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Milieu for Endothelial Differentiation of Human Adipose-Derived Stem Cells

机译:Milieu用于人类脂肪干细胞的内皮细胞分化

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Human adipose-derived stem cells (hASCs) have been shown to differentiate down many lineages including endothelial lineage. We hypothesized that hASCs would more efficiently differentiate toward the endothelial lineage when formed as three-dimensional (3D) spheroids and with the addition of vascular endothelial growth factor (VEGF). Three conditions were tested: uncoated tissue culture polystyrene (TCPS) surfaces that induced a 2D monolayer formation; elastin-like polypeptide (ELP)-collagen composite hydrogel scaffolds that induced encapsulated 3D spheroid culture; and ELP-polyethyleneimine-coated TCPS surfaces that induced 3D spheroid formation in scaffold-free condition. Cells were exposed to endothelial differentiation medium containing no additional VEGF or 20 and 50 ng/mL of VEGF for 7 days and assayed for viability and endothelial differentiation markers. While endothelial differentiation media supported endothelial differentiation of hASCs, our 3D spheroid cultures augmented this differentiation and produced more von Willebrand factor than 2D cultures. Likewise, 3D cultures were able to uptake LDL, whereas the 2D cultures were not. Higher concentrations of VEGF further enhanced differentiation. Establishing angiogenesis is a key factor in regenerative medicine. Future studies aim to elucidate how to produce physiological changes such as neoangiogenesis and sprouting of vessels which may enhance the survival of regenerated tissues.
机译:人类脂肪干细胞(hASCs)已被证明可以分化许多谱系,包括内皮谱系。我们假设当hASCs形成为三维(3D)球体并添加血管内皮生长因子(VEGF)时,它们将更有效地向内皮谱系分化。测试了三个条件:诱导2D单层形成的未涂层组织培养聚苯乙烯(TCPS)表面;弹性蛋白样多肽(ELP)-胶原蛋白复合水凝胶支架,可诱导封装的3D球体培养;和ELP-聚乙烯亚胺涂层的TCPS表面在无支架的情况下诱导3D球体形成。将细胞暴露于不含额外的VEGF或20和50 ng / mL VEGF的内皮分化培养基中7天,并分析其生存力和内皮分化标志物。尽管内皮细胞分化培养基支持hASCs的内皮细胞分化,但我们的3D球体培养物却增加了这种分化作用,并产生了比2D培养物更多的von Willebrand因子。同样,3D文化可以摄取LDL,而2D文化则不能。较高浓度的VEGF进一步增强了分化。建立血管生成是再生医学的关键因素。未来的研究旨在阐明如何产生生理变化,例如新血管生成和血管发芽,从而可以提高再生组织的存活率。

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