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首页> 外文期刊>Journal of Biomechanical Science and Engineering >Effect of Hypoxia on Formation of Three-Dimensional Microvessel Networks by Endothelial Cells in vitro
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Effect of Hypoxia on Formation of Three-Dimensional Microvessel Networks by Endothelial Cells in vitro

机译:低氧对体外培养内皮细胞三维微血管网络形成的影响

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References(37) Three-dimensional (3-D) control of microvessel formation is critical for regeneration medicine and tissue engineering. Formation and maintenance of organ functions require deep and extensive microvessel networks that can supply O2 and nutrients to tissue-forming cells. In this study, we examined the effects of hypoxia on 3-D network formation using an in vitro model system in which the effects of hypoxia were isolated from those of other factors affecting network formation, such as growth factors. When we quantified network formation by endothelial cells (ECs) cultured on collagen gel under hypoxic (5% O2) and normoxic (21% O2) conditions, we found that hypoxia caused ECs to penetrate into the underlying collagen gel and to form 3-D, capillary-like networks. We also examined the detailed 3-D morphology of the networks using confocal laser-scanning microscopy. The networks promoted by hypoxia were more extensive and penetrated more deeply into the underlying collagen gel than did those formed under normoxic conditions. Our results demonstrate that hypoxia can induce 3-D network formation by ECs in vitro in the absence of other factors. In examining the mechanism by which hypoxia induces network formation, we found that hypoxia promotes expression of many EC genes, causes EC to secrete network-inducing factors, and increases the sensitivity of ECs to growth factors.
机译:参考文献(37)微血管形成的三维(3-D)控制对于再生医学和组织工程至关重要。器官功能的形成和维持需要深入而广泛的微血管网络,这些网络可以为组织形成细胞提供氧气和营养。在这项研究中,我们使用体外模型系统检查了低氧对3-D网络形成的影响,该系统将低氧的影响与其他影响网络形成的因素(例如生长因子)的影响分开。当我们量化在缺氧(5%O2)和常氧(21%O2)条件下在胶原蛋白凝胶上培养的内皮细胞(EC)的网络形成时,我们发现缺氧导致ECs渗入下面的胶原蛋白凝胶并形成3-D ,类似毛细管的网络。我们还使用共聚焦激光扫描显微镜检查了网络的详细3-D形态。与在常氧条件下形成的胶原网络相比,由缺氧促进的网络更广泛,并更深入地渗透到下面的胶原蛋白凝胶中。我们的结果表明,在没有其他因素的情况下,缺氧可以在体外诱导EC诱导3-D网络形成。在研究缺氧诱导网络形成的机制时,我们发现缺氧促进许多EC基因的表达,导致EC分泌网络诱导因子,并增加EC对生长因子的敏感性。

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