BIA Separations d.o.o, a Sartorius Company, Ajdovščina, Slovenia.
Electrophoresis. 2022 Feb;43(4):527-534. doi: 10.1002/elps.202100325. Epub 2021 Dec 23.
The rise of biosimilar monoclonal antibodies has renewed the interest in monoclonal antibody (mAb) charge variants composition and separation. The sample displacement chromatography (SDC) has the potential to overcome the low separation efficiency and productivity associated with bind-elute separation of mAb charge variants. SDC in combination with weak cation exchanging macroporous monolithic chromatographic column was successfully implemented for a separation of charge variants and aggregates of monoclonal IgG under overloading conditions. The charge variants composition was at-line monitored by a newly developed, simple and fast analytical method, based on weak cation exchange chromatography. It was proven that basic charge variants acted as displacers of IgG molecules with lower pI, when the loading was performed 1 to 1.5 pH unit below the pI of acidic charge variants. The efficiency of the SDC process is flow rate independent due to a convection-based mass transfer on the macroporous monolith. The productivity of the process at optimal conditions is 35 mg of purified IgG fraction per milliliters of monolithic support with 75-80% recovery. As such, an SDC approach surpasses the standard bind-elute separation in the productivity for a factor of 3, when performed on the same column. The applicability of the SDC approach was confirmed for porous particle-based column as well, but with 1.5 lower productivity compared to the monoliths.
生物类似药单克隆抗体的兴起重新激发了人们对单克隆抗体 (mAb) 电荷变异体组成和分离的兴趣。样品置换色谱 (SDC) 有可能克服与 mAb 电荷变异体的结合洗脱分离相关的低分离效率和低生产率。SDC 与弱阳离子交换大孔整体柱状色谱柱相结合,成功地在过载条件下实现了电荷变异体和单克隆 IgG 聚集体的分离。电荷变异体组成通过新开发的简单快速的基于弱阳离子交换色谱的分析方法进行在线监测。事实证明,当在酸性电荷变异体 pI 以下 1 至 1.5 pH 单位进行加载时,碱性电荷变异体充当 pI 较低的 IgG 分子的置换剂。由于大孔整体柱上基于对流的质量传递,SDC 过程的效率与流速无关。在最佳条件下,该过程的生产率为每毫升整体柱 35 毫克纯化的 IgG 级分,回收率为 75-80%。因此,与在相同柱上进行的标准结合洗脱分离相比,SDC 方法在生产率方面提高了 3 倍。SDC 方法的适用性也得到了多孔颗粒柱的证实,但与整体柱相比,生产率降低了 1.5 倍。