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合成类视黄醇Am80通过抑制KLF5来抑制平滑肌表型调节和支架内新生内膜形成。

Synthetic retinoid Am80 suppresses smooth muscle phenotypic modulation and in-stent neointima formation by inhibiting KLF5.

作者信息

Fujiu Katsuhito, Manabe Ichiro, Ishihara Atsushi, Oishi Yumiko, Iwata Hiroshi, Nishimura Go, Shindo Takayuki, Maemura Koji, Kagechika Hiroyuki, Shudo Koichi, Nagai Ryozo

机构信息

Department of Cardiovascular Medicine, Graduate School of Medicine, University of Tokyo, Tokyo, Japan.

出版信息

Circ Res. 2005 Nov 25;97(11):1132-41. doi: 10.1161/01.RES.0000190613.22565.13. Epub 2005 Oct 13.

Abstract

Modulation of smooth muscle cell (SMC) phenotype plays a central role in neointima formation. We recently demonstrated that Am80, a synthetic retinoic acid receptor alpha-specific agonist, inhibits the activity of the transcription factor KLF5, which is essential for neointima formation after vascular injury. In the present study, we aimed to further analyze the mechanism by which Am80 inhibits KLF5 and the effects of inhibiting KLF5 on SMCs and vascular lesion formation, as well as to evaluate potential of Am80 for use in the prevention of in-stent neointima formation. We found that Am80 inhibited both the expression and transcriptional function of KLF5. Of particular interest was our finding that KLF5 forms a transcriptionally active complex with unliganded RAR/RXR heterodimer on the PDGF-A promoter; Am80 disrupts this complex, thereby inhibiting KLF5-dependent transcriptional activation. Knocking down KLF5 using small interfering RNA suppressed serum-induced downregulation of SMC differentiation marker gene expression in cultured SMCs, and haploinsufficiency of KLF5 in mice attenuated phenotypic modulation of SMCs after vascular injury, indicating that KLF5 plays a key role in the control of SMC phenotype. Am80 augmented expression of the SMC differentiation marker genes in culture and within the vessel walls, and oral administration of Am80 significantly inhibited in-stent neointima formation in a rabbit stent-placement model. Taken together, these results demonstrate that KLF5 plays an important role in the control of SMC phenotype after vascular injury and suggest the feasibility of using Am80, delivered systemically and/or with a drug eluting stent, to prevent in-stent neointima formation.

摘要

平滑肌细胞(SMC)表型的调节在新生内膜形成中起核心作用。我们最近证明,合成视黄酸受体α特异性激动剂Am80可抑制转录因子KLF5的活性,而KLF5对于血管损伤后的新生内膜形成至关重要。在本研究中,我们旨在进一步分析Am80抑制KLF5的机制以及抑制KLF5对SMC和血管病变形成的影响,并评估Am80用于预防支架内新生内膜形成的潜力。我们发现Am80既抑制KLF5的表达又抑制其转录功能。特别有趣的是,我们发现KLF5在血小板衍生生长因子A(PDGF-A)启动子上与未结合配体的维甲酸受体(RAR)/维甲酸X受体(RXR)异二聚体形成转录活性复合物;Am80破坏了这种复合物,从而抑制了KLF5依赖的转录激活。使用小干扰RNA敲低KLF5可抑制培养的SMC中血清诱导的SMC分化标记基因表达的下调,并且小鼠中KLF5的单倍剂量不足减弱了血管损伤后SMC的表型调节,表明KLF5在控制SMC表型中起关键作用。Am80增强了培养物中和血管壁内SMC分化标记基因的表达,并且在兔支架置入模型中口服Am80可显著抑制支架内新生内膜形成。综上所述,这些结果表明KLF5在血管损伤后控制SMC表型中起重要作用,并提示全身给药和/或与药物洗脱支架联合使用Am80预防支架内新生内膜形成的可行性。

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