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  • Preventing protein adsorption and macrophage uptake of gold nanoparticles via a hydrophobic shield.

Preventing protein adsorption and macrophage uptake of gold nanoparticles via a hydrophobic shield.

ACS nano (2012-09-27)
Timothy A Larson, Pratixa P Joshi, Konstantin Sokolov
ABSTRACT

Polyethylene glycol (PEG) surface coatings are widely used to render stealth properties to nanoparticles in biological applications. There is abundant literature on the benefits of PEG coatings and their ability to reduce protein adsorption, to diminish nonspecific interactions with cells, and to improve pharmacokinetics, but very little discussion of the limitations of PEG coatings. Here, we show that physiological concentrations of cysteine and cystine can displace methoxy-PEG-thiol molecules from the gold nanoparticle (GNP) surface that leads to protein adsorption and cell uptake in macrophages within 24 h. Furthermore, we address this problem by incorporating an alkyl linker between the PEG and the thiol moieties that provides a hydrophobic shield layer between the gold surface and the hydrophilic outer PEG layer. The mPEG-alkyl-thiol coating greatly reduces protein adsorption on GNPs and their macrophage uptake. This has important implications for the design of GNP for biological systems.

MATERIALS
Product Number
Brand
Product Description

Sigma-Aldrich
Gold nanoparticles, 15 nm diameter, carboxylic acid functionalized, PEG 5000 coated, OD 50, dispersion in H2O
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Gold nanoparticles, 30 nm diameter, carboxylic acid functionalized, PEG 5000, OD 50, dispersion in H2O
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Gold nanoparticles, 30 nm diameter, methyl terminated, PEG 2000 coated, OD 50, dispersion in H2O
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Gold nanoparticles, 15 nm diameter, methyl terminated, PEG 2000 coated, OD 50, dispersion in H2O
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Gold nanoparticles, 20 nm diameter, amine functionalized, PEG 5000 coated, OD 50, dispersion in H2O
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Gold nanoparticles, 50 nm diameter, methyl terminated, PEG 5000 coated, OD 50, dispersion in H2O
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Gold nanoparticles, 15 nm diameter, OD 50, methyl terminated, PEG 5000 coated, dispersion in H2O
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Gold nanoparticles, 20 nm diameter, amine functionalized, PEG 3000 coated, OD 50, dispersion in H2O
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Gold nanoparticles, 30 nm diameter, amine functionalized, PEG 5000 coated, OD 50, dispersion in H2O
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Gold nanoparticles, 40 nm diameter, methyl terminated, PEG 5000 coated, OD 50, dispersion in H2O
Sigma-Aldrich
Gold nanoparticles, 20 nm diameter, methyl terminated, PEG 2000 coated, OD 50, dispersion in H2O
Sigma-Aldrich
Gold nanoparticles, 10 nm diameter, carboxylic acid functionalized, PEG 5000 coated, OD 50, dispersion in H2O
Sigma-Aldrich
Gold nanoparticles, 15 nm diameter, amine functionalized, PEG 5000 coated, OD 50, dispersion in H2O
Sigma-Aldrich
Gold nanoparticles, 10 nm diameter, methyl terminated, PEG 2000 coated, OD 50, dispersion in H2O
Sigma-Aldrich
Gold nanoparticles, 15 nm diameter, amine functionalized, PEG 3000 coated, OD 50, dispersion in H2O
Sigma-Aldrich
Gold nanoparticles, 40 nm diameter, carboxylic acid functionalized, PEG 3000 coated, OD 50, dispersion in H2O
Sigma-Aldrich
Gold nanoparticles, 50 nm diameter, methyl terminated, PEG 2000 coated, OD 50, dispersion in H2O
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Gold nanoparticles, 5 nm diameter, amine functionalized, PEG 5000 coated, OD 50, dispersion in H2O
Sigma-Aldrich
Gold nanoparticles, 40 nm diameter, carboxylic acid functionalized, PEG 5000 coated, OD 50, dispersion in H2O
Sigma-Aldrich
Gold nanoparticles, 10 nm diameter, amine functionalized, PEG 3000 coated, OD 50, dispersion in H2O
Sigma-Aldrich
Gold nanoparticles, 10 nm diameter, methyl terminated, PEG 5000 coated, OD 50, dispersion in H2O
Sigma-Aldrich
Gold nanoparticles, 30 nm diameter, amine functionalized, PEG 3000 coated, OD 50, dispersion in H2O
Sigma-Aldrich
Gold nanoparticles, 40 nm diameter, amine functionalized, PEG 5000 coated, OD 50, dispersion in H2O
Sigma-Aldrich
Gold nanoparticles, 40 nm diameter, amine functionalized, PEG 3000 coated, OD 50, dispersion in H2O