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Antibody variable sequences have a pronounced effect on cellular transport and plasma half-life.

iScience (2022-02-05)
Algirdas Grevys, Rahel Frick, Simone Mester, Karine Flem-Karlsen, Jeannette Nilsen, Stian Foss, Kine Marita Knudsen Sand, Thomas Emrich, Jens Andre Alexander Fischer, Victor Greiff, Inger Sandlie, Tilman Schlothauer, Jan Terje Andersen
RÉSUMÉ

Monoclonal IgG antibodies are the fastest growing class of biologics, but large differences exist in their plasma half-life in humans. Thus, to design IgG antibodies with favorable pharmacokinetics, it is crucial to identify the determinants of such differences. Here, we demonstrate that the variable region sequences of IgG antibodies greatly affect cellular uptake and subsequent recycling and rescue from intracellular degradation by endothelial cells. When the variable sequences are masked by the cognate antigen, it influences both their transport behavior and binding to the neonatal Fc receptor (FcRn), a key regulator of IgG plasma half-life. Furthermore, we show how charge patch differences in the variable domains modulate both binding and transport properties and that a short plasma half-life, due to unfavorable charge patches, may partly be overcome by Fc-engineering for improved FcRn binding.

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Hydrocortisone, BioReagent, suitable for cell culture
Sigma-Aldrich
Anti-Human IgG (Fc specific)−Alkaline Phosphatase antibody produced in goat, affinity isolated antibody, buffered aqueous solution
Sigma-Aldrich
Anti-Human IgG (whole molecule) antibody produced in goat, IgG fraction of antiserum, buffered aqueous solution