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Id1基因转移赋予完全分化的内皮细胞血管生成特性,并有助于治疗性血管生成。

Id1 gene transfer confers angiogenic property on fully differentiated endothelial cells and contributes to therapeutic angiogenesis.

作者信息

Nishiyama Koichi, Takaji Kentaro, Kataoka Keiichiro, Kurihara Yukiko, Yoshimura Michihiro, Kato Atsushi, Ogawa Hisao, Kurihara Hiroki

机构信息

Department of Cardiovascular Medicine, Graduate School of Medical Sciences, Kumamoto University, Kumamoto 860-8556, Japan.

出版信息

Circulation. 2005 Nov 1;112(18):2840-50. doi: 10.1161/CIRCULATIONAHA.104.516898.

Abstract

BACKGROUND

Transplantation of endothelial progenitor cells has been proposed as a potential strategy for therapeutic revascularization. However, the limited endogenous cell pool and the related technical difficulties constitute clinically important disadvantages to autologous transplantation. In this study we investigated whether fully differentiated endothelial cells (ECs) modified with gene transfer of Id1, a helix-loop-helix transcription factor involved in angiogenesis, have the potential to contribute to therapeutic angiogenesis.

METHODS AND RESULTS

The Id1 gene was transferred into human umbilical vein ECs (HUVECs) via a Sendai virus vector. Id1 stimulated migration, proliferation, and capillary-like tube/cord formation of HUVECs. In addition, Id1 reduced serum deprivation-induced HUVEC apoptosis, as shown by FACS analysis with annexin V and TUNEL staining. Transplantation of Id1-overexpressing HUVECs accelerated recovery of blood flow as evaluated by laser-Doppler perfusion imaging, increased capillary density, and improved the rate of limb salvage compared with the transplantation of control HUVECs. Histochemical analysis revealed that the regenerated vascular networks of limbs transplanted with Id1-overexpressing HUVECs contained numerous HUVECs, some of which were in a proliferative state. Untransfected HUVECs were also incorporated with Id1-transfected HUVECs, suggesting the noncell autonomous effect of Id1. Finally, angiopoietin-1 was upregulated in Id1-overexpressing HUVECs and functionally contributed to the in vitro angiogenic effect of Id1.

CONCLUSIONS

Id1 gene transfer conferred HUVECs with an angiogenic property, contributing to neovascularization after transplantation into ischemic lesions. Transplantation of Id1-overexpressing mature ECs may serve as a novel and useful strategy for therapeutic angiogenesis.

摘要

背景

内皮祖细胞移植已被提出作为治疗性血管再生的一种潜在策略。然而,内源性细胞池有限以及相关技术难题构成了自体移植在临床上的重要缺点。在本研究中,我们调查了经参与血管生成的螺旋-环-螺旋转录因子Id1基因转移修饰的完全分化内皮细胞(ECs)是否具有促进治疗性血管生成的潜力。

方法与结果

通过仙台病毒载体将Id1基因转移到人脐静脉内皮细胞(HUVECs)中。Id1刺激HUVECs的迁移、增殖以及毛细血管样管/索形成。此外,如通过膜联蛋白V流式细胞术分析和TUNEL染色所示,Id1减少了血清剥夺诱导的HUVEC凋亡。与对照HUVECs移植相比,过表达Id1的HUVECs移植通过激光多普勒灌注成像评估加速了血流恢复,增加了毛细血管密度,并提高了肢体挽救率。组织化学分析显示,移植过表达Id1的HUVECs的肢体再生血管网络包含大量HUVECs,其中一些处于增殖状态。未转染的HUVECs也与Id1转染的HUVECs整合在一起,提示Id1的非细胞自主效应。最后,血管生成素-1在过表达Id1的HUVECs中上调,并在功能上促进了Id1的体外血管生成效应。

结论

Id1基因转移赋予HUVECs血管生成特性,有助于移植到缺血性病变后形成新血管。移植过表达Id1的成熟ECs可能是一种新型且有用的治疗性血管生成策略。

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