Lee Yi Feng, Jöhnck Matthias, Frech Christian
Institute of Biochemistry, Department of Biotechnology, University of Applied Sciences Mannheim, Mannheim, Germany.
Department of Process Solutions, Actives & Formulation, Merck KGaA, Darmstadt, Germany.
Biotechnol Prog. 2018 Jul;34(4):973-986. doi: 10.1002/btpr.2626. Epub 2018 Mar 25.
The efficiencies of mono gradient elution and dual salt-pH gradient elution for separation of six mAb charge and size variants on a preparative-scale ion exchange chromatographic resin are compared in this study. Results showed that opposite dual salt-pH gradient elution with increasing pH gradient and simultaneously decreasing salt gradient is best suited for the separation of these mAb charge and size variants on Eshmuno CPX. Besides giving high binding capacity, this type of opposite dual salt-pH gradient also provides better resolved mAb variant peaks and lower conductivity in the elution pools compared to single pH or salt gradients. To have a mechanistic understanding of the differences in mAb variants retention behaviors of mono pH gradient, parallel dual salt-pH gradient, and opposite dual salt-pH gradient, a linear gradient elution model was used. After determining the model parameters using the linear gradient elution model, 2D plots were used to show the pH and salt dependencies of the reciprocals of distribution coefficient, equilibrium constant, and effective ionic capacity of the mAb variants in these gradient elution systems. Comparison of the 2D plots indicated that the advantage of opposite dual salt-pH gradient system with increasing pH gradient and simultaneously decreasing salt gradient is the noncontinuous increased acceleration of protein migration. Furthermore, the fitted model parameters can be used for the prediction and optimization of mAb variants separation in dual salt-pH gradient and step elution. © 2018 American Institute of Chemical Engineers Biotechnol. Prog., 34:973-986, 2018.
本研究比较了单梯度洗脱和双盐 - pH 梯度洗脱在制备规模离子交换色谱树脂上分离六种单克隆抗体电荷和大小变体的效率。结果表明,pH 梯度增加同时盐梯度降低的反向双盐 - pH 梯度洗脱最适合在 Eshmuno CPX 上分离这些单克隆抗体电荷和大小变体。与单一 pH 或盐梯度相比,这种反向双盐 - pH 梯度不仅具有高结合容量,还能提供分辨率更高的单克隆抗体变体峰,且洗脱池中的电导率更低。为了从机理上理解单 pH 梯度、平行双盐 - pH 梯度和反向双盐 - pH 梯度下单克隆抗体变体保留行为的差异,使用了线性梯度洗脱模型。利用线性梯度洗脱模型确定模型参数后,通过二维图展示了这些梯度洗脱系统中单克隆抗体变体的分配系数倒数、平衡常数和有效离子容量对 pH 和盐的依赖性。二维图的比较表明,pH 梯度增加同时盐梯度降低的反向双盐 - pH 梯度系统的优势在于蛋白质迁移的加速是非连续增加的。此外,拟合的模型参数可用于预测和优化双盐 - pH 梯度和分步洗脱中单克隆抗体变体的分离。© 2018 美国化学工程师学会生物技术进展,34:973 - 986,2018。