首页> 外文期刊>In Vitro Cellular and Developmental Biology. Animal: Journal of the Tissues Culture Association >Recellularization potential assessment of Wharton's Jelly-derived endothelial progenitor cells using a human fetal vascular tissue model
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Recellularization potential assessment of Wharton's Jelly-derived endothelial progenitor cells using a human fetal vascular tissue model

机译:使用人类胎儿血管组织模型评估沃顿氏胶冻源性内皮祖细胞的再细胞化潜力

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Mesenchymal stem cells isolated from Wharton's Jelly have demonstrated an excellent differentiation potential into the endothelial lineage. We hypothesize that endothelial progenitor cells differentiated from Wharton's Jelly-derived mesenchymal stem cells have the potential to repopulate a decellularized vascular bed employed as a biological scaffold. For this purpose, we aimed at investigating the behavior of the endothelial progenitor cells in the decellularized matrix and their potential to repopulate decellularized human vascular tissue. Our main objectives were to differentiate Wharton's Jelly-derived mesenchymal stem cells into endothelial progenitor cells and to obtain a human vascular tissue slice experimental model using the umbilical cord arteries. We employed a decellularization method using enzymatic treatment of the umbilical cord arteries and a recellularization method with the endothelial progenitor cells differentiated from Wharton's Jelly mesenchymal cells in a co-culture system, in order to investigate our hypothesis. The cellular integration within the biological scaffold was determined by using flow cytometry analysis and confirmed by visualization of histological staining as well as fluorescence microscopy. The morphological observations of the recellularized scaffolds revealed the presence of endothelial progenitor cells within the decellularized tissue slices, displaying no degradation of the scaffold's extracellular matrix. The flow cytometry analysis revealed the presence of Wharton's Jelly-derived endothelial progenitor cells population in the decellularized fetal blood vessel scaffold after recellularization. In conclusion, our results have shown that an in vitro human vascular tissue slice experimental model using decellularized human fetal arteries is able to sustain an adequate scaffold for cellular implants.
机译:从沃顿氏胶冻分离的间充质干细胞已显示出极好的分化潜能,可分化为内皮细胞。我们假设,从沃顿商学院的果冻来源的间充质干细胞中分化出来的内皮祖细胞具有重新组装用作生物支架的脱细胞血管床的潜力。为此,我们旨在研究内皮祖细胞在脱细胞基质中的行为及其在脱细胞人类血管组织中重新繁殖的潜力。我们的主要目标是将沃顿氏胶冻来源的间充质干细胞分化为内皮祖细胞,并使用脐带动脉获得人体血管组织切片实验模型。为了研究我们的假设,我们采用了酶促处理脐带动脉的脱细胞方法和将内皮祖细胞与沃顿氏胶质间充质细胞区分开的内皮祖细胞进行再细胞化的方法,以研究我们的假设。通过使用流式细胞术分析确定生物支架内的细胞整合,并通过组织学染色和荧光显微镜的可视化证实。对重新细胞化的支架的形态学观察表明,在去细胞的组织切片中存在内皮祖细胞,未显示支架的细胞外基质的降解。流式细胞仪分析揭示了脱细胞后的脱细胞胎儿血管支架中存在沃顿氏胶冻来源的内皮祖细胞群。总之,我们的结果表明,使用脱细胞的人胎动脉的体外人血管组织切片实验模型能够维持足够的细胞植入支架。

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