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Preparation and Characterization of HA/Gel/β-TCP Microspheres Composite Porous Scaffold

机译:HA /凝胶/β-TCP微球复合多孔支架的制备与表征

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Being one of the three elements of tissue engineering, three-dimensional porous structure scaffold plays an important role in tissue engineering. As it not only provide cells for the life, but also serves as a template to guide tissue regeneration and control of organizational structure and other functions. In this study, hyaluronic acid and gelatin are successfully cross-linked by 1-ethyl-β-dimethylaminopropyl) -carbodiimide hydrochloride (EDC), and compoundβ-TCP microspheres to prepare porous hydrogel scaffolds. The microspheres were analyzed by X-ray diffraction (XRD). The scaffolds were characterized by scanning electron microscopy (SEM) and Fourier transform infrared spectroscopy (FTIR). At the same time, the compressive strength, swelling ratio, degradation of the scaffold were tested. To assess the in vitro cell compatibility of the scaffolds, mouse L929 fibroblasts were seeded onto scaffolds for cell morphology and cell viability studies. The results showed that the pore size of the porous scaffold can be adjusted by changing the ratio of gelatin to hyaluronic acid (HA), increasing the proportion of hyaluronic acid in a certain range, pore size will be significantly increased. With the increase of the proportion of hyaluronic acid in the scaffold, the swelling ratio and the degradation rate also increased. The compressive strength of the scaffold increased with the increase of the proportion of gelatin. The appropriate ratio of β-TCP can promote cell growth and proliferation.
机译:作为组织工程的三个元素之一,三维多孔结构支架在组织工程中起重要作用。因为它不仅为生命提供细胞,而且还用作指导组织再生和控制组织结构和其他功能的模板。在该研究中,透明质酸和明胶成功地通过1-乙基-β-二甲基氨基丙基(EDC)和化合物β-TCP微球成功交联,以制备多孔水凝胶支架。通过X射线衍射(XRD)分析微球。通过扫描电子显微镜(SEM)和傅里叶变换红外光谱(FTIR),表征支架。同时,测试压缩强度,溶胀比,支架的降解。为了评估支架的体外细胞相容性,将小鼠L929成纤维细胞接种到用于细胞形态和细胞活力研究的支架上。结果表明,通过将明胶与透明质酸(HA)的比例改变,可以调节多孔支架的孔径,从一定范围内增加透明质酸的比例,孔径将显着增加。随着支架中透明质酸比例的增加,溶胀比率和降解率也增加。支架的抗压强度随比明胶比例的增加而增加。 β-TCP的适当比率可以促进细胞生长和增殖。

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