Preparation of poly(ethylene glycol)-introduced cationized gelatin as a non-viral gene carrier
Authors: Kushibiki, Toshihiro; Tabata, Yasuhiko
Source: Journal of Biomaterials Science, Polymer Edition, Volume 16, Number 11, 2005 , pp. 1447-1461(15)
Publisher: VSP, an imprint of Brill
Abstract:
The objective of this study was to prepare cationized gelatins grafted with poly(ethylene glycol) (PEG) (PEG-cationized gelatin) and evaluate the in vivo efficiency as a non-viral gene carrier. Cationized gelatin was prepared by chemical introduction of ethylenediamine to the carboxyl groups of gelatin. PEG with one terminal of active ester group was coupled to the amino groups of cationized gelatin to prepare PEG-cationized gelatins. Electrophoretic experiments revealed that the PEG-cationized gelatin with low PEGylation degrees was complexed with a plasmid DNA of luciferase, in remarked contrast to that with high PEGylation degrees. When the plasmid DNA complexed with the cationized gelatin or PEG-cationized gelatin was mixed with deoxyribonuclease I (DNase I) in solution to evaluate the resistance to enzymatic degradation, stronger protection effect of the PEG-cationized gelatin was observed than that of the cationized gelatin. The complex of plasmid DNA and PEG-cationized gelatin had an apparent molecular size of about 300 nm and almost zero surface charge. These findings indicate that the PEG-cationized gelatinplasmid DNA complex has a nano-order structure where the plasmid DNA is covered with PEG molecules. When the PEG-cationized gelatinplasmid DNA complex was intramuscularly injected, the level of gene expression was significantly increased compared with the injection of plasmid DNA solution. It is concluded that the PEG-cationized gelatin was a promising non-viral gene carrier to enhance gene expression in vivo.Keywords: POLY(ETHYLENE GLYCOL); GELATIN; COMPLEX; GENE DELIVERY
Document Type: Research article
DOI: http://dx.doi.org/10.1163/156856205774472326
Publication date: 2005-11-01
- In this: publication
- By this: publisher
- In this Subject: Chemistry (General) , Engineering/Technology , Materials & Manufacturing
- By this author: Kushibiki, Toshihiro ; Tabata, Yasuhiko

Shopping cart
Receive new issue alert
Get Permissions