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首页> 外文期刊>Journal of Applied Polymer Science >Morphology of crosslinked hyaluronic acid porous hydrogels
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Morphology of crosslinked hyaluronic acid porous hydrogels

机译:交联的透明质酸多孔水凝胶的形态

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Hydrogels, based on hyaluronic acid or hyaluronan (HA), are gaining attention as possible cell-scaffolding materials for the regeneration of a variety of tissues. This article describes how HA, a naturally occurring polymer, has been crosslinked to reduce its degradation rate and freeze dried to produce porous materials suitable for tissue engineering. The resulting pore architecture has been assessed as a function of freezing temperature and freezing rate, type of crosslinkers, and methods used in the crosslinking process. On comparing the average densities of crosslinked and uncrosslinked scaffolds, it is apparent that the chemical modification increases sponge density and wall thickness of the pores while decreasing the pore size. The mechanical response of the modified materials has been investigated by equilibrium-swelling measurements and compression tests. These materials have an average pore size ranging from 167 to 215 μm, which suggests that they would be a suitable temporary site for cell proliferation. The materials exhibit moderate mechanical integrity and are expected to be capable of withstanding physiological stresses in vivo.
机译:基于透明质酸或透明质酸(HA)的水凝胶作为细胞支架材料在各种组织再生中的应用正受到关注。本文介绍了HA(一种天然存在的聚合物)如何进行交联以降低其降解速率并冷冻干燥以生产适用于组织工程的多孔材料。已经评估了所得的孔结构是冷冻温度和冷冻速率,交联剂类型以及在交联过程中使用的方法的函数。在比较交联和未交联的支架的平均密度时,显然化学修饰增加了海绵的密度和孔的壁厚,同时减小了孔径。改性材料的机械响应已通过平衡溶胀测量和压缩测试进行了研究。这些材料的平均孔径为167至215μm,这表明它们将是细胞增殖的合适临时位置。这些材料表现出适度的机械完整性,并有望在体内承受生理压力。

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