首页> 美国卫生研究院文献>Tissue Engineering. Part A >A Combination of Biphasic Calcium Phosphate Scaffold with Hyaluronic Acid-Gelatin Hydrogel as a New Tool for Bone Regeneration
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A Combination of Biphasic Calcium Phosphate Scaffold with Hyaluronic Acid-Gelatin Hydrogel as a New Tool for Bone Regeneration

机译:双相磷酸钙支架与透明质酸-明胶水凝胶的组合作为骨再生的新工具

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摘要

A novel bone substitute was fabricated to enhance bone healing by combining ceramic and polymer materials. In this study, Hyaluronic acid (HyA)–Gelatin (Gel) hydrogel was loaded into a biphasic calcium phosphate (BCP) ceramic, and the resulting scaffold, with unique micro- and macroporous orientation, was evaluated for bone regeneration applications. The fabricated scaffold showed high interconnected porosity, with an average compressive strength of 2.8±0.15 MPa, which is usually recommended for cancellous bone substitution. In vitro cytocompatibility studies were conducted using bone marrow mesenchymal stem cells. The HyA-Gel–loaded BCP scaffold resulted in a significant increase in cell proliferation at 3 (p<0.05) and 7 days (p<0.001) and high alkaline phosphatase activities at 14 and 21 days. Furthermore, the in vivo studies showed that the implanted HyA-Gel–loaded BCP scaffold begins to degrade within 3 months after implantation. Histological sections also confirmed a rapid new bone formation and a high rate of collagen mineralization. A bone matrix formation was confirmed by positive immunohistochemistry staining of osteopontin, osteocalcin, and collagen type I. In vivo expression of extracellular matrix proteins demonstrated that this novel bone substitute holds great promise for use in stimulating new bone regeneration.
机译:制造了一种新型的骨替代物,通过结合陶瓷和聚合物材料来增强骨愈合。在这项研究中,将透明质酸(HyA)-明胶(Gel)水凝胶加载到双相磷酸钙(BCP)陶瓷中,并对所得的具有独特的微孔和大孔取向的支架进行骨再生应用进行了评估。制成的脚手架显示出很高的互连孔隙率,平均抗压强度为2.8±0.15 MPa,通常推荐用于松质骨替代。使用骨髓间充质干细胞进行了体外细胞相容性研究。装有HyA-Gel的BCP支架在3天(p <0.05)和7天(p <0.001)导致细胞增殖显着增加,在14天和21天时碱性磷酸酶活性较高。此外,体内研究表明,植入HyA-Gel的BCP支架在植入后3个月内开始降解。组织学切片还证实了快速的新骨形成和高的胶原矿化率。骨桥蛋白,骨钙素和I型胶原蛋白的阳性免疫组织化学染色证实了骨基质的形成。细胞外基质蛋白的体内表达表明,这种新型骨替代物在刺激新的骨再生方面具有广阔的前景。

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