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首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Effect of flow perfusion on the osteogenic differentiation of bone marrow stromal cells cultured on starch-based three-dimensional scaffolds
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Effect of flow perfusion on the osteogenic differentiation of bone marrow stromal cells cultured on starch-based three-dimensional scaffolds

机译:血流灌注对淀粉基三维支架培养的骨髓基质细胞成骨分化的影响

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This study aims to investigate the effect of culturing conditions (static and flow perfusion) on the proliferation and osteogenic differentiation of rat bone marrow stromal cells seeded on two novel scaffolds exhibiting distinct porous structures. Specifically, scaffolds based on SEVA-C (a blend of starch with ethylene vinyl alcohol) and SPCL (a blend of starch with polycaprolactone) were examined in static and flow perfusion culture. SEVA-C scaffolds were formed using an extrusion process, whereas SPCL scaffolds were obtained by a fiber bonding process. For this purpose, these scaffolds were seeded with marrow stromal cells harvested from femoras and tibias of Wistar rats and cultured in a flow perfusion bioreactor and in 6-well plates for 3, 7, and 15 days. The proliferation and alkaline phosphatase activity patterns were similar for both types of scaffolds and for both culture conditions. However, calcium content analysis revealed a significant enhancement of calcium deposition on both scaffold types cultured under flow perfusion. This observation was confirmed by Von Kossa-stained sections and tetracycline fluorescence. Histological analysis and confocal images of the cultured scaffolds showed a much better distribution of cells within the SPCL scaffolds than the SEVA-C scaffolds, which had limited pore interconnectivity, under flow perfusion conditions. In the scaffolds cultured under static conditions, only a surface layer of cells was observed. These results suggest that flow perfusion culture enhances the osteogenic differentiation of marrow stromal cells and improves their distribution in three-dimensional, starch-based scaffolds. They also indicate that scaffold architecture and especially pore interconnectivity affect the homogeneity of the formed tissue.
机译:本研究旨在研究培养条件(静态和血流灌注)对接种在两种表现出明显多孔结构的新型支架上的大鼠骨髓基质细胞增殖和成骨分化的影响。具体而言,在静态和流动灌注培养中检查了基于SEVA-C(淀粉与乙烯乙烯醇的混合物)和SPCL(淀粉与聚己内酯的混合物)的支架。 SEVA-C支架是通过挤压工艺形成的,而SPCL支架是通过纤维粘合工艺获得的。为此,这些支架上植入了从Wistar大鼠股骨和胫骨收获的骨髓基质细胞,并在流动灌注生物反应器和6孔板中培养3、7和15天。两种类型的支架和两种培养条件下的增殖和碱性磷酸酶活性模式均相似。然而,钙含量分析显示两种类型的支架在血流灌注下的钙沉积显着增强。冯·科萨(Von Kossa)染色切片和四环素荧光证实了这一观察结果。组织学分析和共聚焦图像显示,在流动灌注条件下,SPCL支架内的细胞分布比SEVA-C支架好,SEVA-C支架具有有限的孔连通性。在静态条件下培养的支架中,仅观察到细胞的表面层。这些结果表明流动灌注培养增强了骨髓基质细胞的成骨分化,并改善了它们在三维淀粉基支架中的分布。他们还表明,支架结构,尤其是孔的互连性会影响所形成组织的均质性。

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