化学
色谱法
下游加工
洗脱
温度梯度
分馏
乙二醇
溶剂
聚乙二醇化
产量(工程)
梯度洗脱
逆流交换
蛋白质纯化
高效液相色谱法
聚乙二醇
有机化学
热力学
物理
量子力学
作者
Tae Keun Kim,Abdallah Ayub Bham,Ismaele Fioretti,James Angelo,Xuankuo Xu,Sanchayita Ghose,Massimo Morbidelli,Mattia Sponchioni
标识
DOI:10.1016/j.chroma.2023.463868
摘要
Protein PEGylation, i.e. functionalization with poly(ethylene glycol) chains, has been demonstrated an efficient way to improve the therapeutic index of these biopharmaceuticals. We demonstrated that Multicolumn Countercurrent Solvent Gradient Purification (MCSGP) is an efficient process for the separation of PEGylated proteins (Kim et al., Ind. and Eng. Chem. Res. 2021, 60, 29, 10764-10776), thanks to the internal recycling of product-containing side fractions. This recycling phase plays a critical role in the economy of MCSGP as it avoids wasting valuable product, but at the same time impacts its productivity extending the overall process duration. In this study, our aim is to elucidate the role of the gradient slope within this recycling stage on the yield and productivity of MCSGP for two case-studies: PEGylated lysozyme and an industrially relevant PEGylated protein. While all the examples of MCSGP in the literature refer to a single gradient slope in the elution phase, for the first time we systematically investigate three different gradient configurations: i) a single gradient slope throughout the entire elution, ii) recycling with an increased gradient slope, to shed light on the competition between volume of the recycled fraction and required inline dilution and iii) an isocratic elution during the recycling phase. The dual gradient elution proved to be a valuable solution for boosting the recovery of high-value products, with the potential for alleviating the pressure on the upstream processing.
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