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基于模型的方法在生物制药工艺生命周期中的应用。

Model-Based Methods in the Biopharmaceutical Process Lifecycle.

机构信息

Research Area Biochemical Engineering, Institute of Chemical Environmental and Biological Engineering, Vienna University of Technology, Gumpendorfer Straße 1a - 166/4, A-1060, Vienna, Austria.

Christian Doppler Laboratory for Mechanistic and Physiological Methods for Improved Bioprocesses, TU Wien, Vienna, Austria.

出版信息

Pharm Res. 2017 Dec;34(12):2596-2613. doi: 10.1007/s11095-017-2308-y. Epub 2017 Nov 22.

Abstract

Model-based methods are increasingly used in all areas of biopharmaceutical process technology. They can be applied in the field of experimental design, process characterization, process design, monitoring and control. Benefits of these methods are lower experimental effort, process transparency, clear rationality behind decisions and increased process robustness. The possibility of applying methods adopted from different scientific domains accelerates this trend further. In addition, model-based methods can help to implement regulatory requirements as suggested by recent Quality by Design and validation initiatives. The aim of this review is to give an overview of the state of the art of model-based methods, their applications, further challenges and possible solutions in the biopharmaceutical process life cycle. Today, despite these advantages, the potential of model-based methods is still not fully exhausted in bioprocess technology. This is due to a lack of (i) acceptance of the users, (ii) user-friendly tools provided by existing methods, (iii) implementation in existing process control systems and (iv) clear workflows to set up specific process models. We propose that model-based methods be applied throughout the lifecycle of a biopharmaceutical process, starting with the set-up of a process model, which is used for monitoring and control of process parameters, and ending with continuous and iterative process improvement via data mining techniques.

摘要

基于模型的方法在生物制药工艺技术的各个领域得到了越来越广泛的应用。它们可以应用于实验设计、工艺特性、工艺设计、监测和控制领域。这些方法的好处是实验工作量低、工艺透明、决策背后的合理性清晰以及提高了工艺稳健性。从不同科学领域采用的方法的应用可能性进一步加速了这一趋势。此外,基于模型的方法有助于实现最近的质量源于设计和验证倡议所提出的监管要求。本文的目的是概述生物制药工艺生命周期中基于模型的方法的最新技术、它们的应用、进一步的挑战和可能的解决方案。尽管有这些优势,但在生物工艺技术中,基于模型的方法的潜力仍未得到充分发挥。这是由于(i)用户接受度低,(ii)现有方法提供的用户友好工具,(iii)在现有过程控制系统中的实施,以及(iv)建立特定过程模型的明确工作流程的缺乏。我们建议在生物制药工艺的整个生命周期中应用基于模型的方法,从建立过程模型开始,该模型用于监测和控制工艺参数,最后通过数据挖掘技术进行持续和迭代的工艺改进。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ecf6/5736780/8efb5ddee21f/11095_2017_2308_Fig1_HTML.jpg

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