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Application of inline variable pathlength technology for rapid determination of dynamic binding capacity in downstream process development of biopharmaceuticals
Authors:Rashmi P. Bhangale  Rui Ye  Thomas B. Lindsey  Leslie S. Wolfe
Affiliation:1. Downstream Process Development Department, KBI Biopharma Inc., Durham, North Carolina, USA;2. Downstream Process Development Department, KBI Biopharma Inc., Durham, North Carolina, USA

Contribution: Formal analysis (supporting), ​Investigation (supporting), Validation (lead), Visualization (supporting), Writing - review & editing (supporting);3. Downstream Process Development Department, KBI Biopharma Inc., Durham, North Carolina, USA

Contribution: Formal analysis (supporting), ​Investigation (lead), Visualization (supporting), Writing - review & editing (supporting);4. Downstream Process Development Department, KBI Biopharma Inc., Durham, North Carolina, USA

Contribution: Resources (lead), Supervision (lead), Writing - review & editing (supporting)

Abstract: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.
Keywords:affinity  biopharmaceuticals  capture  downstream process development  dynamic binding capacity  FlowVPE  resin screening  variable pathlength
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