PEG Branched Polymer for Functionalization of Nanomaterials with Ultralong Blood Circulation
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- 27 January 2009
- journal article
- research article
- Published by American Chemical Society (ACS) in Journal of the American Chemical Society
- Vol. 131 (13) , 4783-4787
- https://doi.org/10.1021/ja809086q
Abstract
Nanomaterials have been actively pursued for biological and medical applications in recent years. Here, we report the synthesis of several new poly(ethylene glycol) grafted branched polymers for functionalization of various nanomaterials including carbon nanotubes, gold nanoparticles (NPs), and gold nanorods (NRs), affording high aqueous solubility and stability for these materials. We synthesize different surfactant polymers based upon poly(γ-glutamic acid) (γPGA) and poly(maleic anhydride-alt-1-octadecene) (PMHC18). We use the abundant free carboxylic acid groups of γPGA for attaching lipophilic species such as pyrene or phospholipid, which bind to nanomaterials via robust physisorption. Additionally, the remaining carboxylic acids on γPGA or the amine-reactive anhydrides of PMHC18 are then PEGylated, providing extended hydrophilic groups, affording polymeric amphiphiles. We show that single-walled carbon nanotubes (SWNTs), Au NPs, and NRs functionalized by the polymers exhibit high stability in aqueous solutions at different pH values, at elevated temperatures, and in serum. Morever, the polymer-coated SWNTs exhibit remarkably long blood circulation (t1/2 = 22.1 h) upon intravenous injection into mice, far exceeding the previous record of 5.4 h. The ultralong blood circulation time suggests greatly delayed clearance of nanomaterials by the reticuloendothelial system (RES) of mice, a highly desired property for in vivo applications of nanomaterials, including imaging and drug delivery.Keywords
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This publication has 59 references indexed in Scilit:
- Peptides and Metallic Nanoparticles for Biomedical ApplicationsNanomedicine, 2007
- Functionalized Gold Nanoparticles for Drug DeliveryNanomedicine, 2007
- Carbon Nanotubes as Intracellular Transporters for Proteins and DNA: An Investigation of the Uptake Mechanism and PathwayAngewandte Chemie International Edition in English, 2006
- Gold nanoparticle probes for the detection of nucleic acid targetsClinica Chimica Acta; International Journal of Clinical Chemistry, 2005
- Carbon nanotubes as multifunctional biological transporters and near-infrared agents for selective cancer cell destructionProceedings of the National Academy of Sciences, 2005
- Carbon Nanotubes for Biomedical ApplicationsIEEE Transactions on Nanobioscience, 2005
- Complexes of DNA Bases and Gold Clusters Au3and Au4Involving Nonconventional N−H···Au Hydrogen BondingNano Letters, 2005
- Label Free Colorimetric Biosensing Using NanoparticlesJournal of Fluorescence, 2004
- Controlled positioning of a DNA molecule in an electrode setup based on self-assembly and microstructuringNanotechnology, 2003
- Carbon nanotubes with DNA recognitionNature, 2002