质量具有可接受的均一性。此外,经过 CpB 处理的工艺 B 和 C 将生物反应器的持续时间延长至第 14 天,分别提高了 38%和 108%的滴度。这种简单而有效的酶处理策略可适用于具有类似产品质量问题的其他工艺。