Institute for Biochemistry, University of Applied Sciences Mannheim, Mannheim, Germany.
Process Solutions, Merck KGaA, Darmstadt, Germany.
J Sep Sci. 2021 Feb;44(4):805-821. doi: 10.1002/jssc.202001077. Epub 2020 Dec 30.
Ion exchange chromatography is a powerful and ubiquitous unit operation in the purification of therapeutic proteins. However, the performance of an ion-exchange process depends on a complex interrelationship between several parameters, such as protein properties, mobile phase conditions, and chromatographic resin characteristics. Consequently, batch variations of ion exchange resins play a significant role in the robustness of these downstream processing steps. Ligand density is known to be one of the main lot-to-lot variations, affecting protein adsorption and separation performance. The use of a model-based approach can be an effective tool for comprehending the impact of parameter variations (e.g., ligand density) and their influence on the process. The objective of this work was to apply mechanistic modeling to gain a deeper understanding of the influence of ligand density variations in anion exchange chromatography. To achieve this, 13 prototype resins having the same support as the strong anion exchange resin Fractogel EMD TMAE (M), but differing in ligand density, were analyzed. Linear salt gradient elution experiments were performed to observe the elution behavior of a monoclonal antibody and bovine serum albumin. A proposed isotherm model for ion exchange chromatography, describing the dependence of ligand density variations on protein retention, was successfully applied.
离子交换色谱法是一种在治疗性蛋白质纯化中非常强大且无处不在的单元操作。然而,离子交换过程的性能取决于几个参数之间的复杂相互关系,例如蛋白质特性、流动相条件和色谱树脂特性。因此,离子交换树脂的批次变化在这些下游加工步骤的稳健性中起着重要作用。配体密度是已知的批次间变化之一,会影响蛋白质的吸附和分离性能。使用基于模型的方法可以成为理解参数变化(例如配体密度)及其对过程影响的有效工具。这项工作的目的是应用机械建模来更深入地了解配体密度变化对阴离子交换色谱的影响。为此,分析了 13 种原型树脂,它们的支撑物与强阴离子交换树脂 Fractogel EMD TMAE(M)相同,但配体密度不同。进行了线性盐梯度洗脱实验,以观察单克隆抗体和牛血清白蛋白的洗脱行为。成功应用了一种用于离子交换色谱的拟议等温线模型,该模型描述了配体密度变化对蛋白质保留的依赖性。