Ishihara Takashi, Yamamotob Shuichi
Kirin Brewery Co. Ltd., Takasaki, Gunma 370-0013, Japan.
J Chromatogr A. 2005 Mar 25;1069(1):99-106. doi: 10.1016/j.chroma.2004.10.040.
Simple methods for the optimization of ion-exchange chromatography of proteins in our previous papers were applied to cation-exchange chromatography purification of monoclonal antibodies (Mab). We carried out linear gradient elution experiments, and obtained the data for the peak salt concentration and the peak width. From these data, the distribution coefficient as a function of salt concentration, and the height equivalent to a theoretical plate (HETP) as a function of mobile phase velocity were calculated. The optimized linear gradient elution conditions were determined based on the relationship between buffer consumption and separation time. The optimal stepwise elution conditions were determined based on the relationship between the distribution coefficient and the salt concentration.
我们在之前的论文中用于优化蛋白质离子交换色谱的简单方法被应用于单克隆抗体(Mab)的阳离子交换色谱纯化。我们进行了线性梯度洗脱实验,并获得了峰盐浓度和峰宽的数据。根据这些数据,计算了作为盐浓度函数的分配系数以及作为流动相速度函数的理论塔板高度(HETP)。基于缓冲液消耗与分离时间之间的关系确定了优化的线性梯度洗脱条件。基于分配系数与盐浓度之间的关系确定了最佳的分步洗脱条件。