AbstractLipidic amphiphiles equipped with the trans-2-aminocyclohexanol (TACH) moiety are promising pH-sensitive conformational switches (“flipids”) that can trigger a lipid bilayer perturbation in response to increased acidity. Because pH-sensitivity was shown to improve the efficiency of several gene delivery systems, we expected that such flipids could significantly enhance the gene transfection by lipoplexes. Thus a series of novel lipids with various TACH-based head groups and hydrocarbon tails were designed, prepared and incorporated into lipoplexes that contain the cationic lipid 1,2-dioleoyl-3-trimethylammonio-propane (DOTAP) and plasmid DNA encoding a luciferase gene. B16F1 and HeLa cells were transfected with such lipoplexes in bo...
AbstractGene therapy is expected to treat various incurable diseases including viral infections, aut...
Cellular delivery of DNA vectors for the expression of therapeutic proteins is a promising approach...
The molecular structure of the cationic lipids used in gene transfection strongly influences their t...
Lipidic amphiphiles equipped with the trans-2-aminocyclohexanol (TACH) moiety are promising pH-sensi...
AbstractLipidic amphiphiles equipped with the trans-2-aminocyclohexanol (TACH) moiety are promising ...
Trans-2-Aminocyclohexanol (TACH) is a promising model for pH-triggerable molecular switches with a v...
Acid-sensitive liposome has drawn much interest as drug and gene carriers that release payloads spec...
International audienceOver the last several years, various gene delivery systems have been developed...
In an effort to develop pH-sensitive lipoplexes for efficient gene delivery, we report three novel c...
We developed a novel strategy to render liposomes pH-sensitive: a protonation-induced conformational...
Non–viral gene vectors exhibit several desirable properties, over their viral counterparts. This has...
Herein, we report on the design and synthesis of a novel nontoxic cationic amphiphile N,N-di-n-tetra...
Cellular delivery of DNA vectors for the expression of therapeutic proteins is a promising approach ...
Context: Cationic lipoplexes are less toxic than viral gene vectors and more convenient to prepare b...
Cationic lipid-mediated gene transfer is widely used for their advantages over viral gene transfer b...
AbstractGene therapy is expected to treat various incurable diseases including viral infections, aut...
Cellular delivery of DNA vectors for the expression of therapeutic proteins is a promising approach...
The molecular structure of the cationic lipids used in gene transfection strongly influences their t...
Lipidic amphiphiles equipped with the trans-2-aminocyclohexanol (TACH) moiety are promising pH-sensi...
AbstractLipidic amphiphiles equipped with the trans-2-aminocyclohexanol (TACH) moiety are promising ...
Trans-2-Aminocyclohexanol (TACH) is a promising model for pH-triggerable molecular switches with a v...
Acid-sensitive liposome has drawn much interest as drug and gene carriers that release payloads spec...
International audienceOver the last several years, various gene delivery systems have been developed...
In an effort to develop pH-sensitive lipoplexes for efficient gene delivery, we report three novel c...
We developed a novel strategy to render liposomes pH-sensitive: a protonation-induced conformational...
Non–viral gene vectors exhibit several desirable properties, over their viral counterparts. This has...
Herein, we report on the design and synthesis of a novel nontoxic cationic amphiphile N,N-di-n-tetra...
Cellular delivery of DNA vectors for the expression of therapeutic proteins is a promising approach ...
Context: Cationic lipoplexes are less toxic than viral gene vectors and more convenient to prepare b...
Cationic lipid-mediated gene transfer is widely used for their advantages over viral gene transfer b...
AbstractGene therapy is expected to treat various incurable diseases including viral infections, aut...
Cellular delivery of DNA vectors for the expression of therapeutic proteins is a promising approach...
The molecular structure of the cationic lipids used in gene transfection strongly influences their t...