AbstractCellular transfection can be accomplished by the use of synthetic amphiphiles as gene carrier system. To understand the mechanism and hence to improve the efficiency of transfection, insight into the assembly and properties of the amphiphile/gene complex is crucial. Here, we have studied the interaction between a plasmid and cationic amphiphiles, using a monolayer technique, and have examined complex assembly by atomic force microscopy. The data reveal a three-step mechanism for complex formation. In a first step, the plasmids, interacting with the monolayer, display a strong tendency of orientational ordering. Subsequently, individual plasmids enwrap themselves with amphiphile molecules in a multilamellar fashion. The size of the c...
Due to charge interaction, cationic lipids spontaneously associate with nucleic acids, resulting in ...
Due to charge interaction, cationic lipids spontaneously associate with nucleic acids, resulting in ...
Gene therapy has emerged as a promising approach for the treatment or prevention of acquired and gen...
Cellular transfection can be accomplished by the use of synthetic amphiphiles as gene carrier system...
AbstractCellular transfection can be accomplished by the use of synthetic amphiphiles as gene carrie...
AbstractCationic lipids are widely used for gene transfection, but their mechanism of action is stil...
AbstractWe have investigated the mechanism of lipoplex-mediated transfection, employing a dialkyl py...
AbstractParameters that affect cellular transfection as accomplished by introducing DNA via carriers...
Cationic liposome-DNA complexes (lipoplexes) have emerged as leading nonviral gene carriers in world...
Parameters that affect cellular transfection as accomplished by introducing DNA via carriers compose...
AbstractCationic liposome–DNA complexes (lipoplexes) have emerged as leading nonviral gene carriers ...
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...
Due to charge interaction, cationic lipids spontaneously associate with nucleic acids, resulting in ...
Due to charge interaction, cationic lipids spontaneously associate with nucleic acids, resulting in ...
Gene therapy has emerged as a promising approach for the treatment or prevention of acquired and gen...
Cellular transfection can be accomplished by the use of synthetic amphiphiles as gene carrier system...
AbstractCellular transfection can be accomplished by the use of synthetic amphiphiles as gene carrie...
AbstractCationic lipids are widely used for gene transfection, but their mechanism of action is stil...
AbstractWe have investigated the mechanism of lipoplex-mediated transfection, employing a dialkyl py...
AbstractParameters that affect cellular transfection as accomplished by introducing DNA via carriers...
Cationic liposome-DNA complexes (lipoplexes) have emerged as leading nonviral gene carriers in world...
Parameters that affect cellular transfection as accomplished by introducing DNA via carriers compose...
AbstractCationic liposome–DNA complexes (lipoplexes) have emerged as leading nonviral gene carriers ...
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...
Due to charge interaction, cationic lipids spontaneously associate with nucleic acids, resulting in ...
Due to charge interaction, cationic lipids spontaneously associate with nucleic acids, resulting in ...
Gene therapy has emerged as a promising approach for the treatment or prevention of acquired and gen...