Polyethylenimine (PEI) has been demonstrated as an efficient DNA delivery vehicle both in vitro and in vivo. There is a consensus that PEI-DNA complexes enter the cells by endocytosis and escape from endosomes by the so-called “proton sponge” effect. However, little is known on how and where the polyplexes are de-complexed for DNA transcription and replication to occur inside the cell nucleus. To better understand this issue, we (i) tracked the cell internalization of PEI upon transfection to human epithelial cells and (ii) studied the interaction of PEI with phospholipidic layers mimicking nuclear membranes. Both the biological and physicochemical experiments provided evidence of a strong binding affinity between PEI and the lipidic bilaye...
Lipoplexes and polyplexes are widely applied as nonviral gene delivery carriers. Although their effi...
Polyplexes composed of polyethyleneimine (PEI) and DNA or siRNA have attracted great attention for t...
The development of polymers with low toxicity and efficient gene delivery remains a significant barr...
Non-viral gene therapy is based on the development of efficient and safe gene carrier systems able t...
Our revisit of the complexation between anionic DNA and cationic polyethylenimine (PEI) in both wate...
Due to recent advances in molecular biology and genomic research, numerous diseases have been given ...
Our revisit of the complexation between DNA and polyethylenimine (PEI) by using a combination of las...
Polyethylenimine (PEI) has been described as one of the most efficient cationic polymers for in vitr...
Cationic polymers are commonly used to transfect mammalian cells, but their mechanisms of DNA delive...
AbstractA novel gene transfer system utilizing polycation liposomes (PCLs), obtained by modifying li...
AbstractThough polyethylenimine (PEI) is one of the most efficient nonviral vectors, one concern is ...
Using a two step simulation protocol the atomistic interactions between PEG and b-PEI and the effect...
Lipoplexes and polyplexes are widely applied as nonviral gene delivery carriers. Although their effi...
Poly(ethylenimine) (PEI) and PEI-based systems have been widely studied for use as nucleic acid deli...
Small interfering RNAs offer novel opportunities to inhibit gene expression in a highly selective an...
Lipoplexes and polyplexes are widely applied as nonviral gene delivery carriers. Although their effi...
Polyplexes composed of polyethyleneimine (PEI) and DNA or siRNA have attracted great attention for t...
The development of polymers with low toxicity and efficient gene delivery remains a significant barr...
Non-viral gene therapy is based on the development of efficient and safe gene carrier systems able t...
Our revisit of the complexation between anionic DNA and cationic polyethylenimine (PEI) in both wate...
Due to recent advances in molecular biology and genomic research, numerous diseases have been given ...
Our revisit of the complexation between DNA and polyethylenimine (PEI) by using a combination of las...
Polyethylenimine (PEI) has been described as one of the most efficient cationic polymers for in vitr...
Cationic polymers are commonly used to transfect mammalian cells, but their mechanisms of DNA delive...
AbstractA novel gene transfer system utilizing polycation liposomes (PCLs), obtained by modifying li...
AbstractThough polyethylenimine (PEI) is one of the most efficient nonviral vectors, one concern is ...
Using a two step simulation protocol the atomistic interactions between PEG and b-PEI and the effect...
Lipoplexes and polyplexes are widely applied as nonviral gene delivery carriers. Although their effi...
Poly(ethylenimine) (PEI) and PEI-based systems have been widely studied for use as nucleic acid deli...
Small interfering RNAs offer novel opportunities to inhibit gene expression in a highly selective an...
Lipoplexes and polyplexes are widely applied as nonviral gene delivery carriers. Although their effi...
Polyplexes composed of polyethyleneimine (PEI) and DNA or siRNA have attracted great attention for t...
The development of polymers with low toxicity and efficient gene delivery remains a significant barr...