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Protein Corona of Nanoparticles: Distinct Proteins Regulate the Cellular Uptake

Biomacromolecules · 2015 · Vol. 16(4) · pp. 1311–1321
Sandra RitzSusanne SchöttlerNiklas KotmanGrit BaierAnna MusyanovychJörg KuharevKatharina LandfesterHansjörg SchildOlaf JahnStefan TenzerVolker Mailänder

Abstract

Understanding nanoparticle-protein interactions is a crucial issue in the development of targeted nanomaterial delivery. Besides unraveling the composition of the nanoparticle's protein coronas, distinct proteins thereof could control nanoparticle uptake into specific cell types. Here we differentially analyzed the protein corona composition on four polymeric differently functionalized nanoparticles by label-free quantitative mass spectrometry. Next, we correlated the relative abundance of identified proteins in the corona with enhanced or decreased cellular uptake of nanoparticles into human cancer and bone marrow stem cells to identify key candidates. Finally, we verified these candidate proteins by artificially decorating nanoparticles with individual proteins showing that nanoparticles precoated with the apolipoproteins ApoA4 or ApoC3 significantly decreased the cellular uptake, whereas precoating with ApoH increased the cellular uptake.

Nanoparticle-Based Drug DeliveryGraphene and Nanomaterials ApplicationsRNA Interference and Gene DeliveryChemistryNanoparticleBiophysicsCorona (planetary geology)Cell biologyBiochemistryNanotechnologyBiologyMaterials science

MeSH terms

Apolipoproteins ABiological TransportCells, CulturedHumansCell Line, TumorApolipoprotein C-IIINanoparticlesMesenchymal Stem Cells

Funding

  • Deutsche Forschungsgemeinschaft
Citations
608
FWCI
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