Downstream Process Development Department, KBI Biopharma Inc., Durham, North Carolina, USA.
Biotechnol Prog. 2022 Mar;38(2):e3236. doi: 10.1002/btpr.3236. Epub 2022 Feb 2.
Determination of dynamic binding capacity (DBC) for capture purification chromatographic step is usually the first experiment to be performed during downstream process development of biopharmaceuticals. In this work, we investigated the application of inline variable pathlength technology using FlowVPE for rapid determination of DBC on affinity resins for protein capture and proved its comparability with offline titer methods. This work also demonstrated that variable pathlength technology for DBC determination can be successfully applied to different classes of monoclonal antibodies and fusion proteins. This enabled rapid screening of affinity resins and optimization of the capture chromatography step. Hence, use of inline variable pathlength technology eliminated the dependency on offline titer data, traditionally used for DBC determination and accelerated overall process development timelines with less cost.
确定用于捕获纯化色谱步骤的动态结合容量 (DBC) 通常是在生物制药下游工艺开发过程中首先要进行的实验。在这项工作中,我们研究了使用 FlowVPE 在线可变光路长度技术快速测定蛋白质捕获用亲和树脂上 DBC 的应用,并证明其与离线滴度方法具有可比性。这项工作还表明,DBC 测定的可变光路长度技术可成功应用于不同类别的单克隆抗体和融合蛋白。这使得能够快速筛选亲和树脂并优化捕获色谱步骤。因此,在线可变光路长度技术的使用消除了对传统上用于 DBC 测定的离线滴度数据的依赖,并降低了成本,加快了整体工艺开发时间。