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Updated: Aug 8, 2026

Activated Cross-linked Agarose for the Rapid Development of Affinity Chromatography Resins - Antibody Capture as a Case Study
Published on: August 16, 2019
An empirical single-breakthrough curve workflow for rapid early-phase development of continuous capture
Jay Gandhi1, James Hilton1, Kyo Izumida1
1Biotherapeutics Process Development, Takeda Development Center Americas, Inc, Cambridge, Massachusetts, USA.
Abstract:
Continuous chromatography for Protein A capture of monoclonal antibodies (mAbs) and related biotherapeutics is gaining popularity for higher throughput and reduced costs but introduces challenges for development and modeling. We present a streamlined, single-breakthrough-curve approach that predicts maximum and operating binding capacities (MBC and OBC, respectively) for continuous Protein A chromatography of monoclonal antibodies and derivatives. Our empirically-calibrated model-intended for early-stage, material-limited process development-enables accurate OBC prediction (root mean squared error [RMSE]≤ 5% for four distinct proteins) using less than 1 g of protein. This approach reduces the experimental timeline by ~2 weeks and is best suited for rapid screening and initial process optimization, not full design-space determination. Results confirm the model's accuracy across molecules, with clear practical advantages for accelerating preclinical pipeline advancement.
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