fulltext.study @t Gmail

Synergistic gene and drug tumor therapy using a chimeric peptide

Paper ID Volume ID Publish Year Pages File Format Full-Text
6635 508 2013 10 PDF Available
Synergistic gene and drug tumor therapy using a chimeric peptide

Co-delivery of gene and drug for synergistic therapy has provided a promising strategy to cure devastating diseases. Here, an amphiphilic chimeric peptide (Fmoc)2KH7-TAT with pH-responsibility for gene and drug delivery was designed and fabricated. As a drug carrier, the micelles self-assembled from the peptide exhibited a much faster doxorubicin (DOX) release rate at pH 5.0 than that at pH 7.4. As a non-viral gene vector, (Fmoc)2KH7-TAT peptide could satisfactorily mediate transfection of pGL-3 reporter plasmid with or without the existence of serum in both 293T and HeLa cell-lines. Besides, the endosome escape capability of peptide/DNA complexes was investigated by confocal laser scanning microscopy (CLSM). To evaluate the co-delivery efficiency and the synergistic anti-tumor effect of gene and drug, p53 plasmid and DOX were simultaneously loaded in the peptide micelles to form micelleplexes during the self-assembly of the peptide. Cellular uptake and intracellular delivery of gene and drug were studied by CLSM and flow cytometry respectively. And p53 protein expression was determined via Western blot analysis. The in vitro cytotoxicity and in vivo tumor inhibition effect were also studied. Results suggest that the co-delivery of gene and drug from peptide micelles resulted in effective cell growth inhibition in vitro and significant tumor growth restraining in vivo. The chimeric peptide-based gene and drug co-delivery system will find great potential for tumor therapy.

Peptide; Co-delivery; Synergistic therapy; p53; DOX
First Page Preview
Synergistic gene and drug tumor therapy using a chimeric peptide
Database: Elsevier - ScienceDirect
Journal: Biomaterials - Volume 34, Issue 19, June 2013, Pages 4680–4689
, , , , , , ,
Physical Sciences and Engineering Chemical Engineering Bioengineering