Arginine (Arg)-rich cell-penetrating peptides (CPPs) are promising tools for plasmid DNA (pDNA) delivery. α-Aminoisobutyric acid (Aib) is known to stabilize peptide helical secondary structures and has been used as a building block for foldamers. In the current study, we prepared Aib CPP foldamers, (Arg–Arg–Aib)n (n = 1–6) and examined their pDNA transfection abilities. Transfection efficiencies of peptide/pDNA complexes are dependent on peptide chain length, with longer peptides (n ≥ 4) exhibiting better transfection abilities than an Arg nonapeptide. Furthermore, Aib CPP foldamers achieve prolonged transfection abilities compared with commercially available transfection reagents, which is probably because of the high resistance of the pep...
The plasma membrane functions as a barrier, restricting entry of hydrophilic pharmaceutical agents. ...
The successful applicability of gene therapy approaches will heavily rely on the development of effi...
The application of Peptide Nucleic Acids (PNAs), mimics of DNA lacking the sugar-phosphate backbone,...
Arginine (Arg)-rich peptides exhibit an effective cell-penetrating ability and deliver membrane-impe...
In the delivery of cell-impermeable molecules, cell-penetrating peptides (CPPs) have been attracting...
Cell-penetrating peptides (CPPs), for example, arginine (Arg) rich peptides, are used for the intrac...
A non-toxic and efficient gene carrier is one requirement for clinical gene therapy. In this study, ...
International audienceIn this work, we contribute an insight into the ability of cationic peptides f...
Despite numerous efforts over the last three decades, nucleic acid-based therapeutics still lack del...
Noncovalent complexation of plasmid DNA (pDNA) with cell-penetrating peptides (CPPs) forms relativel...
Foldamers, which are folded oligomers with well-defined conformations, have been recently reported t...
The hydrophobic nature of cell membranes is one of the major obstacles in the therapeutic delivery o...
A peptide composed of lysine with a guanidinylethyl (GEt) amine structure in the side chain [Lys(GEt...
Cell-penetrating peptides (CPPs) have for a little bit more than a decade been employed as delivery ...
The efficient delivery of DNA is of great importance for therapeutic applications such as gene thera...
The plasma membrane functions as a barrier, restricting entry of hydrophilic pharmaceutical agents. ...
The successful applicability of gene therapy approaches will heavily rely on the development of effi...
The application of Peptide Nucleic Acids (PNAs), mimics of DNA lacking the sugar-phosphate backbone,...
Arginine (Arg)-rich peptides exhibit an effective cell-penetrating ability and deliver membrane-impe...
In the delivery of cell-impermeable molecules, cell-penetrating peptides (CPPs) have been attracting...
Cell-penetrating peptides (CPPs), for example, arginine (Arg) rich peptides, are used for the intrac...
A non-toxic and efficient gene carrier is one requirement for clinical gene therapy. In this study, ...
International audienceIn this work, we contribute an insight into the ability of cationic peptides f...
Despite numerous efforts over the last three decades, nucleic acid-based therapeutics still lack del...
Noncovalent complexation of plasmid DNA (pDNA) with cell-penetrating peptides (CPPs) forms relativel...
Foldamers, which are folded oligomers with well-defined conformations, have been recently reported t...
The hydrophobic nature of cell membranes is one of the major obstacles in the therapeutic delivery o...
A peptide composed of lysine with a guanidinylethyl (GEt) amine structure in the side chain [Lys(GEt...
Cell-penetrating peptides (CPPs) have for a little bit more than a decade been employed as delivery ...
The efficient delivery of DNA is of great importance for therapeutic applications such as gene thera...
The plasma membrane functions as a barrier, restricting entry of hydrophilic pharmaceutical agents. ...
The successful applicability of gene therapy approaches will heavily rely on the development of effi...
The application of Peptide Nucleic Acids (PNAs), mimics of DNA lacking the sugar-phosphate backbone,...