Nanoparticles Based on a Hydrophilic Polyester with a Sheddable PEG Coating for Protein Delivery

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2014-10

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Samadi, NedaISNI 0000000387351278
Van Steenbergen, Mies J.ISNI 0000000394872442
van den Dikkenberg, JoepISNI 0000000391318542
Vermonden, TinaISNI 0000000357250265
van Nostrum, Cornelus FISNI 0000000396379707
Amidi, MaryamISNI 0000000392111033
Hennink, Wim E.ISNI 0000000390382745

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Abstract

Purpose To investigate the effect of polyethylene glycol (PEG) in nanoparticles based on blends of hydroxylated aliphatic polyester, poly(D,L-lactic-co-glycolic-co-hydroxymethyl glycolic acid) (PLGHMGA) and PEG-PLGHMGA block copolymers on their degradation and release behavior. Methods Protein-loaded nanoparticles were prepared with blends of varying ratios of PEG-PLGHMGA (molecular weight of PEG 2,000 and 5,000 Da) and PLGHMGA, by a double emulsion method with or without using poly(vinyl alcohol) (PVA) as surfactant. Bovine serum albumin and lysozyme were used as model proteins. Results PEGylated particles prepared without PVA had a zeta potential ranging from ~ -3 to ~-35 mV and size ranging from ~200 to ~600 nm that were significantly dependent on the content and type of PEG-block copolymer. The encapsulation efficiency of the two proteins however was very low (<30%) and the particles rapidly released their content in a few days. In contrast, all formulations prepared with PVA showed almost similar particle properties (size: ~250 nm, zeta potential: ~-1 mV), while loading efficiency for both model proteins was rather high (80-90%). Unexpectedly, independent of the type of formulation, the nanoparticles had nearly the same release and degradation characteristics. NMR analysis showed almost a complete removal of PEG in 5 days which explains these marginal differences. Conclusions Protein release and particle degradation are not substantially influenced by the content of PEG, likely because of the fast shedding of the PEG blocks. These PEG shedding particles are interesting system for intracellular delivery of drugs. © 2014 Springer Science+Business Media New York.

Keywords

biodegradable, nanoparticles, polyethylene glycol (PEG), protein release, shedding, CONTROLLED DRUG-DELIVERY, RELEASE CHARACTERISTICS, POLY(ETHYLENE GLYCOL), DIBLOCK COPOLYMERS, ACID) MICROSPHERES, PLGA MICROSPHERES, POLYVINYL-ALCOHOL, POLY(LACTIC ACID), MOLECULAR-WEIGHT, WORM MICELLES, Pharmacology, Biotechnology, Pharmacology (medical), Molecular Medicine, Organic Chemistry, Pharmaceutical Science

Citation

Samadi, N, van Steenbergen, M J, van den Dikkenberg, J B, Vermonden, T, van Nostrum, C F, Amidi, M & Hennink, W E 2014, 'Nanoparticles Based on a Hydrophilic Polyester with a Sheddable PEG Coating for Protein Delivery', Pharmaceutical Research, vol. 31, no. 10, pp. 2593-2604. https://doi.org/10.1007/s11095-014-1355-x