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Process development in the QbD paradigm: Role of process integration in process optimization for production of biotherapeutics

机译:QbD范式中的过程开发:过程集成在生物药物生产过程优化中的作用

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Biotherapeutics have become the focus of the pharmaceutical industry due to their proven effectiveness in managing complex diseases. Downstream processes of these molecules consist of several orthogonal, high resolution unit operations designed so as to be able to separate variants having very similar physicochemical properties. Typical process development involves optimization of the individual unit operations based on Quality by Design principles in order to define the design space within which the process can deliver product that meets the predefined specifications. However, limited efforts are dedicated to understanding the interactions between the unit operations. This paper aims to showcase the importance of understanding these interactions and thereby arrive at operating conditions that are optimal for the overall process. It is demonstrated that these are not necessarily same as those obtained from optimization of the individual unit operations. Purification of Granulocyte Colony Stimulating Factor (G-CSF), a biotherapeutic expressed in E. coli., has been used as a case study. It is evident that the suggested approach results in not only higher yield (91.5 vs. 86.4) but also improved product quality (% RP-HPLC purity of 98.3 vs. 97.5) and process robustness. We think that this paper is very relevant to the present times when the biotech industry is in the midst of implementing Quality by Design towards process development. (c) 2015 American Institute of Chemical Engineers Biotechnol. Prog., 32:355-362, 2016
机译:由于其在控制复杂疾病方面的行之有效的作用,生物治疗已成为制药行业的重点。这些分子的下游过程由几个正交的高分辨率单元操作组成,这些操作被设计为能够分离具有非常相似的物理化学性质的变体。典型的过程开发涉及根据“按质量设计”原则优化各个单元的操作,以便定义设计空间,在该空间内过程可以交付满足预定义规格的产品。但是,为了解单元操作之间的相互作用所做的有限努力。本文旨在展示理解这些相互作用的重要性,从而得出对于整个过程而言最佳的操作条件。事实证明,这些不一定与通过优化单个单元操作获得的相同。案例研究使用了在大肠杆菌中表达的生物治疗剂-粒细胞集落刺激因子(G-CSF)的纯化。显然,建议的方法不仅导致更高的收率(91.5对86.4),而且还提高了产品质量(RP-HPLC的%纯度为98.3对97.5)和鲁棒性。我们认为,本文与生物技术行业在实施“按质量设计”迈向流程开发的时代非常相关。 (c)2015美国化学工程师学会生物技术学会。 Prog。,32:355-362,2016年

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