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优化半连续亲和层析的设计和操作,以用于临床和商业生产。

Optimising the design and operation of semi-continuous affinity chromatography for clinical and commercial manufacture.

机构信息

The Advanced Centre for Biochemical Engineering, Department of Biochemical Engineering, University College London, Torrington Place, London WC1E 7JE, United Kingdom.

出版信息

J Chromatogr A. 2013 Apr 5;1284:17-27. doi: 10.1016/j.chroma.2013.01.082. Epub 2013 Jan 25.

Abstract

This paper presents an integrated experimental and modelling approach to evaluate the potential of semi-continuous chromatography for the capture of monoclonal antibodies (mAb) in clinical and commercial manufacture. Small-scale single-column experimental breakthrough studies were used to derive design equations for the semi-continuous affinity chromatography system. Verification runs with the semi-continuous 3-column and 4-column periodic counter current (PCC) chromatography system indicated the robustness of the design approach. The product quality profiles and step yields (after wash step optimisation) achieved were comparable to the standard batch process. The experimentally-derived design equations were incorporated into a decisional tool comprising dynamic simulation, process economics and sizing optimisation. The decisional tool was used to evaluate the economic and operational feasibility of whole mAb bioprocesses employing PCC affinity capture chromatography versus standard batch chromatography across a product's lifecycle from clinical to commercial manufacture. The tool predicted that PCC capture chromatography would offer more significant savings in direct costs for early-stage clinical manufacture (proof-of-concept) (∼30%) than for late-stage clinical (∼10-15%) or commercial (∼5%) manufacture. The evaluation also highlighted the potential facility fit issues that could arise with a capture resin (MabSelect) that experiences losses in binding capacity when operated in continuous mode over lengthy commercial campaigns. Consequently, the analysis explored the scenario of adopting the PCC system for clinical manufacture and switching to the standard batch process following product launch. The tool determined the PCC system design required to operate at commercial scale without facility fit issues and with similar costs to the standard batch process whilst pursuing a process change application. A retrofitting analysis established that the direct cost savings obtained by 8 proof-of-concept batches would be sufficient to pay back the investment cost of the pilot-scale semi-continuous chromatography system.

摘要

本文提出了一种综合的实验和建模方法,用于评估半连续色谱法在临床和商业生产中捕获单克隆抗体(mAb)的潜力。使用小型单柱实验突破研究来推导半连续亲和色谱系统的设计方程。使用半连续 3 柱和 4 柱周期性逆流(PCC)色谱系统的验证运行表明了设计方法的稳健性。经过优化后的洗涤步骤后,所获得的产品质量谱和分步收率(step yields)与标准批处理过程相当。实验得出的设计方程被纳入了一个决策工具,该工具包括动态模拟、工艺经济性和规模优化。该决策工具用于评估在整个 mAb 生物工艺过程中采用 PCC 亲和捕获色谱法相对于标准批处理色谱法的经济和操作可行性,跨越从临床到商业生产的产品生命周期。该工具预测,PCC 捕获色谱法在早期临床生产(概念验证)(∼30%)阶段的直接成本节约将比晚期临床(∼10-15%)或商业(∼5%)生产阶段更为显著。评估还强调了在使用连续模式进行长时间商业运行时,结合能力损失的捕获树脂(MabSelect)可能会出现的设施适配问题。因此,该分析探讨了在产品推出后,采用 PCC 系统进行临床生产并切换到标准批处理过程的情景。该工具确定了需要以商业规模运行而无设施适配问题的 PCC 系统设计,同时在追求工艺变更申请的过程中,成本与标准批处理过程相当。改装分析表明,通过 8 个概念验证批次获得的直接成本节约足以支付小规模半连续色谱系统的投资成本。

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