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首页> 外文期刊>Journal of Biomimetics, Biomaterials, and Biomedical Engineering >Freeze-thawed hybridized preparation with biomimetic self-assembly for a polyvinyl alcohol/collagen hydrogel created for meniscus tissueengineering
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Freeze-thawed hybridized preparation with biomimetic self-assembly for a polyvinyl alcohol/collagen hydrogel created for meniscus tissueengineering

机译:用于仿生半月板组织工程的聚乙烯醇/胶原水凝胶的仿生自组装冻融杂交制剂

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摘要

Freeze-thawed hybridized preparation and the biomimetic self-assembly technique were used to fabricate hydrogel as tissue engineered scaffolds for meniscus tissue. Because of the advantages of both techniques, they were hybridized together as an interesting preparation for hydrogel. Three molecular weights (high, medium, and low) of PVA were prepared in a biomimetic solution before formation into hydrogel by freeze-thawing. The most suitable molecular weight PVA for hydrogel formation was chosen tobe mixed with collagen. PVA, PVA/colIagen, and collagen were prepared in biomimetic solutions and freeze-thawed into hydrogels. The hydrogels were analyzed and characterized by FTIR, DSC, and SEM. FTIR characterization indicated that high molecular weight PVA formed molecular interaction better than the other molecular weights, and PVA molecules formed molecular interaction with collagen molecules via -OH and C=0 groups. DSC characterization showed that the hybridized preparation of freeze-thawing and biomimetic self-assembly kept the characteristics of PVA and collagen. SEM analysis demonstrated that the morphological formation of PVA/collagen was hybridized during freeze-thawing and collagen self-assembly. The morphological structure was organized into a porous network structure. The porous structure showed a rough wall that was formed by the hybridized structure of the crystal domain dispersed in amorphous and collagen self-assembly.
机译:冻融的杂交制备物和仿生自组装技术被用来制造水凝胶,作为半月板组织的组织工程支架。由于两种技术的优点,它们被杂交在一起作为水凝胶的有趣制备方法。在仿生溶液中制备三种分子量(高,中和低)的PVA,然后通过冻融形成水凝胶。选择最适合形成水凝胶的分子量PVA与胶原蛋白混合。在仿生溶液中制备PVA,PVA /胶原蛋白和胶原蛋白,然后将其冻融成水凝胶。通过FTIR,DSC和SEM对水凝胶进行分析和表征。 FTIR表征表明,高分子量PVA形成的分子相互作用优于其他分子量,并且PVA分子通过-OH和C = 0基团与胶原分子形成分子相互作用。 DSC表征表明,冻融和仿生自组装的杂交制剂保留了PVA和胶原蛋白的特性。 SEM分析表明,PVA /胶原蛋白的形态形成在冻融和胶原自组装过程中发生了杂交。形态结构被组织成多孔网络结构。多孔结构显示出粗糙的壁,该壁是由分散在无定形和胶原自组装中的晶域的杂化结构形成的。

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