Quality by Design in Downstream Process Development of Romiplostim

下游加工 设计质量 下游(制造业) 化学 关键质量属性 色谱法 重组DNA 工艺工程 生物化学 工程类 运营管理 基因
作者
Saeedeh Pouri,Fatemeh Torkashvand,Hooman Aghamirza Moghim Aliabadi,Pezhman Fard‐Esfahani,Majid Golkar,Behrouz Vaziri
出处
期刊:Iranian biomedical journal [Pasteur Institute of Iran]
卷期号:26 (6): 414-425 被引量:3
标识
DOI:10.52547/ibj.3790
摘要

Background: Background: Downstream processing of therapeutic recombinant proteins expressed as the inclusion bodies (IBs) in E. coli is quite challenging. This study aimed to use the quality by design approach for developing the multi-step downstream process of a structurally complex therapeutic Fc-Peptide fusion protein, romiplostim. Methods: Methods: For development of a successful downstream process, risk analysis and experimental designs were used to characterize the most critical quality attributes (CQAs) and effects of process parameters on these quality attributes. Results: Results: The solubilization of IBs was optimized by design of experiment on three parameters with a focus on solubility yield, which resulted in >75% increase of the target protein solubilization. The pH of sample was identified as CQA in anion exchange chromatography that might have an impact on achieving >85% host cell proteins removal and >90% host cell DNA reduction. In the refolding step, process parameters were screened. Cystine/cysteine ratio, pH, and incubation time identified as CPPs were further optimized using Box-Behnken analysis, which >85% of the target protein was refolded. The design space for further purification step by HIC was mapped with a focus on high molecular weight impurities. After polishing by gel filtration, the final product's biological activity showed no statistically significant differences among the groups received romiplostim and Nplate®, as the reference product. Conclusions: Conclusion: This research presents a precise and exhaustive model for mapping the design space in order to describe and anticipate the link between the yield and quality of romiplostim and its downstream process parameters.
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