AbstractThe positive charge of cationic-lipid/DNA complexes (lipoplexes) renders them highly susceptible to interactions with the biological milieu, leading to aggregation and destabilization, and rapid clearance from the blood circulation. In this study we synthesized and characterized a set of novel amphiphiles, based on N-methyl-4-alkylpyridinium chlorides (SAINTs), to which a PEG moiety is coupled. Plasmids were fully protected in lipoplexes prepared from cationic SAINT-2 lipid and stabilized with SAINT-PEGs. Our results demonstrate that SAINT-PEG stabilization is transient, and permits DNA to be released from these lipoplexes. The rate of SAINT-PEG transfer from lipoplexes to acceptor liposomes was determined by the nature of the lipid...
Cationic liposomes are applied to transfer oligonucleotides (ODNs) into cells to regulate gene expre...
The goal of gene therapy is to achieve expression of an exogenous gene that results in a specific f...
AbstractCationic liposome–DNA complexes (lipoplexes) have emerged as leading nonviral gene carriers ...
The positive charge of cationic-lipid/DNA complexes (lipoplexes) renders them highly susceptible to ...
AbstractThe positive charge of cationic-lipid/DNA complexes (lipoplexes) renders them highly suscept...
AbstractCationic lipids are widely used for gene transfection, but their mechanism of action is stil...
Cationic lipids are widely used for gene transfection, but their mechanism of action is still poorly...
AbstractRecent work has shown that plasmid DNA can be efficiently encapsulated in well-defined “stab...
Effects of the addition of a cationic amino acid-based synthetic amphiphile, arginine N-lauroyl amid...
AbstractPoly(ethylene glycol)-lipid (PEG-lipid) conjugates are widely used in the field of liposomal...
We have investigated the mechanism of lipoplex-mediated transfection, employing a dialkyl pyridinium...
We have investigated the mechanism of lipoplex-mediated transfection, employing a dialkyl pyridinium...
AbstractBackground: Although synthetic nonviral vectors hold promise for the delivery of plasmid DNA...
Cationic liposome-DNA complexes (lipoplexes) have emerged as leading nonviral gene carriers in world...
AbstractWe have investigated the mechanism of lipoplex-mediated transfection, employing a dialkyl py...
Cationic liposomes are applied to transfer oligonucleotides (ODNs) into cells to regulate gene expre...
The goal of gene therapy is to achieve expression of an exogenous gene that results in a specific f...
AbstractCationic liposome–DNA complexes (lipoplexes) have emerged as leading nonviral gene carriers ...
The positive charge of cationic-lipid/DNA complexes (lipoplexes) renders them highly susceptible to ...
AbstractThe positive charge of cationic-lipid/DNA complexes (lipoplexes) renders them highly suscept...
AbstractCationic lipids are widely used for gene transfection, but their mechanism of action is stil...
Cationic lipids are widely used for gene transfection, but their mechanism of action is still poorly...
AbstractRecent work has shown that plasmid DNA can be efficiently encapsulated in well-defined “stab...
Effects of the addition of a cationic amino acid-based synthetic amphiphile, arginine N-lauroyl amid...
AbstractPoly(ethylene glycol)-lipid (PEG-lipid) conjugates are widely used in the field of liposomal...
We have investigated the mechanism of lipoplex-mediated transfection, employing a dialkyl pyridinium...
We have investigated the mechanism of lipoplex-mediated transfection, employing a dialkyl pyridinium...
AbstractBackground: Although synthetic nonviral vectors hold promise for the delivery of plasmid DNA...
Cationic liposome-DNA complexes (lipoplexes) have emerged as leading nonviral gene carriers in world...
AbstractWe have investigated the mechanism of lipoplex-mediated transfection, employing a dialkyl py...
Cationic liposomes are applied to transfer oligonucleotides (ODNs) into cells to regulate gene expre...
The goal of gene therapy is to achieve expression of an exogenous gene that results in a specific f...
AbstractCationic liposome–DNA complexes (lipoplexes) have emerged as leading nonviral gene carriers ...