诱饵
新生内膜
转染
下调和上调
交易激励
新生内膜增生
细胞凋亡
癌症研究
体内
内膜增生
细胞粘附分子
医学
遗传增强
转录因子
免疫学
生物
再狭窄
内科学
基因
受体
生物化学
支架
生物技术
平滑肌
作者
Shin Yoshimura,Ryuichi Morishita,Kozaburo Hayashi,Kei Yamamoto,Hironori Nakagami,Yasufumi Kaneda,Noboru Sakai,Toshio Ogihara
出处
期刊:Gene Therapy
[Springer Nature]
日期:2001-11-01
卷期号:8 (21): 1635-1642
被引量:118
标识
DOI:10.1038/sj.gt.3301566
摘要
The transcription factor, NFkB, plays a pivotal role in the coordinated transactivation of cytokine and adhesion molecule genes involved in atherosclerosis and lesion formation after vascular injury. We hypothesized that synthetic double-stranded DNA with high affinity for NFkB may be introduced as a 'decoy' cis element to bind the transcription factor, and block gene activation, resulting in an effective therapeutic agent for treating intimal hyperplasia. In vivo transfection of NFkB decoy oligodeoxynucleotides (ODN) into balloon-injured rat carotid artery resulted in the inhibition of neointimal formation at 14 days after injury as compared with vessels transfected with scrambled ODN (P < 0.01). It is of importance to note that in the vessels transfected with NFkB decoy ODN, the expression of p53, a pro-apoptotic gene, was upregulated in neointimal area, followed by increased apoptosis at 14 days. In addition, gene expression of ICAM-1 and VCAM-1 was markedly decreased in blood vessels transfected with NFkB decoy ODN compared with scrambled ODN, whereas balloon injury induced ICAM and VCAM expression in the neointimal area. More importantly, the migration of macrophages and T-lymphocytes into the neointima and media was significantly inhibited by NFkB decoy ODN as compared with scrambled ODN. Here, we demonstrated that in vivo transfer of NFkB decoy ODN successfully inhibited neointimal formation after balloon injury, accompanied by (1) induction of apoptosis through p53 upregulation, and (2) inhibition of local inflammatory actions through the downregulation of adhesion molecules. These results suggest that decoy treatment against NFkB provides a new therapeutic strategy to inhibit neointimal hyperplasia after angioplasty.
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