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Updated: Dec 6, 2025

Laboratory Scale Production and Purification of a Therapeutic Antibody
Published on: January 24, 2017
Design of next-generation therapeutic IgG4 with improved manufacturability and bioanalytical characteristics
Zhiqiang Chen1, Yueming Qian1, Yuanli Song1
1Biologics Development, Global Product Development and Supply, Bristol Myers Squibb Company , Devens, MA, USA.
Abstract:
Manufacturability of immunoglobulin G4 (IgG4) antibodies from the Chemistry, Manufacture, and Controls (CMC) perspective has received little attention during early drug discovery. Despite the success of protein engineering in improving antibody biophysical properties, a clear gap still exists between rational design of IgG4 candidates and their manufacturing suitability. Here, we illustrate that undesirable two-peak elution profiles in cation-exchange chromatography are attributed to the S228P mutation (in IgG4 core-hinge region) intentionally designed to prevent Fab-arm exchange. A new scaffolding platform for engineering IgG4 antibodies amenable to bioprocessing and bioanalysis is proposed by introducing an "IgG1-like" single-point mutation in the hinge or CH1 region of IgG4S228P. This work offers insight into the design, discovery, and development of innovative therapeutic antibodies that are well suited for robust biomanufacturing and quality control.
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