Kiesewetter André, Menstell Peter, Peeck Lars H, Stein Andreas
Life Science devision, Merck KGaA, Darmstadt, Germany.
Biotechnol Prog. 2016 Nov;32(6):1503-1519. doi: 10.1002/btpr.2363. Epub 2016 Oct 21.
Rapid development of chromatographic processes relies on effective high-throughput screening (HTS) methods. This article describes the development of pseudo-linear gradient elution for resin selectivity screening using RoboColumns . It gives guidelines for the implementation of this HTS method on a Tecan Freedom EVO robotic platform, addressing fundamental aspects of scale down and liquid handling. The creation of a flexible script for buffer preparation and column operation plus efficient data processing provided the basis for this work. Based on the concept of discretization, linear gradient elution was transformed into multistep gradients. The impact of column size, flow rate, multistep gradient design, and fractionation scheme on separation efficiency was systematically investigated, using a ternary model protein mixture. We identified key parameters and defined optimal settings for effective column performance. For proof of concept, we examined the selectivity of several cation exchange resins using various buffer conditions. The final protocol enabled a clear differentiation of resin selectivity on miniature chromatography column (MCC) scale. Distinct differences in separation behavior of individual resins and the influence of buffer conditions could be demonstrated. Results obtained with the robotic platform were representative and consistent with data generated on a conventional chromatography system. A study on antibody monomer/high molecular weight separation comparing MCC and lab scale under higher loading conditions provided evidence of the applicability of the miniaturized approach to practically relevant feedstocks with challenging separation tasks as well as of the predictive quality for larger scale. A comparison of varying degrees of robotic method complexity with corresponding effort (analysis time and labware consumption) and output quality highlights tradeoffs to select a method appropriate for a given separation challenge or analytical constraints. © 2016 American Institute of Chemical Engineers Biotechnol. Prog., 32:1503-1519, 2016.
色谱过程的快速发展依赖于有效的高通量筛选(HTS)方法。本文描述了使用RoboColumns进行树脂选择性筛选的伪线性梯度洗脱的开发。它给出了在Tecan Freedom EVO机器人平台上实施这种HTS方法的指南,涉及缩小规模和液体处理的基本方面。创建用于缓冲液制备和柱操作的灵活脚本以及高效的数据处理为这项工作提供了基础。基于离散化的概念,将线性梯度洗脱转变为多步梯度。使用三元模型蛋白质混合物系统地研究了柱尺寸、流速、多步梯度设计和分馏方案对分离效率的影响。我们确定了关键参数并定义了有效柱性能的最佳设置。为了进行概念验证,我们在各种缓冲条件下研究了几种阳离子交换树脂的选择性。最终方案能够在微型色谱柱(MCC)规模上清晰地区分树脂的选择性。可以证明各树脂分离行为的明显差异以及缓冲条件的影响。在机器人平台上获得的结果具有代表性,并且与在传统色谱系统上生成的数据一致。一项在更高负载条件下比较MCC和实验室规模的抗体单体/高分子量分离的研究提供了证据,证明了这种小型化方法适用于具有挑战性分离任务的实际相关原料,以及对更大规模的预测质量。将不同程度的机器人方法复杂性与相应的工作量(分析时间和实验室器具消耗)和输出质量进行比较,突出了权衡选择适合给定分离挑战或分析约束的方法。© 2016美国化学工程师学会生物技术进展,32:1503 - 1519,2016。