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首页> 外文期刊>Acta biomaterialia >Silk fibroin-polyurethane blends: Physical properties and effect of silk fibroin content on viscoelasticity, biocompatibility and myoblast differentiation
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Silk fibroin-polyurethane blends: Physical properties and effect of silk fibroin content on viscoelasticity, biocompatibility and myoblast differentiation

机译:丝素蛋白-聚氨酯共混物:丝素蛋白的物理性质和含量对粘弹性,生物相容性和成肌细胞分化的影响

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摘要

As a way to modify both the physical and biological properties of a highly elastic and degradable polyurethane (PU), silk fibroin (SF) was blended with the PU at differing ratios. With increasing SF content, the tensile strength decreased as did the strain at break; the stiffness increased to around 35 MPa for the highest silk content. C2C12 (a mouse myoblast cell line) cells were used for in vitro experiments and showed significantly improved cell responses with increasing SF content. With increasing SF content the number of non-adherent cells was reduced at both 4 and 8 h compared to the sample with the lowest SF content. In addition, muscle marker genes were upregulated compared to the sample containing no SF, and in particular sarcomeric actin and α-actin.
机译:作为改变高弹性和可降解聚氨酯(PU)的物理和生物学特性的一种方法,将丝素蛋白(SF)与PU以不同的比例混合。随着SF含量的增加,抗拉强度降低,断裂应变也降低。对于最高的丝含量,刚度增加到35 MPa左右。 C2C12(小鼠成肌细胞系)细胞用于体外实验,随着SF含量的增加,细胞反应显着改善。与SF含量最低的样品相比,随着SF含量的增加,在4和8 h时非粘附细胞的数量都减少了。另外,与不含SF,尤其是肌节肌动蛋白和α-肌动蛋白的样品相比,肌肉标志物基因上调。

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