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首页> 外文期刊>Macromolecular Research >Enzymatically Crosslinkable Hyaluronic Acid-Gelatin Hybrid Hydrogels as Potential Bioinks for Tissue Regeneration
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Enzymatically Crosslinkable Hyaluronic Acid-Gelatin Hybrid Hydrogels as Potential Bioinks for Tissue Regeneration

机译:酶促可交联的透明质酸 - 明胶杂交水凝胶作为组织再生的潜在生殖器

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Hydrogels that mimic the composition and properties of the extracellular matrix have attracted great attention as potential polymeric scaffolds for tissue engineering applications. In this study, an injectable hydrogel composed of hyaluronic acid and gelatin was developed via the oxidative coupling reaction using horseradish peroxidase (HRP). The hydrogel was prepared by mixing two phenol-conjugated polymer solutions, hyaluronic acid-tyramine (HA-TA) and gelatin-hydroxyphenyl propionic acid (GH), in the presence of HRP and hydrogen peroxide (H(2)0(2)). The gelation rate and mechanical properties of composite hydrogel were controlled by adjusting the HRP and H(2)0(2) concentrations, respectively Compared to the pure HA-TA hydrogels, the stability and cellular behaviors of composite hydrogel improved significantly In addition, the injectable hydrogel system showed good performance in 3D printing with high cell viability after one day of printing. The results suggest that enzymatically crosslinked HA-TA and GH hybrid (HA-TA/GH) composite of HA-TA and GH hydrogel has the potential as a material for tissue engineering and 3D printing biofabrication.
机译:用于模拟细胞外基质的组成和性质的水凝胶吸引了由于用于组织工程应用的潜在聚合物支架而受到极大的关注。在该研究中,通过使用辣根过氧化物酶(HRP)通过氧化偶联反应产生一种由透明质酸和明胶组成的可注射水凝胶。通过混合两种酚缀合的聚合物溶液,透明质酸 - 酪胺(HA-TA)和明胶 - 羟基苯基丙酸(GH),在HRP和过氧化氢(H(2)0(2))的存在下制备水凝胶。通过调节HRP和H(2)0(2)浓度来控制复合水凝胶的凝胶化速率和机械性能,分别与纯HA-TA水凝胶相比,复合水凝胶的稳定性和细胞行为显着提高了显着改善可注射水凝胶系统在印刷一天后具有高电池活力的3D印刷中表现出良好的性能。结果表明,HA-TA和GH水凝胶的酶促交联的HA-TA和GH杂种(HA-TA / GH)复合材料具有作为组织工程和3D印刷生物制作的材料的潜力。

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