PEI-g-chitosan, a Novel Gene Delivery System with Transfection Efficiency Comparable to Polyethylenimine in Vitro and after Liver Administration in Vivo
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Boussif O., 1995, Proc. Natl. Acad. Sci. U.S.A. 92
Behr J. P., 1997, Chimia, 1, 36
Pun S. H., 2002, Development of a nonviral gene delivery vehicle for systemic application. Bioconjugate Chem. 13, 630−639
Koping-Hoggard M., 2004, Improved chitosan-mediated gene delivery based on easily dissociated chitosan polyplexes of highly defined chitosan oligomers. Gene Therapy 11, 1441−1452
Lim Y. B., 2000, J. Am. Chem. Soc., 122
Lim Y. B., 2000, Biodegradable polyester, poly[alpha-(4 aminobutyl)-l-glycolic acid], as a nontoxic gene carrier. Pharm. Res. 17, 811−816
Wang J., 2001, J. Am. Chem. Soc., 123
Wang J., 2002, Enhanced gene expression in mouse muscle by sustained release of plasmid DNA using PPE-EA as a carrier. Gene Therapy 9, 1254−1261
Azzam T., 2002, Cationic Polysaccharides for Gene Delivery. Macromolecules 35, 9947−9953
Eliyahu H., 2005, Novel dextran-spermine conjugates as transfecting agents: comparing water-soluble and micellar polymers. Gene Therapy 12, 494−503
Lynn D. M., 2000, J. Am. Chem. Soc., 122
Akinc A., 2003, J. Am. Chem. Soc., 2003
Lim Y. B., 2001, J. Am. Chem. Soc., 123
Lim Y. B., 2002, Biodegradable, endosome disruptive, and cationic network-type polymer as a highly efficient and nontoxic gene delivery carrier. Bioconjugate Chem. 13, 952−957
Liu Y., 2003, Novel poly(amino ester)s obtained from Michael addition polymerizations of trifunctional amine monomers with diacrylates: safe and efficient DNA carriers. Chem. Commun. 2630−2631
Fischer D., 1999, A novel nonviral vector for DNA delivery based on low molecular weight, branched polyrthylenimine: effect of molecular weight on transfection efficiencyand cytotoxicity. Pharm. Res. 16, 1273−1279
Gosselin M. A., 2001, Efficient gene transfer using reversibly cross-linked low molecular weight polyethylenimine. Bioconjugate Chem. 12, 989−994
Petersen, H., Merdan, T., Kunath, K., Fischer, D., and Kissel, T. (2002) Poly(ethylenimin-co-lactamide-co-l-succinamide): A 158 biodegradable polyethylenimine derivatives with an advantageous pH-dependent hydrolytic degradation for gene delivery.Bioconjugate Chem. 13, 812−821.
Ahn C. H., 2002, J. Controlled Release, 80
Forrest M. L., 2003, A degradable polyethylenimine derivative with low toxicity for highly efficient gene delivery. Bioconjugate Chem. 14, 934−940
Flory P. J., 1953, Principles of Polymer Chemistry
Wenker H., 1930, J. Am. Chem. Soc., 52, 2328
Liu Y., 1997, Study on the cationic polymerization mechanism of 1,3-dioxepane in the presence of ethylene glycol. Macromol. Chem. Phys. 198, 2613−2622
Oh S. J., 2002, Characteristics of DNA microarrays fabricated on various aminosilane layers. Langmuir 18, 1764−1769
Petersen H., 2002, The macrostopper route: A new synthesis concept leading exclusively to diblock copolymers with enhanced DNA condensation potential. Macromolecules 35, 9854−9856
Nah, J.W., and Jang, M.K. (2002) Spectroscopic characterization and preparation of low molecular, water-soluble chitosan with free-amine group by novel method.J. Polym. Sci. Polym. Chem. Ed. 40, 3796−3803.
Harpe A. v., 2003, J. Controlled Release, 69
Bottega R., 1992, Inhibition of protein-kinase-c by cationic amphiphiles. Biochemistry 31, 9025−9030
