[[abstract]]©2009 ACS - The electrostatic complexes of polyanionic DNA with dendrimers have been considered as a class of nonviral vector for gene therapy. The gene transfection efficiency has been believed to be influenced by the structure of the complex. In this study, we have systematically characterized the supramolecular structures of the complexes of DNA duplexes with poly(amido amine) (PAMAM) dendrimers with generation two (G2) and three (G3) in pure water using small-angle X-ray scattering. The structures were examined as a function of the charge density of the dendrimer expressed by its degree of protonation (dp) and the molar ratio of the amine groups of dendrimer to the phosphate groups of DNA (NIP). The DNA chains in all complex...
International audienceHighly branched polyamidoamine (PAMAM) dendrimers presenting biological activi...
The ability of poly(amido amine) (or PAMAM) dendrimers to condense semiflexible dsDNA and penetrate ...
Cationic dendrimers are promising vectors for nonviral gene therapies due to their well-defined size...
Polyamidoamine (PAMAM) dednrimer bearing a well-defined number of amine groups can be protonated und...
This study deals with the build-up of biomaterials consisting of biopolymers, namely DNA, and soft p...
The interaction between a cationic poly(amido amine) (PAMAM) dendrimer of generation 4 and double-st...
The control of DNA condensation, i.e. packaging or compaction, is essential for the living cell, but...
DNA condensation in vivo relies on electrostatic complexation with small cations or large histones. ...
At physiological pH, a PAMAM dendrimer is positively charged and can effectively bind negatively cha...
We report DNA assisted self-assembly of polyamidoamine (PAMAM) dendrimers using all atom Molecular D...
Electrostatic shielding and steric blocking by histones are two significant factors that participate...
We report DNA assisted self-assembly of polyamidoamine (PAMAM) dendrimers using all atom Molecular D...
Dendrimers are well-defined, highly branched, synthetic three-dimensional molecules with a large num...
Highly branched polyamidoamine (PAMAM) dendrimers presenting biological activities have been envisag...
We study sequence-dependent complexation between oligonucleotides (single-strand DNA) and various ge...
International audienceHighly branched polyamidoamine (PAMAM) dendrimers presenting biological activi...
The ability of poly(amido amine) (or PAMAM) dendrimers to condense semiflexible dsDNA and penetrate ...
Cationic dendrimers are promising vectors for nonviral gene therapies due to their well-defined size...
Polyamidoamine (PAMAM) dednrimer bearing a well-defined number of amine groups can be protonated und...
This study deals with the build-up of biomaterials consisting of biopolymers, namely DNA, and soft p...
The interaction between a cationic poly(amido amine) (PAMAM) dendrimer of generation 4 and double-st...
The control of DNA condensation, i.e. packaging or compaction, is essential for the living cell, but...
DNA condensation in vivo relies on electrostatic complexation with small cations or large histones. ...
At physiological pH, a PAMAM dendrimer is positively charged and can effectively bind negatively cha...
We report DNA assisted self-assembly of polyamidoamine (PAMAM) dendrimers using all atom Molecular D...
Electrostatic shielding and steric blocking by histones are two significant factors that participate...
We report DNA assisted self-assembly of polyamidoamine (PAMAM) dendrimers using all atom Molecular D...
Dendrimers are well-defined, highly branched, synthetic three-dimensional molecules with a large num...
Highly branched polyamidoamine (PAMAM) dendrimers presenting biological activities have been envisag...
We study sequence-dependent complexation between oligonucleotides (single-strand DNA) and various ge...
International audienceHighly branched polyamidoamine (PAMAM) dendrimers presenting biological activi...
The ability of poly(amido amine) (or PAMAM) dendrimers to condense semiflexible dsDNA and penetrate ...
Cationic dendrimers are promising vectors for nonviral gene therapies due to their well-defined size...