The polyplexes formed by nucleic acids and polycations have received a great attention owing to their potential application in gene therapy. In our study, we report experimental results and modeling outcomes regarding the optimization of polyplex formation between the double-stranded DNA (dsDNA) and poly(ʟ-Lysine) (PLL). The quantification of the binding efficiency during polyplex formation was performed by processing of the images captured from the gel electrophoresis assays. The design of experiments (DoE) and response surface methodology (RSM) were employed to investigate the coupling effect of key factors (pH and N/P ratio) affecting the binding efficiency. According to the experimental observations and response surface analysis, the N/...
The basic idea of gene therapy is to replace abnormal genes with normal genes. To realize this repla...
Polyplexes, complexed nucleic acids by cationic polymers, are the most common forms of nonviral gene...
The basic requirement for understanding the nonviral gene delivery pathway is a thorough biophysical...
The mechanism of polyethylenimine−DNA, poly(L-lysine)−DNA, peptide–DNA, and PBAE–DNA complex formati...
The mechanism of polyethylenimine−DNA, poly(L-lysine)−DNA, peptide–DNA, and PBAE–DNA complex formati...
Complexes formed from DNA and polycations are of interest because of their potential use in gene the...
Complexes formed from DNA and polycations are of interest because of their potential use in gene the...
Polycations and cationic lipids have been widely used as non-viral vectors for the delivery of plasm...
AbstractComplexes formed from DNA and polycations are of interest because of their potential use in ...
Available online 26 October 2021Cationic polymer-DNA complexes, or polyplexes, have been subject to ...
Locked nucleic acid (LNA) oligonucleotides bind DNA target sequences forming Watson-Crick and Hoogst...
The mechanism of polyethylenimine–DNA and poly(l-lysine)–DNA complex formation at pH 5.2 and 7.4 wa...
<p>In this paper, we develop a coarse-grained nucleotide model for the purpose of simulating large-s...
AbstractComplexes formed by DNA and polyethylenimine (PEI) are of great research interest because of...
International audienceStructural dynamics of the polyethylenimine–DNA and poly(L-lysine)–DNA complex...
The basic idea of gene therapy is to replace abnormal genes with normal genes. To realize this repla...
Polyplexes, complexed nucleic acids by cationic polymers, are the most common forms of nonviral gene...
The basic requirement for understanding the nonviral gene delivery pathway is a thorough biophysical...
The mechanism of polyethylenimine−DNA, poly(L-lysine)−DNA, peptide–DNA, and PBAE–DNA complex formati...
The mechanism of polyethylenimine−DNA, poly(L-lysine)−DNA, peptide–DNA, and PBAE–DNA complex formati...
Complexes formed from DNA and polycations are of interest because of their potential use in gene the...
Complexes formed from DNA and polycations are of interest because of their potential use in gene the...
Polycations and cationic lipids have been widely used as non-viral vectors for the delivery of plasm...
AbstractComplexes formed from DNA and polycations are of interest because of their potential use in ...
Available online 26 October 2021Cationic polymer-DNA complexes, or polyplexes, have been subject to ...
Locked nucleic acid (LNA) oligonucleotides bind DNA target sequences forming Watson-Crick and Hoogst...
The mechanism of polyethylenimine–DNA and poly(l-lysine)–DNA complex formation at pH 5.2 and 7.4 wa...
<p>In this paper, we develop a coarse-grained nucleotide model for the purpose of simulating large-s...
AbstractComplexes formed by DNA and polyethylenimine (PEI) are of great research interest because of...
International audienceStructural dynamics of the polyethylenimine–DNA and poly(L-lysine)–DNA complex...
The basic idea of gene therapy is to replace abnormal genes with normal genes. To realize this repla...
Polyplexes, complexed nucleic acids by cationic polymers, are the most common forms of nonviral gene...
The basic requirement for understanding the nonviral gene delivery pathway is a thorough biophysical...