The distribution of drug delivery systems into the body is affected by plasma proteins adsorbed onto their surface. Furthermore, an exact understanding of the structure and morphology of drug carriers is fundamental to understand their role as gene delivery systems. In this work, the adsorption of human plasma proteins bound to cationic liposomes and to their relative DNA lipoplexes was compared. A shotgun proteomics approach based on HPLC coupled to high resolution MS was used for an efficient identification of proteins adsorbed onto liposome and lipoplex surfaces. The distinct pattern of proteins adsorbed helps to better understand the DNA compaction process. The experimental evidence leads us to hypothesize that polyanionic DNA is associ...
Nano-sized objects such as liposomes are modified by adsorption of biomolecules in biological fluids...
Interaction of cationic lipid/DNA complex with the plasma is a limiting step for the cationic lipid-...
Once embedded in a physiological environment, the surface of nanoparticles (NPs) gets covered with a...
AbstractSerum has often been reported as a barrier to efficient lipid-mediated transfection. Here we...
A shotgun proteomics approach was used to compare human plasma protein binding capability with catio...
This PhD thesis is a part of the study concerning non-viral nanocarriers for gene therapy. In modern...
The self-assembling of cationic liposomes (CLs) and DNA can give rise to a variety of nanostructures...
A thorough understanding of interactions occurring at the interface between nanocarriers and biologi...
The mechanism of cell uptake in lipid mediated gene delivery was investigated in NIH3T3 and CHO cell...
The past three decades have witnessed fast advances in the use of cationic liposome-DNA complexes (l...
When nanoparticles (NPs) are exposed to biological fluids they adsorb biomolecules (mainly proteins)...
Cationic liposome-DNA complexes (\u27lipoplexes\u27) are used as gene delivery vehicles and may over...
The self‐assembled layered adsorption of proteins onto nanoparticle (NP) surfaces, once in contact w...
Claudia Corbo,1,2 Roberto Molinaro,1 Francesca Taraballi,1 Naama E Toledano Furman,1 Michael B Sherm...
In this study we exposed 1,2-dioleoyl-3-trimethylammonium propane (DOTAP)/DNA lipoplexes to differen...
Nano-sized objects such as liposomes are modified by adsorption of biomolecules in biological fluids...
Interaction of cationic lipid/DNA complex with the plasma is a limiting step for the cationic lipid-...
Once embedded in a physiological environment, the surface of nanoparticles (NPs) gets covered with a...
AbstractSerum has often been reported as a barrier to efficient lipid-mediated transfection. Here we...
A shotgun proteomics approach was used to compare human plasma protein binding capability with catio...
This PhD thesis is a part of the study concerning non-viral nanocarriers for gene therapy. In modern...
The self-assembling of cationic liposomes (CLs) and DNA can give rise to a variety of nanostructures...
A thorough understanding of interactions occurring at the interface between nanocarriers and biologi...
The mechanism of cell uptake in lipid mediated gene delivery was investigated in NIH3T3 and CHO cell...
The past three decades have witnessed fast advances in the use of cationic liposome-DNA complexes (l...
When nanoparticles (NPs) are exposed to biological fluids they adsorb biomolecules (mainly proteins)...
Cationic liposome-DNA complexes (\u27lipoplexes\u27) are used as gene delivery vehicles and may over...
The self‐assembled layered adsorption of proteins onto nanoparticle (NP) surfaces, once in contact w...
Claudia Corbo,1,2 Roberto Molinaro,1 Francesca Taraballi,1 Naama E Toledano Furman,1 Michael B Sherm...
In this study we exposed 1,2-dioleoyl-3-trimethylammonium propane (DOTAP)/DNA lipoplexes to differen...
Nano-sized objects such as liposomes are modified by adsorption of biomolecules in biological fluids...
Interaction of cationic lipid/DNA complex with the plasma is a limiting step for the cationic lipid-...
Once embedded in a physiological environment, the surface of nanoparticles (NPs) gets covered with a...