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Novel E2F decoy oligodeoxynucleotides inhibit in vitro vascular smooth muscle cell proliferation and in vivo neointimal hyperplasia

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Author(s)
JD AhnR MorishitaY KanedaHS KimY-C ChangK-U LeeJ-Y ParkHW LeeY-H KimI-K Lee
Keimyung Author(s)
Kim, Hye SoonLee, In Kyu
Department
Dept. of Internal Medicine (내과학)
Journal Title
Cancer Gene Therapy
Issued Date
2002
Volume
9
Issue
24
Abstract
The transcription factor, E2F, plays a critical role in the transactivation
of several genes involved in cell cycle regulation.
Previous studies showed that the transfection of cis element
double-stranded decoy oligodeoxynucleotides (ODNs) corresponding
to E2F binding sites inhibited the proliferation of
vascular smooth muscle cells (VSMCs) and neointimal
hyperplasia in injured vessels. We have developed a novel
E2F decoy ODN with a circular dumbbell structure (CD-E2F)
and compared its effects with those of the conventional
phosphorothioated E2F decoy (PS-E2F) ODN. CD-E2F ODN
was more stable than PS-E2F ODN, largely preserving its
structural integrity after incubation in the presence of
nucleases and sera. Moreover, CD-E2F ODN inhibited high
glucose- and serum-induced transcriptional expression of
cell cycle regulatory genes more strongly than PS-E2F ODN.
Transfection of CD-E2F ODN resulted in more effective
inhibition of VSMC proliferation in vitro and neointimal
formation in vivo, compared with PS-E2F ODN. An approximately
40–50% lower dose of CD-E2F ODN than PS-E2F
ODN was sufficient to attain similar effects. In conclusion, our
results indicate that CD-E2F ODN may be a valuable tool in
gene therapy protocols for inhibiting VSMC proliferation and
studying transcriptional regulation.
Gene Therapy (2002) 9, 1682–1692. doi:10.1038/sj.gt.3301849
Keywords: E2F decoy; dumbbell; non-viral vector; neointimal formation; VSMC proliferation
Keimyung Author(s)(Kor)
김혜순
이인규
Publisher
School of Medicine
Citation
JD Ahn et al. (2002). Novel E2F decoy oligodeoxynucleotides inhibit in vitro
vascular smooth muscle cell proliferation and in vivo
neointimal hyperplasia. Cancer Gene Therapy, 9(24), 1682–1692. doi: 10.1038/sj.gt.3301849
Type
Article
ISSN
0969-7128
Source
http://www.nature.com/articles/3301849
DOI
10.1038/sj.gt.3301849
URI
https://kumel.medlib.dsmc.or.kr/handle/2015.oak/35772
Appears in Collections:
1. School of Medicine (의과대학) > Dept. of Internal Medicine (내과학)
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