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首页> 外文期刊>Tissue engineering, Part A >Effect of micro- and macroporosity of bone tissue three-dimensional-poly(epsilon-caprolactone) scaffold on human mesenchymal stem cells invasion, proliferation, and differentiation in vitro.
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Effect of micro- and macroporosity of bone tissue three-dimensional-poly(epsilon-caprolactone) scaffold on human mesenchymal stem cells invasion, proliferation, and differentiation in vitro.

机译:骨骼组织三维聚(ε-己内酯)支架的微孔和大孔对人间充质干细胞体外侵袭,增殖和分化的影响。

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摘要

The design of porous scaffolds able to promote and guide cell proliferation, colonization, and biosynthesis in three dimensions is key determinant in bone tissue engineering (bTE). The aim of this study was to assess the role of the micro-architecture of poly(epsilon-caprolactone) scaffolds in affecting human mesenchymal stem cells' (hMSCs) spatial organization, proliferation, and osteogenic differentiation in vitro. Poly(epsilon-caprolactone) scaffolds for bTE and characterized by mono-modal and bi-modal pore size distributions were prepared by the combination of gas foaming and selective polymer extraction from co-continuous blends. The topological properties of the pore structure of the scaffolds were analyzed and the results correlated with the ability of hMSCs to proliferate, infiltrate, and differentiate in vitro in three dimensions. Results showed that the micro-architecture of the pore structure of the scaffolds plays a crucial role in defining cell seeding efficiency as well as hMSCs' three-dimensional colonization, proliferation, and osteogenic differentiation. Taken all together, our results indicated that process technologies able to allow a fine-tune of the topological properties of biodegradable porous scaffolds are essential for bTE strategies.
机译:能够在三个维度上促进和指导细胞增殖,定植和生物合成的多孔支架的设计是骨组织工程学(bTE)的关键决定因素。这项研究的目的是评估聚(ε-己内酯)支架的微体系结构在体外影响人间充质干细胞(hMSCs)的空间组织,增殖和成骨分化的作用。通过气体发泡和从共连续共混物中选择性提取聚合物的组合,制备了用于bTE并具有单峰和双峰孔径分布特征的聚(ε-己内酯)支架。分析了支架孔结构的拓扑特性,其结果与hMSC在三个维度上体外增殖,浸润和分化的能力有关。结果表明,支架孔结构的微结构在定义细胞接种效率以及hMSCs的三维定植,增殖和成骨分化中起着至关重要的作用。综上所述,我们的结果表明,能够对生物可降解多孔支架的拓扑特性进行微调的工艺技术对于bTE策略至关重要。

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