Ayata Raif Eren, Chabaud Stéphane, Auger Michèle, Pouliot Roxane
Centre de Recherche en Organogénèse Expérimentale de l'Université Laval/ LOEX, Québec, QC, Canada G1J 1Z4 ; Division of Regenerative Medicine, CHU de Québec Research Centre, Quebec, QC, Canada G1J 1Z4 ; Faculté de Pharmacie, Université Laval, Québec, QC, Canada G1V 0A6.
Centre de Recherche en Organogénèse Expérimentale de l'Université Laval/ LOEX, Québec, QC, Canada G1J 1Z4 ; Division of Regenerative Medicine, CHU de Québec Research Centre, Quebec, QC, Canada G1J 1Z4.
Biomed Res Int. 2015;2015:630461. doi: 10.1155/2015/630461. Epub 2015 Feb 19.
Angiogenesis is a fundamental process in healing, tumor growth, and a variety of medical conditions. For this reason, in vitro angiogenesis is an area of interest for researchers. Additionally, in vitro angiogenesis is important for the survival of prevascularized tissue-engineering models. The aim of this study was to observe the self-tubular organization behaviour of endothelial cells in the self-assembly method. In this study, bilayered and dermal substitutes were prepared using the self-assembly method. Histological, immunostaining, and biochemical tests were performed. The behavioural dynamics of endothelial cells in this biological environment of supportive cells were observed, as were the steps of the in vitro angiogenic cascade with self-organizing capillary-like structures formation. The epidermal component of the substitutes was seen to promote network expansion and density. It also increased the quantity of angiogenic factors (VEGF and Ang-1) without increasing the proinflammatory factor (IL-8). In addition, the increased MMP activity contributed to matrix degradation, which facilitated capillary formation.
血管生成是愈合、肿瘤生长及多种医学病症中的一个基本过程。因此,体外血管生成是研究人员感兴趣的领域。此外,体外血管生成对于预血管化组织工程模型的存活很重要。本研究的目的是观察内皮细胞在自组装方法中的自管状组织行为。在本研究中,采用自组装方法制备了双层和真皮替代物。进行了组织学、免疫染色和生化测试。观察了内皮细胞在这种支持细胞生物环境中的行为动态,以及形成自组织毛细血管样结构的体外血管生成级联步骤。替代物的表皮成分被发现可促进网络扩展和密度增加。它还增加了血管生成因子(VEGF和Ang-1)的数量,而不增加促炎因子(IL-8)。此外,MMP活性的增加有助于基质降解,从而促进毛细血管形成。