首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Degradation of polysaccharide hydrogels seeded with bone marrow stromal cells.
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Degradation of polysaccharide hydrogels seeded with bone marrow stromal cells.

机译:植入骨髓基质细胞的多糖水凝胶的降解。

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In order to produce hydrogel cell culture substrates that are fit for the purpose, it is important that the mechanical properties are well understood not only at the point of cell seeding but throughout the culture period. In this study the change in the mechanical properties of three biopolymer hydrogels alginate, low methoxy pectin and gellan gum have been assessed in cell culture conditions. Samples of the gels were prepared encapsulating rat bone marrow stromal cells which were then cultured in osteogenic media. Acellular samples were also prepared and incubated in standard cell culture media. The rheological properties of the gels were measured over a culture period of 28 days and it was found that the gels degraded at very different rates. The degradation occurred most rapidly in the order alginate > Low methoxy pectin > gellan gum. The ability of each hydrogel to support differentiation of bone marrow stromal cells to osteoblasts was also verified by evidence of mineral deposits in all three of the materials. These results highlight that the mechanical properties of biopolymer hydrogels can vary greatly during in vitro culture, and provide the potential of selecting hydrogel cell culture substrates with mechanical properties that are tissue specific.
机译:为了生产适合此目的的水凝胶细胞培养底物,重要的是,不仅在细胞接种时而且在整个培养期间都必须充分了解机械性能。在这项研究中,已在细胞培养条件下评估了三种生物聚合物水凝胶藻酸盐,低甲氧基果胶和结冷胶的机械性能变化。制备凝胶样品,包封大鼠骨髓基质细胞,然后在成骨培养基中培养。还制备无细胞样品,并在标准细胞培养基中孵育。在28天的培养期内测量了凝胶的流变性质,发现凝胶以非常不同的速率降解。降解发生最快的顺序是藻酸盐>低甲氧基果胶>吉兰糖胶。每个水凝胶支持骨髓基质细胞向成骨细胞分化的能力也通过所有三种材料中矿物质沉积的证据得到证实。这些结果表明,生物聚合物水凝胶的机械性能在体外培养过程中会发生很大变化,并提供了选择具有组织特异性机械性能的水凝胶细胞培养底物的潜力。

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