Polyelectrolyte Vectors for Gene Delivery: Influence of Cationic Polymer on Biophysical Properties of Complexes Formed with DNA
- 23 October 1999
- journal article
- research article
- Published by American Chemical Society (ACS) in Bioconjugate Chemistry
- Vol. 10 (6) , 993-1004
- https://doi.org/10.1021/bc990025r
Abstract
Cationic polymer/DNA complexes are widely used for gene delivery, although the influence of the cationic polymer on the biophysical properties of the resulting complex is poorly understood. Here, several series of cationic polymers have been used to evaluate the influence of structural parameters on properties of DNA complexes. Parameters studied included the length of side chain, charge type (primary versus tertiary and quaternary), polymer molecular weight, and charge spacing along the polymer backbone. Cationic polymers with short side chains (such as polyvinylamine) formed small complexes, resistant to destabilization by polyanions, with low surface charge, limited transfection activity, and efficient intranuclear transcription. Conversely, cationic polymers with long side chains (e.g., poly[methacryloyl-Gly-Gly-NH-(CH2)6-NH2)] showed inefficient complex formation, high positive surface charge, and better transfection activity. The effects of molecular weight varied between polymers, for example, low molecular weight poly(l-lysine) produced relatively small complexes, whereas low molecular weight poly[2-(trimethylammonio)ethyl methacrylate chloride] produced large aggregates. Polymers containing quaternary ammonium groups showed efficient complex formation but poor transfection. Finally, spreading charges widely on the polymer structure inhibited their ability to condense DNA. In summary, to achieve small, stable complexes, the use of cationic polymers with short side chains bearing primary amino groups is suggested.Keywords
This publication has 7 references indexed in Scilit:
- A versatile system for receptor-mediated gene delivery permits increased entry of DNA into target cells, enhanced delivery to the nucleus and elevated rates of transgene expressionGene Therapy, 2000
- Formation of DNA complexes with diblock copolymers of poly(N-(2-hydroxypropyl) methacrylamide) and polycationsSupramolecular Science, 1998
- Regional Suppression of Tumor Growth byIn VivoTransfer of a cDNA Encoding a Secreted Form of the Extracellular Domain of theflt-1Vascular Endothelial Growth Factor ReceptorHuman Gene Therapy, 1998
- Polycation-DNA complexes for gene delivery: a comparison of the biopharmaceutical properties of cationic polypeptides and cationic lipidsJournal of Controlled Release, 1998
- Polyethylenimine but Not Cationic Lipids Promotes Transgene Delivery to the Nucleus in Mammalian CellsJournal of Biological Chemistry, 1998
- β-Galactosidase staining following intracoronary infusion of cationic liposomes in the in vivo rabbit heart is produced by microinfarction rather than effective gene transfer: a cautionary taleGene Therapy, 1998
- Transferrin-polycation-DNA complexes: the effect of polycations on the structure of the complex and DNA delivery to cells.Proceedings of the National Academy of Sciences, 1991