AbstractTransfection efficiency of liposomal gene delivery vectors depends on an optimal balance in the electro-chemical and structural properties of the transfection-capable complexes. We have recently reported a novel anionic lipoplex DNA delivery system composed of a ternary complex of endogenous occurring non-toxic anionic lipids, physiological Ca2+ cations, and plasmid DNA encoding a gene of interest with high transfection efficiency and low toxicity. In this work, we investigate the electro-chemical and structural properties anionic lipoplexes and compare them with those of Ca2+–DNA complexes. Biophysical characterization is used to explain the transfection efficiency of anionic lipoplexes in mammalian CHO-K1 cells. Circular dichroism...
A viewpoint now emerging is that a critical factor in lipid-mediated transfection (lipofection) is t...
Cationic liposomes complexed with DNA have been used extensively as non-viral vectors for the intrac...
Cationic liposome-DNA complexes (lipoplexes) constitute a potentially viable alternative to viral ve...
AbstractTransfection efficiency of liposomal gene delivery vectors depends on an optimal balance in ...
A novel anionic liposomal delivery system was designed based on DNA conformational changes observed ...
The authors found that recently developed multicomponent cationic liposome DNA complexes (lipoplexes...
Reported here is the correlation between the transfection efficiency of cationic liposome/DNA comple...
Cationic liposome-DNA complexes (lipoplexes) have emerged as leading nonviral gene carriers in world...
Formulation of DNA/cationic lipid complexes (lipoplexes) designed for nucleic acid delivery mostly r...
BACKGROUND:Formulation of DNA/cationic lipid complexes (lipoplexes) designed for nucleic acid delive...
The goal of gene therapy is to achieve expression of an exogenous gene that results in a specific f...
Recently, membrane charge density of lipid membranes, am, has been recognized as a universal paramet...
Abstract: Cationic liposomes (CLs) are used as gene vectors (carriers) in worldwide human clinical t...
Cationic liposomes spontaneously interact with the negatively charged DNA to form a stable complex t...
AbstractCationic liposome–DNA complexes (lipoplexes) have emerged as leading nonviral gene carriers ...
A viewpoint now emerging is that a critical factor in lipid-mediated transfection (lipofection) is t...
Cationic liposomes complexed with DNA have been used extensively as non-viral vectors for the intrac...
Cationic liposome-DNA complexes (lipoplexes) constitute a potentially viable alternative to viral ve...
AbstractTransfection efficiency of liposomal gene delivery vectors depends on an optimal balance in ...
A novel anionic liposomal delivery system was designed based on DNA conformational changes observed ...
The authors found that recently developed multicomponent cationic liposome DNA complexes (lipoplexes...
Reported here is the correlation between the transfection efficiency of cationic liposome/DNA comple...
Cationic liposome-DNA complexes (lipoplexes) have emerged as leading nonviral gene carriers in world...
Formulation of DNA/cationic lipid complexes (lipoplexes) designed for nucleic acid delivery mostly r...
BACKGROUND:Formulation of DNA/cationic lipid complexes (lipoplexes) designed for nucleic acid delive...
The goal of gene therapy is to achieve expression of an exogenous gene that results in a specific f...
Recently, membrane charge density of lipid membranes, am, has been recognized as a universal paramet...
Abstract: Cationic liposomes (CLs) are used as gene vectors (carriers) in worldwide human clinical t...
Cationic liposomes spontaneously interact with the negatively charged DNA to form a stable complex t...
AbstractCationic liposome–DNA complexes (lipoplexes) have emerged as leading nonviral gene carriers ...
A viewpoint now emerging is that a critical factor in lipid-mediated transfection (lipofection) is t...
Cationic liposomes complexed with DNA have been used extensively as non-viral vectors for the intrac...
Cationic liposome-DNA complexes (lipoplexes) constitute a potentially viable alternative to viral ve...