Understanding the pathways for nuclear entry could see vast improvements in polymer design for the delivery of genetic materials to cells. Here, we use a novel diblock copolymer complexed with plasmid DNA (pDNA) to determine both its cellular entry and nuclear pathways. The diblock copolymer (A-C3) is specifically designed to bind and protect pDNA, release it at a specific time, but more importantly, rapidly escape the endosome. The copolymer was taken up by HEK293 cells preferentially via the clathrin-mediated endocytosis (CME) pathway, and the pDNA entered the nucleus to produce high gene expression levels in all cells after 48 h, a similar observation to the commercially available polymer transfection agent, PEI Max. This demonstrates th...
Synthetic nanomaterials are being sought to shuttle therapeutic payloads directly into the cell nucl...
The nuclear membrane is one of the major cellular barriers in the delivery of plasmid DNA (pDNA). Ce...
Cellular entry of nanoparticles for drug- and gene delivery relies on various endocytic pathways, in...
Understanding the pathways for nuclear entry could see vast improvements in polymer design for the d...
Cationic polymers are commonly used to transfect mammalian cells, but their mechanisms of DNA delive...
available in PMC 2012 August 17The delivery of nucleic acids has the potential to revolutionize medi...
Development of novel agents that mediate nucleic acid delivery into cells has widespread application...
The use of synthetic polymers for the delivery of nucleic acids holds considerable promise for under...
Non-viral gene delivery vectors are widely used for the delivery of genetic materials into mammalian...
International audienceQuantification of a plasmid DNA (pDNA) and investigation of its polymer-associ...
Functions of nuclear polymeric proteins such as lamin A/C and actin in transport of plasmid DNA were...
Import of exogenous plasmid DNA (pDNA) into mammalian cell nuclei represents a key intracellular obs...
Gene therapy provides a great hope for the treatment of many acquired and inherited life-threatening...
International audienceWe succeeded in visualizing plasmid DNA (pDNA) in the nucleus and cytosol of n...
Successful gene delivery with nonviral particles has several barriers, including cellular uptake, en...
Synthetic nanomaterials are being sought to shuttle therapeutic payloads directly into the cell nucl...
The nuclear membrane is one of the major cellular barriers in the delivery of plasmid DNA (pDNA). Ce...
Cellular entry of nanoparticles for drug- and gene delivery relies on various endocytic pathways, in...
Understanding the pathways for nuclear entry could see vast improvements in polymer design for the d...
Cationic polymers are commonly used to transfect mammalian cells, but their mechanisms of DNA delive...
available in PMC 2012 August 17The delivery of nucleic acids has the potential to revolutionize medi...
Development of novel agents that mediate nucleic acid delivery into cells has widespread application...
The use of synthetic polymers for the delivery of nucleic acids holds considerable promise for under...
Non-viral gene delivery vectors are widely used for the delivery of genetic materials into mammalian...
International audienceQuantification of a plasmid DNA (pDNA) and investigation of its polymer-associ...
Functions of nuclear polymeric proteins such as lamin A/C and actin in transport of plasmid DNA were...
Import of exogenous plasmid DNA (pDNA) into mammalian cell nuclei represents a key intracellular obs...
Gene therapy provides a great hope for the treatment of many acquired and inherited life-threatening...
International audienceWe succeeded in visualizing plasmid DNA (pDNA) in the nucleus and cytosol of n...
Successful gene delivery with nonviral particles has several barriers, including cellular uptake, en...
Synthetic nanomaterials are being sought to shuttle therapeutic payloads directly into the cell nucl...
The nuclear membrane is one of the major cellular barriers in the delivery of plasmid DNA (pDNA). Ce...
Cellular entry of nanoparticles for drug- and gene delivery relies on various endocytic pathways, in...