Abstract
Background: Peptide-Fc fusion proteins are inherently heterogeneous and complex mole-cules. Protein post-translational modifications (PTMs) or truncation can arise during manufacturing or product storage. Some of these product attributes could potentially impact the efficacy or safety of the bio-molecule and are thus classified as critical quality attributes (CQAs). These CQAs should be controlled in order to ensure manufacturing and quality consistency. Methods: A subunit UPLC-ToF MS based MAM method was developed for identity test and quanti-tatively monitored two critical quality attributes (CQAs) resulting from two truncations of that fusion protein (fragment 1 and 2). Three independent laboratories are involved in the method validation according to ICH Q2(R1), ICH Q6B, FDA and NMPA guidance. Results: This developed method fully meets the pre-defined analytical target profile (ATP), including specificity, accuracy, precision, quantitation limit, linearity, range and robustness. Three independent labs co-validate a UPLC-ToF MS based MAM method for protein drug QC release and sta-bility testing. Conclusion: The experimental design of method validation can be a reference for LC-HRMS-based subunit MAM methods that have been widely used in the characterization of antibodies, ADCs and other protein-based biologics. This work paves the way for implementing MAM in QC with more targeted control of product quality. © 2023 Elsevier B.V., All rights reserved.
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CITATION STYLE
Wu, G., Yu, C., Tong, Q., Wang, W., Huang, X., Li, H., & Wang, L. (2022). Interlaboratory Co-validation of a UPLC-ToF MS MAM Method for Truncations of a Fc Fusion Protein. Current Pharmaceutical Biotechnology, 24(10), 1315–1325. https://doi.org/10.2174/1389201024666221111160403
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