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Nanotopographical cues augment mesenchymal differentiation of human embryonic stem cells

机译:纳米地形学提示增强人类胚胎干细胞的间充质分化

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摘要

The production of bone-forming osteogenic cells for research purposes or transplantation therapies remains a significant challenge. Using planar polycarbonate substrates lacking in topographical cues and substrates displaying a nanotopographical pattern, mesenchymal differentiation of human embryonic stem cells is directed in the absence of chemical factors and without induction of differentiation by embryoid body formation. Cells incubated on nanotopographical substrates show enhanced expression of mesenchymal or stromal markers and expression of early osteogenic progenitors at levels above those detected in cells on planar substrates in the same basal media. Evidence of epithelial-to-mesenchymal transition during substrate differentiation and DNA methylation changes akin to chemical induction are also observed. These studies provide a suitable approach to overcome regenerative medical challenges and describe a defined, reproducible platform for human embryonic stem cell differentiation.
机译:用于研究目的或移植疗法的成骨成骨细胞的生产仍然是一项重大挑战。使用缺乏地形学线索的平面聚碳酸酯基底和显示​​出纳米地形图样的基底,在没有化学因素的情况下指导人胚胎干细胞的间充质分化,并且没有通过类胚体形成诱导分化。在纳米形底物上孵育的细胞显示,间充质或基质标记物的表达增强,早期成骨祖细胞的表达水平高于在相同基础培养基中的平面底物上的细胞中检测到的水平。还观察到在底物分化和DNA甲基化变化类似于化学诱导过程中上皮向间充质转变的证据。这些研究提供了克服再生医学挑战的合适方法,并描述了人类胚胎干细胞分化的定义的,可再现的平台。

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