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Erythrocyte ghost-mediated gene delivery for prolonged and blood-targeted expression
- Source :
- Gene Therapy. 11:492-496
- Publication Year :
- 2004
- Publisher :
- Springer Science and Business Media LLC, 2004.
-
Abstract
- This study reports the use of erythrocyte ghosts (EG) as a biocompatible nonviral delivery system for extended circulation and prolonged expression of plasmid DNA in the blood. Murine interleukin-2-expressing plasmid DNA was efficiently loaded to EG by electroporation in hypotonic condition. The presence of plasmid DNA in EG was confirmed by fluorescence-labeled plasmid DNA. At 21 min after intravenous administration into mice, the level of plasmid DNA in the blood was 92 000-fold higher following EG-mediated delivery as compared to the injection of naked form. EG-mediated gene delivery revealed higher and more prolonged mRNA expression levels of plasmid DNA in the blood until 9 days after the single intravenous injection. Moreover, plasmid DNA-loaded EG showed gene expression targeted to the blood cells. At 3 days post-dose, substantial expression levels of plasmid DNA delivered in EG were observed only in the blood and not in the other organs. Of the blood cells, the subpopulation containing granulocytes showed higher expression of plasmid DNA than mononuclear cells. These results indicate the potential of EG as a safe, prolonged and blood-targeted delivery system of therapeutic genes.
- Subjects :
- Genetic enhancement
Genetic Vectors
Gene Expression
Gene delivery
Biology
Transfection
Peripheral blood mononuclear cell
Mice
chemistry.chemical_compound
Plasmid
Gene expression
Genetics
Animals
Tissue Distribution
RNA, Messenger
Molecular Biology
Blood Cells
Electroporation
Erythrocyte Membrane
Molecular biology
chemistry
Gene Targeting
Molecular Medicine
DNA
Plasmids
Subjects
Details
- ISSN :
- 14765462 and 09697128
- Volume :
- 11
- Database :
- OpenAIRE
- Journal :
- Gene Therapy
- Accession number :
- edsair.doi.dedup.....6dc9dd3a1f9f4ba5d5315e2875561354
- Full Text :
- https://doi.org/10.1038/sj.gt.3302180