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Density of conjugated antibody determines the extent of Fc receptor dependent capture of nanoparticles by liver sinusoidal endothelial cells

Authors :
Matthias Barz
Volker Mailänder
Manfred Schmidt
Christian Leps
Hansjörg Schild
Stefan Tenzer
Matthias Bros
Rebekka Bent
Irina Alberg
Stephan Grabbe
Gabor Kuhn
Lutz Nuhn
Julian Sohl
Katharina Haas
Michael Kuske
Jenny Schunke
Dominika Hobernik
Kerstin C. Walzer
Christine Seidl
Ann-Kathrin Hartmann
Mustafa Diken
Carolina Medina-Montano
Cinja Kappel
David Paßlick
Meike Schinnerer
Rudolf Zentel
Evelyn Montermann
Michael Fichter
Ingrid Tubbe
Source :
ACS Nano, 15(9), 15191-15209, ACS Nano
Publication Year :
2021

Abstract

Despite considerable progress in the design of multifunctionalized nanoparticles (NPs) that selectively target specific cell types, their systemic application often results in unwanted liver accumulation. The exact mechanisms for this general observation are still unclear. Here we asked whether the number of cell-targeting antibodies per NP determines the extent of NP liver accumulation and also addressed the mechanisms by which antibody-coated NPs are retained in the liver. We used polysarcosine-based peptobrushes (PBs), which in an unmodified form remain in the circulation for >24 h due to the absence of a protein corona formation and low unspecific cell binding, and conjugated them with specific average numbers (2, 6, and 12) of antibodies specific for the dendritic cell (DC) surface receptor, DEC205. We assessed the time-dependent biodistribution of PB-antibody conjugates by in vivo imaging and flow cytometry. We observed that PB-antibody conjugates were trapped in the liver and that the extent of liver accumulation strongly increased with the number of attached antibodies. PB-antibody conjugates were selectively captured in the liver via Fc receptors (FcR) on liver sinusoidal endothelial cells, since systemic administration of FcR-blocking agents or the use of F(ab')2 fragments prevented liver accumulation. Cumulatively, our study demonstrates that liver endothelial cells play a yet scarcely acknowledged role in liver entrapment of antibody-coated NPs and that low antibody numbers on NPs and the use of F(ab')2 antibody fragments are both sufficient for cell type-specific targeting of secondary lymphoid organs and necessary to minimize unwanted liver accumulation.

Details

Language :
English
Database :
OpenAIRE
Journal :
ACS Nano, 15(9), 15191-15209, ACS Nano
Accession number :
edsair.doi.dedup.....ae66771f80e55d3e88776a576f7263ff