Cationic solid lipid nanoparticles (SLN) have been recently proposed as non-viral vectors in systemic gene therapy. The aim of this study was to evaluate the effect of the protamine amount used as the transfection promoter in SLN-mediated gene delivery. Three protamine-SLN samples (Pro25, Pro100, and Pro200) prepared by adding increasing amounts of protamine were characterized for their size, zeta potential, and protamine loading level. The samples were evaluated for pDNA complexation ability by gel-electrophoresis analysis and for cytotoxicity and transfection efficiency by using different cell lines (COS-I, HepG2, and Na1300). The size of SLN was ~230 nm and only Pro200 showed few particle aggregates. Unlike the Pro25 sample with the lowe...
A novel lipidic vector composed of DOTAP/Chol liposomes, asialofetuin (AF), protamine sulfate and DN...
Nanoscience and nanotechnology have received much attention in the last decade and they actually for...
This is a copy of an article published in the Human gene therapy © 2012 copyright Mary Ann Liebert,...
Cationic solid lipid nanoparticles (SLN) have been recently proposed as non-viral vectors in systemi...
Protamine has attracted much attention as DNA condenser and nuclear transfer enhancer although theex...
Nanoparticle-mediated plasmid delivery is considered a useful tool to introduce foreign DNA into the...
Cationic solid lipid nanoparticles (SLN) are promising nonviral gene delivery carriers suitable for ...
In this study we produced cationic SLN using stearicacid, stearylamine and protamine sulfate astrans...
The utility of using a protammine/DNA complex coated with a lipid envelope made of cationic 1,2-dio...
Background: The ability to efficiently cross cellular barriers and accomplish high-level transgene e...
The development of safe and effective nucleic acid delivery systems remains a challenge, with solid ...
Background The structural similarity between low molecular weight protamine (LMWP), prepared by enz...
Sono stati presentati i risultati di studi effettuati in vitro sull'efficienza di transfezione di SL...
In this paper SLN were prepared using stearic acid as main lipid component, stearylamine as cationic...
The enhancement of non viral vectors is a priority in the field of gene therapy, in order to manage ...
A novel lipidic vector composed of DOTAP/Chol liposomes, asialofetuin (AF), protamine sulfate and DN...
Nanoscience and nanotechnology have received much attention in the last decade and they actually for...
This is a copy of an article published in the Human gene therapy © 2012 copyright Mary Ann Liebert,...
Cationic solid lipid nanoparticles (SLN) have been recently proposed as non-viral vectors in systemi...
Protamine has attracted much attention as DNA condenser and nuclear transfer enhancer although theex...
Nanoparticle-mediated plasmid delivery is considered a useful tool to introduce foreign DNA into the...
Cationic solid lipid nanoparticles (SLN) are promising nonviral gene delivery carriers suitable for ...
In this study we produced cationic SLN using stearicacid, stearylamine and protamine sulfate astrans...
The utility of using a protammine/DNA complex coated with a lipid envelope made of cationic 1,2-dio...
Background: The ability to efficiently cross cellular barriers and accomplish high-level transgene e...
The development of safe and effective nucleic acid delivery systems remains a challenge, with solid ...
Background The structural similarity between low molecular weight protamine (LMWP), prepared by enz...
Sono stati presentati i risultati di studi effettuati in vitro sull'efficienza di transfezione di SL...
In this paper SLN were prepared using stearic acid as main lipid component, stearylamine as cationic...
The enhancement of non viral vectors is a priority in the field of gene therapy, in order to manage ...
A novel lipidic vector composed of DOTAP/Chol liposomes, asialofetuin (AF), protamine sulfate and DN...
Nanoscience and nanotechnology have received much attention in the last decade and they actually for...
This is a copy of an article published in the Human gene therapy © 2012 copyright Mary Ann Liebert,...