Cellular delivery of DNA vectors for the expression of therapeutic proteins is a promising approach to treat monogenic disorders or cancer. Significant efforts in a preclinical and clinical setting have been made to develop potent nonviral gene delivery systems based on lipoplexes composed of permanently cationic lipids. However, transfection efficiency and tolerability of such systems are in most cases not satisfactory. Here, we present a onepot combinatorial method based on double-reductive amination for the synthesis of short-chain aminolipids. These lipids can be used to maximize the DNA vector delivery when combined with the cationic lipid 1,2-dioleoyl-3-trimethylammonium propane (DOTAP). We incorporated various aminolipids into such l...
Cationic liposomes complexed with DNA have been used extensively as non-viral vectors for the intrac...
Non-viral vectors such as cationic lipids are capable of delivering nucleic acids, including genes, ...
Cationic liposome-DNA complexes, also called lipoplexes , constitute a potentially viable alternati...
Cellular delivery of DNA vectors for the expression of therapeutic proteins is a promising approach...
Cellular delivery of DNA vectors for the expression of therapeutic proteins is a promising approach ...
Non–viral gene vectors exhibit several desirable properties, over their viral counterparts. This has...
A major obstacle in the development of gene therapy is delivery of therapeutic genes to the desired ...
International audienceOver the last several years, various gene delivery systems have been developed...
AbstractLipidic amphiphiles equipped with the trans-2-aminocyclohexanol (TACH) moiety are promising ...
Lipidic amphiphiles equipped with the trans-2-aminocyclohexanol (TACH) moiety are promising pH-sensi...
The design, synthesis and biological evaluation of the cationic lipid gene delivery vectors based on...
Lipid-mediated delivery of DNA into cells holds great promise both for gene therapy and basic resear...
This thesis describes investigations carried out into the role of cationic lipids in non-viral deliv...
AbstractBackground: Although synthetic nonviral vectors hold promise for the delivery of plasmid DNA...
Cationic liposomes are broadly used as non-viral vectors to deliver genetic materials that can be us...
Cationic liposomes complexed with DNA have been used extensively as non-viral vectors for the intrac...
Non-viral vectors such as cationic lipids are capable of delivering nucleic acids, including genes, ...
Cationic liposome-DNA complexes, also called lipoplexes , constitute a potentially viable alternati...
Cellular delivery of DNA vectors for the expression of therapeutic proteins is a promising approach...
Cellular delivery of DNA vectors for the expression of therapeutic proteins is a promising approach ...
Non–viral gene vectors exhibit several desirable properties, over their viral counterparts. This has...
A major obstacle in the development of gene therapy is delivery of therapeutic genes to the desired ...
International audienceOver the last several years, various gene delivery systems have been developed...
AbstractLipidic amphiphiles equipped with the trans-2-aminocyclohexanol (TACH) moiety are promising ...
Lipidic amphiphiles equipped with the trans-2-aminocyclohexanol (TACH) moiety are promising pH-sensi...
The design, synthesis and biological evaluation of the cationic lipid gene delivery vectors based on...
Lipid-mediated delivery of DNA into cells holds great promise both for gene therapy and basic resear...
This thesis describes investigations carried out into the role of cationic lipids in non-viral deliv...
AbstractBackground: Although synthetic nonviral vectors hold promise for the delivery of plasmid DNA...
Cationic liposomes are broadly used as non-viral vectors to deliver genetic materials that can be us...
Cationic liposomes complexed with DNA have been used extensively as non-viral vectors for the intrac...
Non-viral vectors such as cationic lipids are capable of delivering nucleic acids, including genes, ...
Cationic liposome-DNA complexes, also called lipoplexes , constitute a potentially viable alternati...