首页> 外文期刊>Cell transplantation >Hydrogel-coated textile scaffolds as three-dimensional growth support for human umbilical vein endothelial cells (HUVECs): possibilities as coculture system in liver tissue engineering.
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Hydrogel-coated textile scaffolds as three-dimensional growth support for human umbilical vein endothelial cells (HUVECs): possibilities as coculture system in liver tissue engineering.

机译:水凝胶涂层的纺织支架作为人脐静脉内皮细胞(HUVEC)的三维生长支持:在肝组织工程中作为共培养系统的可能性。

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Three-dimensional (3-D) scaffolds offer an exciting possibility to develop cocultures of various cell types. Here we report chitosan-collagen hydrogel-coated fabric scaffolds with defined mesh size and fiber diameter for 3-D culture of human umbilical vein endothelial cells (HUVECs). These scaffolds did not require precoating with fibronectin and they supported proper HUVEC attachment and growth. Scaffolds preserved endothelial cell-specific cobblestone morphology and cells were growing in compartments defined by the textile mesh. HUVECs on the scaffold maintained the property of contact inhibition and did not exhibit overgrowth until the end of in vitro culture (day 6). MTT assay showed that cells had preserved mitochondrial functionality. It was also noted that cell number on the chitosan-coated scaffold was lower than that of collagen-coated scaffolds. Calcein AM and ethidium homodimer (EtD-1) dual staining demonstrated presence of viable and metabolically active cells, indicating growth supportive properties of the scaffolds. Actin labeling revealed absence of actin stress fibers and uniform distribution of F-actin in the cells, indicating their proper attachment to the scaffold matrix. Confocal microscopic studies showed that HUVECs growing on the scaffold had preserved functionality as seen by expression of von Willebrand (vW) factor. Observations also revealed that functional HUVECs were growing at various depths in the hydrogel matrix, thus demonstrating the potential of these scaffolds to support 3-D growth of cells. We foresee the application of this scaffold system in the design of liver bioreactors wherein hepatocytes could be cocultured in parallel with endothelial cells to enhance and preserve liver-specific functions.
机译:三维(3-D)支架为开发各种细胞类型的共培养物提供了令人兴奋的可能性。在这里我们报告壳聚糖胶原水凝胶涂层的织物支架具有定义的网眼大小和纤维直径的人脐静脉内皮细胞(HUVECs)的3-D培养。这些支架不需要预先用纤连蛋白包被,它们支持适当的HUVEC附着和生长。支架保留了内皮细胞特异的鹅卵石形态,并且细胞在由纺织网限定的隔室中生长。支架上的HUVEC保持接触抑制的特性,直到体外培养结束(第6天)才显示出过度生长。 MTT测定显示细胞保留了线粒体功能。还注意到,壳聚糖包被的支架上的细胞数量低于胶原蛋白包被的支架上的细胞数量。钙黄绿素AM和乙锭均二聚体(EtD-1)双重染色证明存在活泼和代谢活跃的细胞,表明支架的生长支持特性。肌动蛋白标记显示缺乏肌动蛋白应激纤维和F-肌动蛋白在细胞中的均匀分布,表明它们正确附着在支架基质上。共聚焦显微镜研究表明,生长在支架上的HUVECs保留了功能,如von Willebrand(vW)因子的表达所见。观察结果还表明,功能性HUVEC在水凝胶基质中的不同深度处生长,因此证明了这些支架支持细胞3-D生长的潜力。我们预见该支架系统在肝生物反应器设计中的应用,其中肝细胞可与内皮细胞平行共培养以增强和保留肝特异性功能。

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