Department of Biologics, Amgen, Inc., One Amgen Center Drive, Thousand Oaks, CA 91320, USA.
Prep Biochem Biotechnol. 2012;42(4):304-21. doi: 10.1080/10826068.2012.654570.
Strong ion-exchange protein chromatography is one of the most powerful and most common steps for protein purification in both discovery research and manufacturing. However, the demands on protein purification of early drug discovery and later stage manufacturing are quite different. In order to shorten the time of developing a purification process for new protein drug candidates, there is a need for a strong ion-exchange resin that will be optimum for both stages. This article details a novel anion-exchange resin suitable for research, as well as for clinical manufacturing. In this study, a novel Q resin anion-exchange prototype was evaluated and compared to the GE Healthcare Q Sepharose® Fast Flow (QFF) and Q Sepharose® High Performance (QHP) resins. This study specifically focused on the following: resolution, dynamic binding capacity, flow rate, back pressure, and scale up. The evaluation was performed in both small- and large-scale experiments. From all the comparable data, the prototype resin is adaptable for both discovery research and manufacturing. Its wide-range operation suitability could potentially shorten the time required to develop conventional purification protocols for clinical manufacturing.
强离子交换蛋白层析是发现研究和生产中蛋白质纯化最强大、最常用的步骤之一。然而,早期药物发现和后期生产对蛋白质纯化的要求却截然不同。为了缩短新型蛋白药物候选物的纯化工艺开发时间,需要一种既能在这两个阶段都达到最佳效果的强离子交换树脂。本文详细介绍了一种适用于研究和临床生产的新型阴离子交换树脂。在这项研究中,评估并比较了一种新型 Q 树脂阴离子交换原型与 GE Healthcare Q Sepharose® Fast Flow(QFF)和 Q Sepharose® High Performance(QHP)树脂。本研究特别关注分辨率、动态结合容量、流速、背压和放大。在小规模和大规模实验中都进行了评估。从所有可比数据来看,该原型树脂适用于发现研究和生产。其宽范围的操作适用性有可能缩短为临床生产开发常规纯化方案所需的时间。