将快速生物负载测试纳入生产质量管理系统和流程控制。

IF 2.5 3区 生物学 Q3 BIOTECHNOLOGY & APPLIED MICROBIOLOGY Biotechnology Progress Pub Date : 2024-03-07 DOI:10.1002/btpr.3431
Irina Ramos, Michelle Najera, Gene Schaefer
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引用次数: 0

摘要

向集成连续生物工艺(ICB)的转变虽然为工艺强化提供了一种手段,但在使用传统方法时可能会给工艺分析带来更大的压力。例如,传统的微生物方法对 ICB 工艺的价值微乎其微,因为获得数据所需的时间远远长于生产工艺的典型完整周期。尽管微生物快速检测的讨论已经持续了 30 多年,但在商业生物制药生产中仍未得到常规应用。其中一个原因是将该技术融入工艺控制策略和现有质量体系的能力。了解了当今微生物检测技术的能力,就可以利用它来实施一种控制策略,对工艺中间体的生物负载进行实时监控。这种拟议控制策略的一个关键原则是使用 "双层方法",即使用快速(但灵敏度可能较低)检测来监控工艺流程,并触发进一步行动,进行第二次持续时间较长的检测,以确认和量化生物负载的存在并识别生物体。这里介绍的这种方法以及微生物监测的几个案例研究,可以更广泛地应用于其他工艺分析技术,在这些技术中,可以采用符合目的的方法来建立实时连续工艺的工艺控制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Integration of rapid bioburden testing into production quality management systems and process control

The move to integrated continuous bioprocessing (ICB), while providing a means for process intensification, can put added strain on process analytics when conventional methods are used. For instance, traditional microbial methods provide minimal value to ICB processes given that the time required for data to become available is much longer than a typical full cycle of the manufacturing process. Although rapid microbial detection has been in discussion for over 30 years, it is still not routinely deployed in commercial biopharmaceutical manufacturing. One contributing factor is the ability to integrate this technology into a process control strategy and existing quality systems. An understanding of the capability of microbial detection technology available today can be leveraged to implement a control strategy for bioburden monitoring in real time for process intermediates. One key tenet of this proposed control strategy is the use of a “two-tiered approach” wherein a fast (but possibly less sensitive) test is used to monitor the process and trigger further action for a second, longer duration test which is used to confirm and quantify the presence of bioburden and identify the organism. This approach, presented here alongside several case studies for microbial monitoring, can have broader application for other process analytical technologies where fit for purpose methods could be employed to establish process control alongside real time continuous processes.

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来源期刊
Biotechnology Progress
Biotechnology Progress 工程技术-生物工程与应用微生物
CiteScore
6.50
自引率
3.40%
发文量
83
审稿时长
4 months
期刊介绍: Biotechnology Progress , an official, bimonthly publication of the American Institute of Chemical Engineers and its technological community, the Society for Biological Engineering, features peer-reviewed research articles, reviews, and descriptions of emerging techniques for the development and design of new processes, products, and devices for the biotechnology, biopharmaceutical and bioprocess industries. Widespread interest includes application of biological and engineering principles in fields such as applied cellular physiology and metabolic engineering, biocatalysis and bioreactor design, bioseparations and downstream processing, cell culture and tissue engineering, biosensors and process control, bioinformatics and systems biology, biomaterials and artificial organs, stem cell biology and genetics, and plant biology and food science. Manuscripts concerning the design of related processes, products, or devices are also encouraged. Four types of manuscripts are printed in the Journal: Research Papers, Topical or Review Papers, Letters to the Editor, and R & D Notes.
期刊最新文献
Non-thermal plasma decontamination of microbes: a state of the art. Mechanistic model of minute virus of mice elution behavior in anion exchange chromatography purification. Comparing in silico flowsheet optimization strategies in biopharmaceutical downstream processes. General strategies for IgG-like bispecific antibody purification. Issue Information
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