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A self-assembled fibroblast-endothelial cell co-culture system that supports in vitro vasculogenesis by both human umbilical vein endothelial cells and human dermal microvascular endothelial cells.

机译:一种自组装的成纤维细胞-内皮细胞共培养系统,支持人脐静脉内皮细胞和人皮肤微血管内皮细胞进行体外血管生成。

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摘要

The construction of vascularized connective tissues is an important goal in tissue engineering in that the presence of a patent bio-engineered vasculature should facilitate vascularization of an implant. Fibroblasts play an essential role in the angiogenic process through their production of extracellular matrix molecules and through their release of essential growth factors. Therefore, the aim of this study is to develop a thin 3-dimensional model in which fibroblasts support endothelial cells in the formation of tube-like structures. Macro- and microvascular endothelial cells were seeded onto confluent lawns of human fibroblasts and were cultured in the presence of high levels of ascorbate 2-phosphate to create a tissue-like structure in which endothelial cell organized into tube-like structures. The process was visualized in the culture dish through labeling of cells with a long-lasting fluorescent vital dye. Intact sheet-like structures were created in which endothelial cell tube-like structures were encased by fibroblasts and were surrounded by a basement membrane. These structures appeared to contain a lumen and remained stable for up to 5 weeks in culture. This culture system provides an in vitro method to study fibroblast-endothelial cell interactions and to study the effects of pro- and anti-angiogenic factors on endothelial cell differentiation. This system also provides an experimental basis for developing vascularized tissue-engineered connective tissue.
机译:血管化结缔组织的构建是组织工程中的重要目标,因为存在专利的生物工程化脉管系统应有助于植入物的血管化。成纤维细胞通过产生细胞外基质分子并释放必需的生长因子,在血管生成过程中起着至关重要的作用。因此,本研究的目的是建立薄的3维模型,其中成纤维细胞支持内皮细胞形成管状结构。将大血管和微血管内皮细胞接种到人成纤维细胞的融合草坪上,并在高水平抗坏血酸2-磷酸酯存在下培养,以创建组织样结构,其中内皮细胞组织成管状结构。通过用长效荧光重要染料标记细胞,可以在培养皿中看到该过程。形成完整的片状结构,其中内皮细胞管状结构被成纤维细胞包裹并被基底膜包围。这些结构似乎含有内腔,并且在培养过程中最多可以保持稳定5周。该培养系统提供了一种体外方法,用于研究成纤维细胞-内皮细胞之间的相互作用以及研究促血管生成因子和抗血管生成因子对内皮细胞分化的影响。该系统还为开发血管化组织工程结缔组织提供了实验基础。

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