RRC ID 42319
著者 Wada K, Arima H, Tsutsumi T, Hirayama F, Uekama K.
タイトル Enhancing effects of galactosylated dendrimer/alpha-cyclodextrin conjugates on gene transfer efficiency.
ジャーナル Biol Pharm Bull
Abstract To improve in vitro gene transfer efficiency and/or achieve cell-specific gene delivery of polyamidoamine (PAMAM) starburst dendrimer (generation 2, G2) conjugate with alpha-cyclodextrin (alpha-CDE conjugate (G2)), we prepared alpha-CDE conjugate bearing galactose (Gal-alpha-CDE conjugates) with the various degrees of substitution of the galactose moiety (DSG) as a novel non-viral vector. The agarose gel electrophoretic studies revealed that Gal-alpha-CDE conjugates formed complexes with plasmid DNA (pDNA) and protected the degradation of pDNA by DNase I, but these effects impaired as the DSG value increased. Dendrimer and alpha-CDE conjugate exerted pDNA condensation through the complexation, but Gal-alpha-CDE conjugates did not. Gal-alpha-CDE conjugate (DSG 4) was found to have much higher gene transfer activity than dendrimer, alpha-CDE conjugate and Gal-alpha-CDE conjugates (DSG 8, 15) in HepG2, NIH3T3 and A549 cells, which are independent of the expression of the asialoglycoprotein receptor. Transfection activity of Gal-alpha-CDE conjugate (DSG 4) was insensitive to the existence of competitors (asialofetuin and galactose) and serum. In addition, no cytotoxicity after transfection of the complex of pDNA with Gal-alpha-CDE conjugate (DSG 4) was observed. These results suggest the potential use of Gal-alpha-CDE conjugate (DSG 4) as a non-viral vector in various cells.
巻・号 28(3)
ページ 500-5
公開日 2005-3-1
DOI 10.1248/bpb.28.500
PII JST.JSTAGE/bpb/28.500
PMID 15744077
MeSH Animals Cell Line, Tumor Cell Survival / drug effects Cell Survival / physiology Galactose / administration & dosage* Galactose / chemistry Galactose / metabolism* Gene Transfer Techniques* Humans Mice NIH 3T3 Cells alpha-Cyclodextrins / administration & dosage* alpha-Cyclodextrins / chemistry alpha-Cyclodextrins / metabolism*
IF 1.863
引用数 60
WOS 分野 PHARMACOLOGY & PHARMACY
リソース情報
ヒト・動物細胞