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Human Endothelial-Like Differentiated Precursor Cells Maintain Their Endothelial Characteristics When Cocultured with Mesenchymal Stem Cell and Seeded onto Human Cancellous Bone

机译:当与间充质干细胞共培养并接种到人松质骨上时,人内皮样分化的前体细胞保持其内皮特性

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Introduction. Cancellous bone is frequently used for filling bone defects in a clinical setting. It provides favourable conditions for regenerative cells such as MSC and early EPC. The combination of MSC and EPC results in superior bone healing in experimental bone healing models.Materials and Methods. We investigated the influence of osteogenic culture conditions on the endothelial properties of early EPC and the osteogenic properties of MSC when cocultured on cancellous bone. Additionally, cell adhesion, metabolic activity, and differentiation were assessed 2, 6, and 10 days after seeding.Results. The number of adhering EPC and MSC decreased over time; however the cells remained metabolically active over the 10-day measurement period. In spite of a decline of lineage specific markers, cells maintained their differentiation to a reduced level. Osteogenic stimulation of EPC caused a decline but not abolishment of endothelial characteristics and did not induce osteogenic gene expression. Osteogenic stimulation of MSC significantly increased their metabolic activity whereas collagen-1αand alkaline phosphatase gene expressions declined. When cocultured with EPC, MSC’s collagen-1αgene expression increased significantly.Conclusion. EPC and MSC can be coculturedin vitroon cancellous bone under osteogenic conditions, and coculturing EPC with MSC stabilizes the latter’s collagen-1αgene expression.
机译:介绍。松质骨通常在临床环境中用于填充骨缺损。它为MSC和早期EPC等再生细胞提供了有利条件。 MSC和EPC的结合可在实验性骨愈合模型中实现卓越的骨愈合。材料和方法。我们研究了成骨培养条件对早期EPC内皮特性和在松质骨上共培养时MSC的成骨特性的影响。此外,在接种后第2、6和10天评估细胞粘附,代谢活性和分化。随时间推移,附着的EPC和MSC数量有所减少;但是,在10天的测量期内,细胞仍具有代谢活性。尽管谱系特异性标志物下降,细胞仍将其分化保持在降低的水平。 EPC的成骨刺激可引起内皮功能下降但不会消失,并且不会诱导成骨基因表达。 MSC的成骨刺激显着增加了它们的代谢活性,而胶原1α和碱性磷酸酶基因表达下降。与EPC共培养时,MSC的胶原1α基因表达显着增加。 EPC和MSC可以在成骨条件下在松质骨的体外共培养,而EPC与MSC的共培养可稳定后者的胶原1α基因表达。

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