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用于单克隆抗体连续生产的缓冲罐控制。

Control of surge tanks for continuous manufacturing of monoclonal antibodies.

机构信息

Department of Chemical Engineering, Indian Institute of Technology, Hauz Khas, New Delhi, India.

出版信息

Biotechnol Bioeng. 2021 May;118(5):1913-1931. doi: 10.1002/bit.27706.

Abstract

Surge tanks are critical but often overlooked enablers of continuous bioprocessing. They provide multiple benefits including dampening of concentration gradients and allowing process resumption efforts in case of equipment failure or unexpected deviations, which can occur during a continuous campaign of weeks or months. They are also useful in enabling steady-state operation across a continuous train by facilitating mass balance between unit operations such as chromatography which have periodic loading and elution cycles. In this paper, we propose a design of a system of surge tanks for a monoclonal antibody (mAb) production process consisting of cell culture, clarification, capture chromatography, viral inactivation, polishing chromatography, and single-pass ultrafiltration and diafiltration. A Python controller has been developed for robust control of the continuous train. The controller has four layers, namely data acquisition, process scheduling, deviation handling, and real-time execution. A set of general guidelines for surge tank placement and sizing have been proposed together with process control strategies based on the design space of the individual unit operations, failure modes analysis of the different equipment, and expected variability in the process feed streams for both fed-batch and perfusion bioreactors. The control system has been successfully demonstrated for several continuous runs of up to 36 h in duration and is able to leverage surge tanks for robust control of the continuous train in the face of product variability as well as process errors while maintaining critical quality attributes. The proposed set of strategies for surge tank control are adaptable to most continuous processing setups for mAbs, and together form the first framework that can fully realize the benefits of surge tanks in continuous bioprocessing.

摘要

缓冲罐是连续生物工艺过程中的关键但常被忽视的促进因素。它们提供了多种好处,包括缓冲浓度梯度和在设备故障或意外偏差的情况下允许恢复过程,这些偏差可能在数周或数月的连续运行期间发生。它们还通过促进周期性装料和洗脱循环的单元操作(如色谱)之间的质量平衡,在连续列车中实现稳态操作方面非常有用。在本文中,我们提出了一种由细胞培养、澄清、捕获色谱、病毒灭活、抛光色谱和单次通过超滤和渗滤组成的单克隆抗体(mAb)生产过程的缓冲罐系统设计。已经开发了一个用于连续列车的稳健控制的 Python 控制器。该控制器具有四层,即数据采集、过程调度、偏差处理和实时执行。提出了一组关于缓冲罐放置和尺寸的一般准则,并结合了基于各个单元操作设计空间、不同设备故障模式分析以及补料分批和灌注生物反应器中过程进料流的预期可变性的过程控制策略。该控制系统已成功用于长达 36 小时的连续运行,能够利用缓冲罐在面对产品变化以及在保持关键质量属性的同时控制连续列车的稳健控制过程误差。所提出的缓冲罐控制策略集适用于大多数 mAb 的连续处理设置,并共同形成了第一个能够充分实现连续生物工艺中缓冲罐优势的框架。

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