Publication | Open Access
PEGylated PRINT Nanoparticles: The Impact of PEG Density on Protein Binding, Macrophage Association, Biodistribution, and Pharmacokinetics
598
Citations
44
References
2012
Year
NanoparticlesMacrophage AssociationEngineeringPolyelectrolyte GelBiofabricationPrint NanoparticlesBiomedical EngineeringHydrogel Print NanoparticlesProtein NanoparticlesPeg DensityNanomedicineMatrix BiologyBiophysicsNanobiotechnologyBiomolecular EngineeringBiopolymer GelPolymer SciencePharmaceutical NanotechnologyNano-drug DeliveryMedicineProtein Adsorption
In this account, we varied PEGylation density on the surface of hydrogel PRINT nanoparticles and systematically observed the effects on protein adsorption, macrophage uptake, and circulation time. Interestingly, the density of PEGylation necessary to promote a long-circulating particle was dramatically less than what has been previously reported. Overall, our methodology provides a rapid screening technique to predict particle behavior in vivo and our results deliver further insight to what PEG density is necessary to facilitate long-circulation.
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