首页> 美国卫生研究院文献>American Journal of Physiology - Lung Cellular and Molecular Physiology >High proliferative potential endothelial colony-forming cells contribute to hypoxia-induced pulmonary artery vasa vasorum neovascularization
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High proliferative potential endothelial colony-forming cells contribute to hypoxia-induced pulmonary artery vasa vasorum neovascularization

机译:高增殖潜能的内皮集落形成细胞促进缺氧诱导的肺动脉血管血管新生血管形成

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摘要

Angiogenic expansion of the vasa vasorum (VV) is an important contributor to pulmonary vascular remodeling in the pathogenesis of pulmonary hypertension (PH). High proliferative potential endothelial progenitor-like cells have been described in vascular remodeling and angiogenesis in both systemic and pulmonary circulations. However, their role in hypoxia-induced pulmonary artery (PA) VV expansion in PH is not known. We hypothesized that profound PA VV neovascularization observed in a neonatal calf model of hypoxia-induced PH is due to increased numbers of subsets of high proliferative cells within the PA adventitial VV endothelial cells (VVEC). Using a single cell clonogenic assay, we found that high proliferative potential colony-forming cells (HPP-CFC) comprise a markedly higher percentage in VVEC populations isolated from the PA of hypoxic (VVEC-Hx) compared with control (VVEC-Co) calves. VVEC-Hx populations that comprised higher numbers of HPP-CFC also demonstrated markedly higher expression levels of CD31, CD105, and c-kit than VVEC-Co. In addition, significantly higher expression of CD31, CD105, and c-kit was observed in HPP-CFC vs. the VVEC of the control but not of hypoxic animals. HPP-CFC exhibited migratory and tube formation capabilities, two important attributes of angiogenic phenotype. Furthermore, HPP-CFC-Co and some HPP-CFC-Hx exhibited elevated telomerase activity, consistent with their high replicative potential, whereas a number of HPP-CFC-Hx exhibited impaired telomerase activity, suggestive of their senescence state. In conclusion, our data suggest that hypoxia-induced VV expansion involves an emergence of HPP-CFC populations of a distinct phenotype with increased angiogenic capabilities. These cells may serve as a potential target for regulating VVEC neovascularization.
机译:脉管血管扩张(VV)的血管生成是肺动脉高压(PH)发病机理中肺血管重塑的重要因素。在全身和肺循环中的血管重塑和血管生成中已经描述了高增殖潜力的内皮祖细胞样细胞。但是,尚不清楚它们在低氧诱导的肺动脉(PA)VV扩张中的作用。我们假设在缺氧诱导的PH的新生小牛模型中观察到的深刻的PA VV新血管形成是由于PA外膜VV内皮细胞(VVEC)内高增殖细胞子集数量的增加。使用单细胞克隆形成测定,我们发现,从低氧(VVEC-Hx)的PA分离出的VVEC群体中,与对照组(VVEC-Co)犊牛相比,高增殖潜能集落形成细胞(HPP-CFC)包含明显更高的百分比。包含更高数量的HPP-CFC的VVEC-Hx群体也显示出CD31,CD105和c-kit的表达水平明显高于VVEC-Co。另外,与对照的VVEC相比,在HPP-CFC中观察到CD31,CD105和c-kit的显着较高表达,而缺氧动物则没有。 HPP-CFC表现出迁移能力和管形成能力,这是血管生成表型的两个重要属性。此外,HPP-CFC-Co和某些HPP-CFC-Hx表现出升高的端粒酶活性,与其高复制潜能相符,而许多HPP-CFC-Hx表现出端粒酶活性受损,表明它们的衰老状态。总之,我们的数据表明,低氧诱导的VV扩展涉及具有明显血管生成能力的独特表型的HPP-CFC群体的出现。这些细胞可以作为调节VVEC新血管形成的潜在靶标。

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