首页> 美国卫生研究院文献>Frontiers in Neurology >Intermittent Hypoxia Induced Formation of Endothelial Cell-Colony Forming Units (EC-CFUs) Is Affected by ROS and Oxidative Stress
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Intermittent Hypoxia Induced Formation of Endothelial Cell-Colony Forming Units (EC-CFUs) Is Affected by ROS and Oxidative Stress

机译:ROS和氧化应激影响间歇性缺氧诱导的内皮细胞集落形成单位(EC-CFUs)的形成

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摘要

Intermittent hypoxia (IH)—the hallmark of obstructive sleep apnea (OSA)—increases leukocyte activation, production of NADPH-oxidase dependent reactive oxygen species (ROS) and oxidative stress, affecting endothelial function. However, IH and oxidative stress can also stimulate adaptive-protective mechanisms by inducing the development of Endothelial Cell-Colony Forming Units (EC-CFUs), which are considered as a good surrogate marker for endothelial progenitor cells (EPCs), and likely reflect a reparatory response to vascular damage or tissue ischemia by leukocytes. Blood samples were obtained from 15 healthy consenting volunteers to evaluate the effects of IH and sustained hypoxia (SH) in vitro on EC-CFUs development and functions. The variables measured included: their numbers, the area, the proliferative capacity and ROS production. Additionally, NADPH-oxidase, VEGF and nuclear factor-erythroid 2 related factor 2 (Nrf2) expression, as well as their paracrine effects on endothelial tube formation were determined. The involvement of ROS was probed using the anti-oxidant N-acetylcysteine (NAC) and NADPH-oxidase inhibitors apocynin and diphenyl-iodide. Compared to normoxia, IH-dependent increases in EC-CFUs numbers were observed, showing an individual donor-dependent trait. Also, the expression of VEGF and gp91phox, a subunit of NADPH-oxidase, were significantly increased. ROS production and oxidative stress markers were also significantly increased, but Nrf2 expression and colony size were unaffected by IH. Additionally, conditioned media harvested from IH- and SH-treated mature EC-CFUs, significantly increased endothelial tube formation. These effects were markedly attenuated or diminished by the ROS and NADPH-oxidase inhibitors employed. In conclusion, we show here for the first time that IH-associated oxidative stress promotes EC-CFUs' vascular and paracrine capacities through ROS. However, the large inter-individual variability expressed in EC-CFUs numbers and functions to a given IH stimulus, may represent an individual trait with a potential clinical significance.
机译:间歇性缺氧(IH)是阻塞性睡眠呼吸暂停(OSA)的标志,它会增加白细胞激活,NADPH氧化酶依赖性活性氧(ROS)的产生和氧化应激,从而影响内皮功能。但是,IH和氧化应激也可以通过诱导内皮细胞集落形成单位(EC-CFU)的发展来刺激适应性保护机制,内皮细胞集落形成单位被认为是内皮祖细胞(EPC)的良好替代标记,并且可能反映了白细胞对血管损伤或组织缺血的修复反应。从15名健康自愿志愿者中采集血液样本,以评估IH和持续性缺氧(SH)在体外对EC-CFU发育和功能的影响。测量的变量包括:它们的数量,面积,增殖能力和ROS的产生。另外,确定了NADPH-氧化酶,VEGF和核因子-类红细胞2相关因子2(Nrf2)的表达,以及它们对内皮管形成的旁分泌作用。使用抗氧化剂N-乙酰半胱氨酸(NAC)和NADPH-氧化酶抑制剂Apocynin和二苯基碘来探测ROS的参与。与常氧相比,观察到EC-CFUs的IH依赖性增加,显示出单个供体依赖性特征。同样,VEGF和gp91phox(NADPH氧化酶的一个亚基)的表达也显着增加。 ROS的产生和氧化应激标志物也显着增加,但Nrf2表达和菌落大小不受IH影响。此外,从IH和SH处理的成熟EC-CFU中收获的条件培养基显着增加了内皮管的形成。通过使用ROS和NADPH-氧化酶抑制剂,这些作用明显减弱或减弱。综上所述,我们首次在这里表明IH相关的氧化应激通过ROS促进EC-CFU的血管和旁分泌能力。但是,以EC-CFU数量和功能对给定的IH刺激表达的个体间较大差异可能代表具有潜在临床意义的个体性状。

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