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Direct measurement and reconstruction of intact polyclonal IgG repertoires to preserve molecular and functional connectivity

Created on 05 Aug 2026

Authors

Holmark, T., Mavridou, D., Zhai, Z., van der Zon, A., Blöchl, C., Dominguez Vega, E., Gargano, A.

Abstract

Antibody function depends on the molecular pairing of antigen-binding Fab regions with Fc domains, linking antigen specificity to effector potential. However, antibody repertoire methods analyze these subunits separately, creating an inference problem in which Fc-Fab connectivity is lost. Here, we introduce a multi-level HPLC-MS workflow integrating native nanoflow cation-exchange chromatography-MS (nCEC-MS) of intact serum IgG with middle-up Fab and Fc/2 profiling. Native nCEC-MS reduces spectral congestion compared with denaturing reversed-phase HPLC-MS, enabling detection of 56-74 intact IgG mass features from 2 g of purified IgG per donor. Middle-up analysis provided complementary information on Fab diversity, subclass, and allotype, revealing donor-specific profiles. Reconstructing intact IgG1 masses from independently measured Fab and Fc/2 subunits partially recovers Fc-Fab molecular connectivity and supports interpretation of native intact mass features. Together, this framework provides an integrated view of the human IgG repertoire and establishes a foundation for studying its molecular topology in health and disease.

Preprint server: bioRxiv
The authors list and abstract were imported from bioRxiv on 05 Aug 2026.

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