DNA/Dendrimer Complexes Mediate Gene Transfer into Murine Cardiac Transplants ex Vivo

Starburst polyamidoamine dendrimers are synthetic polymers with unique structural and physical characteristics suitable for DNA gene transfer. Our previous studies demonstrated that Starburst dendrimers augment plasmid-mediated gene transfer efficiency in a nonvascularized, cardiac transplantation m...

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Veröffentlicht in:Molecular therapy 2000-12, Vol.2 (6), p.602-608
Hauptverfasser: Wang, Yinong, Boros, Peter, Liu, Jianhua, Qin, Lihui, Bai, Yalai, Bielinska, Anna U., Kukowska-Latallo, Jolanta F., Baker, James R., Bromberg, Jonathan S.
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Sprache:eng
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Zusammenfassung:Starburst polyamidoamine dendrimers are synthetic polymers with unique structural and physical characteristics suitable for DNA gene transfer. Our previous studies demonstrated that Starburst dendrimers augment plasmid-mediated gene transfer efficiency in a nonvascularized, cardiac transplantation model. In this study, the fifth generation of ethylenediamine core dendrimer was investigated for its ability to enhance gene transfer and expression in a clinically relevant murine vascularized heart transplantation model. The plasmid pMP6A-β-gal, encoding β-galactosidase (β-Gal), was incubated with dendrimers to form complexes. The complexes were perfused via the coronary arteries during donor graft harvesting, and reporter gene expression was determined by quantitative evaluation of X-Gal staining. The grafts infused with pMP6A-β-gal/dendrimer complexes showed β-Gal expression in myocytes from 7 to 14 days. A number of variables for transfer of the DNA/dendrimer complexes were tested, including DNA:dendrimer charge ratios, concentrations of DNA and dendrimer, preservation solutions, ischemic time, and enhancement of vascular permeability by serotonin, papaverine, and VEGF administration. The results showed that DNA/dendrimer complexes containing 20 µg of DNA and 260 μg of dendrimer (1:20 charge ratio) in a total volume of 200 μl resulted in highest gene expression in the grafts. The results also showed that prolonged incubation (cold ischemic time) to 2 h and pretreatment with serotonin further enhanced gene expression.
ISSN:1525-0016
1525-0024
DOI:10.1006/mthe.2000.0201