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Biological Response to Macroporous Chitosan-Agarose Bone Scaffolds Comprising Mg- and Zn-Doped Nano-Hydroxyapatite

机译:对大孔壳聚糖 - 琼脂糖骨支架的生物反应,包括Mg-和Zn掺杂的纳米羟基磷灰石

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摘要

Modification of implantable scaffolds with magnesium and zinc for improvement of bone regeneration is a growing trend in the engineering of biomaterials. The aim of this study was to synthesize nano-hydroxyapatite substituted with magnesium (Mg2+) (HA-Mg) and zinc (Zn2+) (HA-Zn) ions in order to fabricate chitosan-agarose-hydroxyapatite (HA) scaffolds (chit/aga/HA) with improved biocompatibility. Fabricated biomaterials containing Mg2+ or Zn2+ were tested using osteoblasts and mesenchymal stem cells to determine the effect of incorporated metal ions on cell adhesion, spreading, proliferation, and osteogenic differentiation. The study was conducted in direct contact with the scaffolds (cells were seeded onto the biomaterials) and using fluid extracts of the materials. It demonstrated that incorporation of Mg2+ ions into chit/aga/HA structure increased spreading of the osteoblasts, promoted cell proliferation on the scaffold surface, and enhanced osteocalcin production by mesenchymal stem cells. Although biomaterial containing Zn2+ did not improve cell proliferation, it did enhance type I collagen production by mesenchymal stem cells and extracellular matrix mineralization as compared to cells cultured in a polystyrene well. Nevertheless, scaffolds made of pure HA gave better results than material with Zn2+. Results of the experiments clearly showed that modification of the chit/aga/HA scaffold with Zn2+ did not have any positive impact on cell behavior, whereas, incorporation of Mg2+ ions into its structure may significantly improve biocompatibility of the resultant material, increasing its potential in biomedical applications.
机译:用镁和锌改进植入支架以改善骨再生是生物材料工程中的趋势。本研究的目的是将用镁(Mg2 +)(Ha-Mg)和锌(Zn2 +)(Ha-Zn)离子取代的纳米羟基磷灰石,以制造壳聚糖 - 琼脂糖 - 羟基磷灰石(HA)支架(Chit / Aga /公顷)具有改善的生物相容性。使用成骨细胞和间充质干细胞测试含有Mg2 +或Zn2 +的制造生物材料,以确定掺入金属离子对细胞粘附,扩散,增殖和骨质发生分化的影响。该研究与支架直接接触(将细胞接种到生物材料上)并使用材料的流体提取物。它证明,将Mg2 +离子掺入Chit / Aga / HA结构增加了成骨细胞的扩散,促进了支架表面上的细胞增殖,并通过间充质干细胞增强了骨钙生成。虽然含有Zn2 +的生物材料没有改善细胞增殖,但与在聚苯乙烯阱中培养的细胞相比,通过间充质干细胞和细胞外基质矿化的增强型Ⅰ型胶原蛋白。然而,由纯HA制成的支架比Zn2 +的材料更好地产生了更好的结果。实验结果清楚地表明,用Zn2 +的Chit / Aga / Ha支架的修饰对细胞行为没有任何阳性影响,而Mg2 +离子掺入其结构可以显着提高所得材料的生物相容性,增加其潜力生物医学应用。

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