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Targeting of Lipid-Protamine-DNA (LPD) Lipopolyplexes Using RGD Motifs.

Authors :
Harvie, Pierrot
Dutzar, Benjamin
Galbraith, Todd
Cudmore, Sally
O'Mahony, Daniel
Anklesaria, Pervin
Paul, Ralph
Source :
Journal of Liposome Research. Aug-Nov2003, Vol. 13 Issue 3/4, p231-247. 17p.
Publication Year :
2003

Abstract

The incorporation of pegylated lipid into Lipid-Protamine-DNA (LPD-PEG) lipopolyplexes causes a decrease of their in vitro transfection activity. This can be partially attributed to a reduction in particle binding to cells. To restore particle binding and specifically target LPD formulations to tumor cells, the lipid-peptide conjugate DSPE-PEG5K-succinyl-ACDCRGDCFCG-COOH (DSPE-PEG5K-RGD-4C) was generated and incorporated into LPD formulations (LPD-PEG-RGD). LPD-PEG-RGD was characterized with respect to its biophysical and biological properties. The Incorporation of DSPE-PEG5K-RGD-4C ligands into LPD formulations results in a 5 and a 15 fold increase in the LPD-PEG-RGD binding and uptake, respectively, over an LPD-PEG formulation. Enhancement of binding and uptake resulted in a 100 fold enhancement of transfection activity. Moreover, this transfection enhancement was specific to cells expressing appropriate integrin receptors (MDA-MB-231). Huh7 cells, known for their low level of αvβ3 and αvβ5 integrin expression, failed to show RGD mediated transfection enhancement. This transfection enhancement can be abolished in a competitive manner using free RGD peptide, but not an RGE control peptide. Results demonstrated RGD mediated enhanced LPD-PEG cell binding and transfection in cells expressing the integrin receptor. These formulations provide the basis for effective, targeted, systemic gene delivery. [ABSTRACT FROM AUTHOR]

Subjects

Subjects :
*BIOCONJUGATES
*PEPTIDES
*DNA

Details

Language :
English
ISSN :
08982104
Volume :
13
Issue :
3/4
Database :
Academic Search Index
Journal :
Journal of Liposome Research
Publication Type :
Academic Journal
Accession number :
11547896
Full Text :
https://doi.org/10.1081/LPR-120026389