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The Role of Electrophoresis in Gene Electrotransfer

The Journal of Membrane Biology, 2010
Gene electrotransfer is an established method for gene delivery which uses high-voltage pulses to increase the permeability of a cell membrane and enables transfer of genes. Poor plasmid mobility in tissues is one of the major barriers for the successful use of gene electrotransfer in gene therapy.
M, Pavlin, K, Flisar, M, Kanduser
openaire   +2 more sources

Gene Electrotransfer Clinical Trials

2015
Plasmid or non-viral gene therapy offers an alternative to classic viral gene delivery that negates the need for a biological vector. In this case, delivery is enhanced by a variety of approaches including lipid or polymer conjugation, particle-mediated delivery, hydrodynamic delivery, ultrasound or electroporation.
Richard, Heller, Loree C, Heller
openaire   +2 more sources

Electrotransfer as a Non Viral Method of Gene Delivery

Current Gene Therapy, 2007
Over the last few decades, various vectors have been developed in the field of gene therapy. There still exist a number of important unresolved problems associated with the use of viral as well as non viral vectors. These techniques can suffer from secondary toxicity or low gene transfer efficiency.
Favard, Cyril   +2 more
openaire   +3 more sources

Gene Electrotransfer to Tumor

2011
In vivo electroporation is a versatile delivery method for gene transfer which can be applied to any accessible tissue. Delivery of plasmid DNA encoding therapeutic genes or cDNAs with in vivo electroporation has been tested extensively in preclinical cancer models.
Loree C. Heller, Richard Heller
openaire   +1 more source

Gene Electrotransfer to Skin

2011
Gene electrotransfer to skin is achieving increasing interest and is likely to gain considerable clinical application due to the ease with which it is performed and the safety of the procedure. There is a potential use of gene electrotransfer to skin in e.g., DNA vaccinations, local production of therapeutic molecules as well as production of molecules
Anita Gothelf, Julie Gehl
openaire   +1 more source

Drug and Gene Electrotransfer to the Brain

2011
Applying drugs and genes to brain tissue using electroporation is a new and upcoming field of research. Because of the blood brain barrier (BBB), the access of agents from the blood into brain tissue is restricted. This could theoretically be overcome by the use of electroporation.
Birgit Agerholm-Larsen   +3 more
openaire   +1 more source

Gene Electrotransfer in Clinical Trials

2014
Electroporation is increasingly being used for delivery of chemotherapy to tumors. Likewise, gene delivery by electroporation is rapidly gaining momentum for both vaccination purposes and for delivery of genes coding for other therapeutic molecules, such as chronic diseases or cancer.
openaire   +3 more sources

Interleukin-12 Gene Electrotransfer in Veterinary Oncology

2021
Interleukin-12 has been a promising candidate for cancer treatment for over 20 years. And from its infamous start, the gene electrotransfer delivery has regained assurance of the safe and effective use of interleukin-12 in cancer treatment. Here, basic facts about interleukin-12 are presented with a focus on its antitumor action and the benefit of ...
Ursa Lampreht Tratar   +6 more
openaire   +1 more source

Immunotherapy Applications (Telomerase and HER2) with Gene Electrotransfer

2021
Electroporation is a delivery technique that is gaining popularity among the veterinary community due to its low cost, ease of application, and flexibility. It combines the administration of pharmaceutical compounds such as chemotherapy agents, antisense, and plasmids to the application of permeabilizing pulses. This chapter reviews the preclinical and
Antonella Conforti   +2 more
openaire   +1 more source

Inhibitor of endocytosis impairs gene electrotransfer to mouse muscle in vivo

Bioelectrochemistry, 2015
Application of electric pulses (electroporation/electropermeabilization) is an effective method for gene transfer (i.e. gene electrotransfer (GET)) in vitro and in vivo. Currently, the mechanisms by which the DNA enters the cell are not yet fully understood.
Maja Čemažar   +2 more
exaly   +3 more sources

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