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连续集成单克隆抗体生产工艺的设计与操作

Design and operation of a continuous integrated monoclonal antibody production process.

作者信息

Steinebach Fabian, Ulmer Nicole, Wolf Moritz, Decker Lara, Schneider Veronika, Wälchli Ruben, Karst Daniel, Souquet Jonathan, Morbidelli Massimo

机构信息

Dept. of Chemistry and Applied Biosciences, Inst. for Chemical and Bioengineering, ETH Zurich, Zurich, 8093, Switzerland.

Biotech Process Science Technology & Innovation, Merck-Serono S.A., 1804 Corsier-sur-Vevey, Switzerland.

出版信息

Biotechnol Prog. 2017 Sep;33(5):1303-1313. doi: 10.1002/btpr.2522. Epub 2017 Aug 21.

Abstract

The realization of an end-to-end integrated continuous lab-scale process for monoclonal antibody manufacturing is described. For this, a continuous cultivation with filter-based cell-retention, a continuous two column capture process, a virus inactivation step, a semi-continuous polishing step (twin-column MCSGP), and a batch-wise flow-through polishing step were integrated and operated together. In each unit, the implementation of internal recycle loops allows to improve the performance: (a) in the bioreactor, to simultaneously increase the cell density and volumetric productivity, (b) in the capture process, to achieve improved capacity utilization at high productivity and yield, and (c) in the MCSGP process, to overcome the purity-yield trade-off of classical batch-wise bind-elute polishing steps. Furthermore, the design principles, which allow the direct connection of these steps, some at steady state and some at cyclic steady state, as well as straight-through processing, are discussed. The setup was operated for the continuous production of a commercial monoclonal antibody, resulting in stable operation and uniform product quality over the 17 cycles of the end-to-end integration. The steady-state operation was fully characterized by analyzing at the outlet of each unit at steady state the product titer as well as the process (HCP, DNA, leached Protein A) and product (aggregates, fragments) related impurities. © 2017 American Institute of Chemical Engineers Biotechnol. Prog., 33:1303-1313, 2017.

摘要

本文描述了一种用于单克隆抗体制备的端到端集成连续实验室规模工艺的实现。为此,将基于过滤器的细胞保留连续培养、连续双柱捕获工艺、病毒灭活步骤、半连续精制步骤(双塔MCSGP)和分批流通精制步骤集成并一起运行。在每个单元中,内部循环回路的实施有助于提高性能:(a) 在生物反应器中,同时提高细胞密度和体积生产率;(b) 在捕获过程中,在高生产率和高收率下实现更高的容量利用率;(c) 在MCSGP工艺中,克服传统分批结合洗脱精制步骤中纯度-收率的权衡。此外,还讨论了允许这些步骤直接连接的设计原则,其中一些步骤处于稳态,一些处于循环稳态,以及直通处理。该装置用于连续生产一种商业单克隆抗体,在端到端集成的17个循环中实现了稳定运行和均匀的产品质量。通过在稳态下分析每个单元出口处的产品效价以及与工艺(宿主细胞蛋白、DNA、洗脱的蛋白A)和产品(聚集体、片段)相关的杂质,对稳态运行进行了全面表征。© 2017美国化学工程师学会生物技术进展,33:1303 - 1313,2017。

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