Skin is an attractive target for gene electrotransfer. It consists of different cell types that can be transfected, leading to various responses to gene electrotransfer. We demonstrate that these responses could be controlled by selecting the appropriate electrotransfer parameters. Specifically, the application of low or high electric pulses, applied by multi-electrode array, provided the possibility to control the depth of the transfection in the skin, the duration and the level of gene expression, as well as the local or systemic distribution of the transgene. The influence of electric pulse type was first studied using a plasmid encoding a reporter gene (DsRed). Then, plasmids encoding therapeutic genes (IL-12, shRNA against endoglin, sh...
Electroporation (EP) of mammalian tissue is a technique that has been used successfully in the clini...
Background: Electrical pulses have been used to enhance uptake of molecules into living cells for de...
Molecular medicine through gene therapy is challenged to achieve targeted action. This is now possib...
Skin is an attractive target for gene electrotransfer. It consists of different cell types that can ...
Gene electrotransfer (GET) is considered one of the most efficient, safe, reproducible, and cost-eff...
Electroporation is an effective alternative to viral methods to significantly improve DNA transfecti...
The use of electric pulses to deliver therapeutic molecules to tissues and organs in vivo is a rapid...
DNA delivery to skin may be useful for the treatment of skin diseases, DNA vaccinations, and other g...
Skin is an attractive target for gene electrotransfer due to its easy accessibility and its interest...
A novel monopolar electroporation system and methodologies were developed for in vivo electroporatio...
The easy accessibility of skin makes it an excellent target for gene transfer protocols. To take adv...
Because of its large surface area and easy access for both delivery and monitoring, the skin is an a...
The easy accessibility of skin makes it an excellent target for gene transfer protocols. To take ful...
DNA vaccination consists in administering an antigen-encoding plasmid in order to trigger a specific...
When an electric field is locally applied to tissues in vivo the uptake of exogenous DNA can be grea...
Electroporation (EP) of mammalian tissue is a technique that has been used successfully in the clini...
Background: Electrical pulses have been used to enhance uptake of molecules into living cells for de...
Molecular medicine through gene therapy is challenged to achieve targeted action. This is now possib...
Skin is an attractive target for gene electrotransfer. It consists of different cell types that can ...
Gene electrotransfer (GET) is considered one of the most efficient, safe, reproducible, and cost-eff...
Electroporation is an effective alternative to viral methods to significantly improve DNA transfecti...
The use of electric pulses to deliver therapeutic molecules to tissues and organs in vivo is a rapid...
DNA delivery to skin may be useful for the treatment of skin diseases, DNA vaccinations, and other g...
Skin is an attractive target for gene electrotransfer due to its easy accessibility and its interest...
A novel monopolar electroporation system and methodologies were developed for in vivo electroporatio...
The easy accessibility of skin makes it an excellent target for gene transfer protocols. To take adv...
Because of its large surface area and easy access for both delivery and monitoring, the skin is an a...
The easy accessibility of skin makes it an excellent target for gene transfer protocols. To take ful...
DNA vaccination consists in administering an antigen-encoding plasmid in order to trigger a specific...
When an electric field is locally applied to tissues in vivo the uptake of exogenous DNA can be grea...
Electroporation (EP) of mammalian tissue is a technique that has been used successfully in the clini...
Background: Electrical pulses have been used to enhance uptake of molecules into living cells for de...
Molecular medicine through gene therapy is challenged to achieve targeted action. This is now possib...