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Authors Yao C, Tai Z, Wang X, Liu J, Zhu Q, Wu X, Zhang L, Zhang W, Tian J, Gao Y, Gao S
Published Date May 2015 Volume 2015:10 Pages 3403—3416
DOI http://dx.doi.org/10.2147/IJN.S82413
Received 7 February 2015, Accepted 16 March 2015, Published 8 May 2015
Abstract: Low
efficiency and significant toxicity are the main obstacles to successful gene
delivery. We have developed a cationic reduction-responsive vector based on a
disulfide cross-linked stearylated polyarginine peptide modified with histidine
(C-SHR) for DNA delivery. The structure of the C-SHR was characterized, and the
in vitro and in vivo transfection efficiency and cytotoxicity of C-SHR/plasmid
DNA complexes were examined. Compared with non-cross-linked stearylated
polyarginine peptide (SHR), C-SHR increased the intracellular uptake and
dissociation behavior of the complexes. In addition, the gene transfection
efficiency of C-SHR/plasmid DNA complexes in HEK293 and HeLa cells was improved
and was comparable with that of bPEI-25K/plasmid DNA complexes, and the
cytotoxicity of C-SHR was significantly less than that of bPEI-25K.
Importantly, the in vivo gene transfection efficiency of C-SHR/plasmid DNA
complexes was five fold higher than that of SHR/plasmid DNA complexes,
suggesting that C-SHR is an efficient non-viral vector for DNA delivery.
Keywords: polyarginine,
histidine, stearyl, reduction-responsive, peptide, DNA delivery