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首页> 外文期刊>Journal of Materials Chemistry, B. materials for biology and medicine >Gellan gum microgel-reinforced cell-laden gelatin hydrogels
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Gellan gum microgel-reinforced cell-laden gelatin hydrogels

机译:结冷胶微凝胶增强的载有细胞的明胶水凝胶

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摘要

The relatively weak mechanical properties of hydrogels remain a major drawback for their application as load-bearing tissue scaffolds. Previously, we developed cell-laden double-network (DN) hydrogels that were composed of photocrosslinkable gellan gum (GG) and gelatin. Further research into the materials as tissue scaffolds determined that the strength of the DN hydrogels decreased when they were prepared at cell-compatible conditions, and the encapsulated cells in the DN hydrogels did not function as well as they did in gelatin hydrogels. In this work, we developed microgel-reinforced (MR) hydrogels from the same two polymers, which have better mechanical strength and biological properties in comparison to the DN hydrogels. The MR hydrogels were prepared by incorporating stiff GG microgels into soft and ductile gelatin hydrogels. The MR hydrogels prepared at cell-compatible conditions exhibited higher strength than the DN hydrogels and the gelatin hydrogels, the highest strength being 2.8 times that of the gelatin hydrogels. MC3T3-E1 preosteoblasts encapsulated in MR hydrogels exhibited as high metabolic activity as in gelatin hydrogels, which is significantly higher than that in the DN hydrogels. The measurement of alkaline phosphatase (ALP) activity and the amount of mineralization showed that osteogenic behavior of MC3T3-E1 cells was as much facilitated in the MR hydrogels as in the gelatin hydrogels, while it was not as much facilitated in the DN hydrogels. These results suggest that the MR hydrogels could be a better alternative to the DN hydrogels and have great potential as load-bearing tissue scaffolds.
机译:水凝胶相对较弱的机械性能仍然是其作为承重组织支架的主要缺点。以前,我们开发了充满细胞的双网络(DN)水凝胶,该凝胶由可光交联的吉兰糖胶(GG)和明胶组成。对作为组织支架的材料的进一步研究表明,在细胞相容条件下制备DN水凝胶时,其强度会降低,并且DN水凝胶中包封的细胞的功能不如明胶水凝胶中的细胞。在这项工作中,我们用相同的两种聚合物开发了微凝胶增强(MR)水凝胶,与DN水凝胶相比,它们具有更好的机械强度和生物学特性。 MR水凝胶是通过将硬质GG微凝胶掺入柔软而易延展的明胶水凝胶中来制备的。在细胞相容性条件下制备的MR水凝胶比DN水凝胶和明胶水凝胶显示出更高的强度,最高强度是明胶水凝胶的2.8倍。包裹在MR水凝胶中的MC3T3-E1前成骨细胞具有与明胶水凝胶一样高的代谢活性,远高于DN水凝胶。碱性磷酸酶(ALP)活性和矿化量的测量结果表明,MR水凝胶对MC3T3-E1细胞的成骨行为的促进程度与明胶水凝胶一样,而DN水凝胶则不那么明显。这些结果表明,MR水凝胶可能是DN水凝胶的更好替代品,并具有作为承重组织支架的巨大潜力。

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