Cationic liposomal compounds are widely used to introduce DNA and siRNA into viable cells, but none of these compounds are also capable of introducing proteins. Here we describe the use of a cationic amphiphilic lipid SAINT-2:DOPE for the efficient delivery of proteins into cells (profection). Labeling studies demonstrated equal delivery efficiency for protein as for DNA and siRNA. Moreover, proteins complexed with SAINT-2:DOPE were successfully delivered, irrespective of the presence of serum, and the profection efficiency was not influenced by the size or the charge of the protein:cationic liposomal complex. Using beta-galactosidase as a reporter protein, enzymatic activity was detected in up to 98% of the adherent cells, up to 83% of the...
AbstractWe characterized different cationic lipid-based gene delivery systems consisting of both lip...
Cationic liposome-DNA complexes (\u27lipoplexes\u27) are used as gene delivery vehicles and may over...
Intracellular protein transduction technology is opening the door for a promising alternative to gen...
Cationic liposomal compounds are widely used to introduce DNA and siRNA into viable cells, but none ...
Background Cationic liposomes belong to the family of non-viral vectors for gene delivery. Despite s...
Background Cationic liposomes belong to the family of non-viral vectors for gene delivery. Despite s...
Recent rapid developments in genomics will likely lead to a rapid expansion in identifying defective...
Cationic liposome-DNA complexes, also called lipoplexes , constitute a potentially viable alternati...
In non-phagocytic cells such as endothelial cells, processing of liposomes and subsequent release of...
Non-viral vectors such as cationic lipids are capable of delivering nucleic acids, including genes, ...
The work presented in this thesis was aimed at characterizing cationic liposome-mediated transfectio...
Non-viral vectors such as cationic lipids are capable of delivering nucleic acids, including genes, ...
We characterized different cationic lipid-based gene delivery systems consisting of both liposomes a...
AbstractWe characterized different cationic lipid-based gene delivery systems consisting of both lip...
Cationic liposome-DNA complexes (\u27lipoplexes\u27) are used as gene delivery vehicles and may over...
Intracellular protein transduction technology is opening the door for a promising alternative to gen...
Cationic liposomal compounds are widely used to introduce DNA and siRNA into viable cells, but none ...
Background Cationic liposomes belong to the family of non-viral vectors for gene delivery. Despite s...
Background Cationic liposomes belong to the family of non-viral vectors for gene delivery. Despite s...
Recent rapid developments in genomics will likely lead to a rapid expansion in identifying defective...
Cationic liposome-DNA complexes, also called lipoplexes , constitute a potentially viable alternati...
In non-phagocytic cells such as endothelial cells, processing of liposomes and subsequent release of...
Non-viral vectors such as cationic lipids are capable of delivering nucleic acids, including genes, ...
The work presented in this thesis was aimed at characterizing cationic liposome-mediated transfectio...
Non-viral vectors such as cationic lipids are capable of delivering nucleic acids, including genes, ...
We characterized different cationic lipid-based gene delivery systems consisting of both liposomes a...
AbstractWe characterized different cationic lipid-based gene delivery systems consisting of both lip...
Cationic liposome-DNA complexes (\u27lipoplexes\u27) are used as gene delivery vehicles and may over...
Intracellular protein transduction technology is opening the door for a promising alternative to gen...