Enhancement of polyethylene glycol (PEG)-modified cationic liposome-mediated gene deliveries: effects on serum stability and transfection efficiency
- 1 April 2003
- journal article
- Published by Oxford University Press (OUP) in Journal of Pharmacy and Pharmacology
- Vol. 55 (4) , 453-460
- https://doi.org/10.1211/002235702928
Abstract
In this study, we modified cationic liposomes either by polyethylene glycol (PEG)-grafting or PEG-adding methods, and compared the physical properties of transfection complexes and transfection efficiency in-vitro and prolonged circulation in-vivo. The PEG-grafted transfection complexes were prepared by mixing plasmid DNA with PEG-grafted cationic liposomes, which were composed of DSPE-PEG 2000 and cationic lipids. The PEG-added transfection complexes were prepared by adding DSPE-PEG 2000 to the mixture of cationic liposomes and plasmid DNA. The particle sizes of the PEG-modified transfection complexes (˜200 nm) changed a little over 4 weeks compared with the conventional transfection complexes. In the presence of serum, the transfection efficiency of the conventional transfection complexes was lowered whereas the transfection efficiency of the PEG-modified transfection complexes was maintained. Moreover, the transfection efficiency of the conventional transfection complexes was significantly reduced when they were stored. However, the transfection efficiency was stable for the PEG-modified transfection complexes, even after two weeks of storage. Of the in-vitro transfection efficiencies, there was no difference between PEG-grafted and PEG-added transfection complexes. When the conventional, PEG-grafted, and PEG-added transfection complexes were administered into mice by the tail vein, the PEG-added transfection complexes showed a prolonged circulation of plasmid DNA compared with other transfection complexes. These results suggest that the PEG-added transfection complexes could be a useful non-viral vector because of their simplicity in preparation, enhanced stability and prolonged circulation compared with the conventional transfection complexes.Keywords
This publication has 27 references indexed in Scilit:
- Serum as a modulator of lipoplex-mediated gene transfection: dependence of amphiphile, cell type and complex stabilityThe Journal of Gene Medicine, 2000
- Grafted poly-(ethylene glycol) on lipid surfaces inhibits protein adsorption and cell adhesionBiochimica et Biophysica Acta (BBA) - Biomembranes, 1997
- Emulsion formulations as a vector for gene delivery in vitro and in vivoAdvanced Drug Delivery Reviews, 1997
- Cationic Liposomes and Gene Therapy for Solid TumorsDrug Delivery, 1997
- Effect of Size and Serum Proteins on Transfection Efficiency of Poly ((2-dimethylamino)ethyl Methacrylate)-Plasmid NanoparticlesPharmaceutical Research, 1996
- Improved Cationic Lipid Formulations for In Vivo Gene TherapyAnnals of the New York Academy of Sciences, 1995
- Tissue response to intraperitoneal implants of polyethylene oxide-modified polyethylene terephthalateBiomaterials, 1992
- Solution technique to incorporate polyethylene oxide and other water-soluble polymers into surfaces of polymeric biomaterialsBiomaterials, 1991
- Liposome formulations with prolonged circulation time in blood and enhanced uptake by tumors.Proceedings of the National Academy of Sciences, 1988
- Large unilamellar liposomes with low uptake into the reticuloendothelial systemFEBS Letters, 1987