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Bioactive nanocomposite PLDLano-hydroxyapatite electrospun membranes for bone tissue engineering

机译:用于骨组织工程的生物活性纳米复合材料PLDL /纳米羟基磷灰石电纺膜

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摘要

New nanocomposite membranes with high bioactivity were fabricated using the electrospinning. These nanocomposites combine a degradable polymer poly(l/dl)-lactide and bone cell signaling carbonate nano-hydroxyapatite (n-HAp). Chemical and physical characterization of the membranes using scanning electron microscopy, Fourier transform infrared spectroscopy and the wide angle X-ray diffraction evidenced that nanoparticles were successfully incorporated into the fibers and membrane structure. The incorporation of the n-HAp into the structure increased significantly the mineralization of the membrane in vitro. It has been demonstrated that after a 3-day incubation of composite membrane in the Simulated Body Fluid a continuous compact apatite layer was formed. In vitro experiments demonstrated that the incorporation of n-HAp significantly improved cell attachment, upregulated cells proliferation and stimulated cell differentiation quantified using Alkaline Phosphatase and OsteoImage tests. In conclusion, the results demonstrated that the addition of n-HAp provided chemical cues that were a key factor that regulated osteoblastic differentiation.
机译:使用静电纺丝技术制备了具有高生物活性的新型纳米复合膜。这些纳米复合材料结合了可降解的聚合物聚(1 / dl)-丙交酯和骨细胞信号传导碳酸盐纳米羟基磷灰石(n-HAp)。使用扫描电子显微镜,傅立叶变换红外光谱和广角X射线衍射对膜进行化学和物理表征,证明纳米颗粒已成功地掺入纤维和膜结构中。将n-HAp掺入结构中可显着增加体外膜的矿化作用。已经证明,在模拟体液中孵育复合膜三天后,形成了连续的致密磷灰石层。体外实验表明,使用碱性磷酸酶和OsteoImage测试定量检测,n-HAp的掺入可显着改善细胞附着,上调细胞增殖和刺激细胞分化。总之,结果表明,添加n-HAp提供了化学提示,这些化学提示是调节成骨细胞分化的关键因素。

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