Cellular Response to Magnetic Nanoparticles “PEGylated” via Surface-Initiated Atom Transfer Radical Polymerization
- 15 February 2006
- journal article
- research article
- Published by American Chemical Society (ACS) in Biomacromolecules
- Vol. 7 (3) , 809-816
- https://doi.org/10.1021/bm050870e
Abstract
A new method to PEGylate magnetic nanoparticles with a dense layer of poly(poly(ethylene glycol) monomethacrylate) (P(PEGMA)) by surface-initiated atom transfer radical polymerization (ATRP) is reported. In this approach, an initiator for ATRP was first immobilized onto the magnetic nanoparticle surface, and then P(PEGMA) was grafted onto the surface of magnetic nanoparticle via copper-mediated ATRP. The modified nanoparticles were subjected to detailed characterization using FTIR, XPS, and TGA. The P(PEGMA)-immobilized nanoparticles dispersed well in aqueous media. The saturation magnetization values of the P(PEGMA)-immobilized nanoparticles were 19 emu/g and 11 emu/g after 2 and 4 h polymerization respectively, compared to 52 emu/g for the pristine magnetic nanoparticles. The response of macrophage cells to pristine and P(PEGMA)-immobilized nanoparticles was compared. The results showed that the macrophage cells are very effective in cleaning up the pristine magnetic nanoparticles. With the P(PEGMA)-immobilized nanoparticles, the amount of nanoparticles internalized into the cells is greatly reduced to <2 pg/cell over a 5 day period. With this amount of nanoparticles uptake, no significant cytotoxicity effects were observed.Keywords
This publication has 14 references indexed in Scilit:
- Magnetic nanoparticle design for medical diagnosis and therapyJournal of Materials Chemistry, 2004
- Magnetically modulated therapeutic systemsInternational Journal of Pharmaceutics, 2004
- Surface-initiated atom transfer radical polymerization of methyl methacrylate on magnetite nanoparticlesPolymer, 2004
- Superparamagnetism of Magnetite Nanoparticles: Dependence on Surface ModificationLangmuir, 2004
- Peroxidase Substrate Nanosensors for MR ImagingNano Letters, 2003
- Synthesis of Monodisperse Superparamagnetic Fe/Silica Nanospherical CompositesJournal of the American Chemical Society, 2003
- Effects of Surface Coordination Chemistry on the Magnetic Properties of MnFe2O4 Spinel Ferrite NanoparticlesJournal of the American Chemical Society, 2003
- Magnetic Resonance of a Dextran-Coated Magnetic Fluid Intravenously Administered in MiceBiophysical Journal, 2001
- Evaluation of ferromagnetic fluids and suspensions for the site-specific radiofrequency-induced hyperthermia of MX11 sarcoma cells in vitroJournal of Magnetism and Magnetic Materials, 2001
- Polymer brushes: surface-immobilized macromoleculesProgress in Polymer Science, 2000