Electroporation by nucleofector is the best nonviral transfection technique in human endothelial and smooth muscle cells
Open Access
- 18 April 2005
- journal article
- Published by Springer Nature in Genetic Vaccines and Therapy
- Vol. 3 (1) , 2
- https://doi.org/10.1186/1479-0556-3-2
Abstract
Background: The aim of this study was to determine the optimal non-viral transfection method for use in human smooth muscle cells (SMC) and endothelial cells (EC). Methods: Coronary Artery (CoA) and Aortic (Ao) SMC and EC were transfected with a reporter plasmid, encoding chloramphenicol acetyltransferase type 1 (CAT), with seven different transfection reagents, two electroporation methods and a photochemical internalization (PCI) method. CAT determination provided information regarding transfection efficiency and total protein measurement was used to reflect the toxicity of each method. Results: Electroporation via the nucleofector machine was the most effective method tested. It exhibited a 10 to 20 fold (for SMC and EC, respectively) increase in transfection efficiency in comparison to the lipofection method combined with acceptable toxicity. FuGene 6 and Lipofectamine PLUS were the preferred transfection reagents tested and resulted in 2 to 60 fold higher transfection efficiency in comparison to the PCI which was the least effective method. Conclusion: This study indicates that electroporation via the nucleofector machine is the preferred non-viral method for in vitro transfection of both human aortic and coronary artery SMC and EC. It may be very useful in gene expression studies in the field of vascular biology. Through improved gene transfer, non-viral transfer techniques may also play an increasingly important role in delivering genes to SMC and EC in relevant disease states.Keywords
This publication has 29 references indexed in Scilit:
- Electroporation-Facilitated Delivery of Plasmid DNA in Skeletal Muscle: Plasmid Dependence of Muscle Damage and Effect of Poloxamer 188Molecular Therapy, 2001
- Brief Report: Muscle Transfection by Electroporation with High-Voltage and Short-Pulse Currents Provides High-Level and Long-Lasting Gene ExpressionHuman Gene Therapy, 2000
- Optimization of Nonviral Gene Transfer of Vascular Smooth Muscle Cells in Vitro and in VivoMolecular Therapy, 2000
- Prevention of restenosis using the gene for cecropin complexed with DOCSPER liposomes under optimized conditionsInternational Journal of Angiology, 2000
- Cardiovascular gene therapyThe Lancet, 2000
- Needle injection catheter delivery of the gene for an antibacterial agent inhibits neointimal formationGene Therapy, 1999
- Electropermeabilization of skeletal muscle enhances gene transfer in vivoGene Therapy, 1999
- Gene transfer into muscle by electroporation in vivoNature Biotechnology, 1998
- Virus vector design in gene therapyMolecular Medicine Today, 1995
- Transient and Stable Ionic Permeabilization of Isolated Skeletal Muscle Cells After Electrical ShockJournal of Burn Care & Rehabilitation, 1993