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采用强化流化床离心平台方法实现经济高效的细胞澄清。

Cost-efficient cell clarification using an intensified fluidized bed centrifugation platform approach.

机构信息

Sartorius, Corporate Research, Göttingen, Germany.

Sartorius, Corporate Research, Boston, Massachusetts, USA.

出版信息

Biotechnol Bioeng. 2024 Aug;121(8):2289-2299. doi: 10.1002/bit.28475. Epub 2023 Jun 19.

DOI:10.1002/bit.28475
PMID:37334463
Abstract

The intensification of industrial biopharmaceutical production and the integration of process steps pave the way for patients to access affordable treatments. The predominantly batchwise biomanufacturing of established cell clarification technologies, stainless steel disc stack centrifugation (DSC) and single-use (SU) depth filtration (DF), pose technological and economical bottlenecks, that include low biomass loading capacities and low product recoveries. Therefore, a novel SU-based clarification platform was developed combining fluidized bed centrifugation (FBC) with integrated filtration. The feasibility of this approach was investigated for high cell concentration with more than 100E6 cells/mL. Furthermore, scalability to 200 L bioreactor scale was tested for moderate cell concentrations. In both trials, low harvest turbidities (4 NTU) and superior antibody recoveries (95%) were achieved. The impact on the overall economics of industrial SU biomanufacturing using an up-scaled FBC approach was compared with DSC and DF technologies for different process parameters. As a result, the FBC showed to be the most cost-effective alternative for annual mAb production below 500 kg. In addition, the FBC clarification of increasing cell concentrations was found to have minimal impact on overall process costs, in contrast to established technologies, demonstrating that the FBC approach is particularly suitable for intensified processes.

摘要

工业生物制药生产的强化和工艺步骤的整合为患者提供了负担得起的治疗方法。已建立的细胞澄清技术,不锈钢碟片式离心机(DSC)和一次性(SU)深度过滤(DF)主要采用分批式生物制造,存在技术和经济瓶颈,包括低生物质负载能力和低产品回收率。因此,开发了一种新型的基于 SU 的澄清平台,将流化床离心(FBC)与集成过滤相结合。研究了这种方法在高细胞浓度(超过 100E6 个细胞/mL)下的可行性。此外,还针对中等细胞浓度对 200 L 生物反应器规模进行了可扩展性测试。在这两种试验中,均实现了低收获浊度(4 NTU)和优异的抗体回收率(95%)。使用放大的 FBC 方法对工业 SU 生物制造的整体经济性的影响,与不同工艺参数的 DSC 和 DF 技术进行了比较。结果表明,对于每年 500 公斤以下的 mAb 生产,FBC 是最具成本效益的替代方案。此外,与已建立的技术相比,增加细胞浓度的 FBC 澄清对整体工艺成本的影响最小,这表明 FBC 方法特别适合强化工艺。

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引用本文的文献

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Streamlined Clarification and Capture Process for Monoclonal Antibodies Using Fluidized Bed Centrifugation and Multi-Column Chromatography With Membrane Adsorbers.使用流化床离心和带膜吸附器的多柱色谱法对单克隆抗体进行简化的澄清和捕获过程
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