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在早期工艺开发中,对影响表达 SARS-CoV-2 刺突蛋白作为疫苗抗原的稳定仓鼠卵巢细胞池生长和产率的工艺参数进行多元数据分析。

Multivariate data analysis of process parameters affecting the growth and productivity of stable Chinese hamster ovary cell pools expressing SARS-CoV-2 spike protein as vaccine antigen in early process development.

机构信息

Department of Chemical Engineering, Polytechnique Montreal, Montreal, Canada.

Human Health Therapeutics Research Centre, National Research Council Canada, Canada.

出版信息

Biotechnol Prog. 2024 Sep-Oct;40(5):e3467. doi: 10.1002/btpr.3467. Epub 2024 Apr 25.

Abstract

The recent COVID-19 pandemic revealed an urgent need to develop robust cell culture platforms which can react rapidly to respond to this kind of global health issue. Chinese hamster ovary (CHO) stable pools can be a vital alternative to quickly provide gram amounts of recombinant proteins required for early-phase clinical assays. In this study, we analyze early process development data of recombinant trimeric spike protein Cumate-inducible manufacturing platform utilizing CHO stable pool as a preferred production host across three different stirred-tank bioreactor scales (0.75, 1, and 10 L). The impact of cell passage number as an indicator of cell age, methionine sulfoximine (MSX) concentration as a selection pressure, and cell seeding density was investigated using stable pools expressing three variants of concern. Multivariate data analysis with principal component analysis and batch-wise unfolding technique was applied to evaluate the effect of critical process parameters on production variability and a random forest (RF) model was developed to forecast protein production. In order to further improve process understanding, the RF model was analyzed with Shapley value dependency plots so as to determine what ranges of variables were most associated with increased protein production. Increasing longevity, controlling lactate build-up, and altering pH deadband are considered promising approaches to improve overall culture outcomes. The results also demonstrated that these pools are in general stable expressing similar level of spike proteins up to cell passage 11 (~31 cell generations). This enables to expand enough cells required to seed large volume of 200-2000 L bioreactor.

摘要

最近的 COVID-19 大流行凸显出开发强大细胞培养平台的迫切需要,该平台能够快速反应,应对此类全球健康问题。中国仓鼠卵巢(CHO)稳定池可以作为一种重要的替代方案,快速提供用于早期临床检测所需的克级重组蛋白。在这项研究中,我们分析了利用 CHO 稳定池作为首选生产宿主的重组三聚体刺突蛋白 Cumate 诱导制造平台的早期工艺开发数据,该平台跨越三个不同搅拌罐生物反应器规模(0.75、1 和 10L)。使用表达三种关注变体的稳定池,研究了细胞传代数作为细胞年龄的指标、蛋氨酸亚砜亚胺(MSX)浓度作为选择压力以及细胞接种密度的影响。使用主成分分析和批处理展开技术的多元数据分析评估了关键工艺参数对生产变异性的影响,并开发了随机森林(RF)模型来预测蛋白产量。为了进一步提高工艺理解,使用 Shapley 值依赖图分析 RF 模型,以确定哪些变量范围与增加蛋白产量最相关。延长细胞寿命、控制乳酸积累和改变 pH 死区被认为是改善整体培养结果的有前途的方法。结果还表明,这些池通常在传代 11 代(约 31 个细胞世代)之前稳定表达类似水平的刺突蛋白。这使得能够扩展足够的细胞,以接种 200-2000L 生物反应器的大量细胞。

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