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Bioactivity of a Novel Nano-composite of Hydroxyapatite and Chitosan-Phosphorylated Chitosan Polyelectrolyte Complex

机译:新型羟基磷灰石与壳聚糖-磷酸化壳聚糖聚电解质复合物的纳米复合物的生物活性

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摘要

The bioactivity of a novel composite of carbonate-containing low-crystallinity nanoparticle hydroxyapatite (HA) and a chitosan-phosphorylated chitosan polyelectrolyte complex (PEC) was evaluated in vitro and in vivo. The HA-PEC nanocomposite with complicated porous structure was prepared by a biomimetic method. An acidic chitosan (polycation) solution containing calcium and phosphate ions (6mM Ca~(2+), Ca/P: 1.67) was added into phosphory-lated chitosan (polyanion) solution; the formation of PEC and the controlled HA crystal growth were co-organized in alkaline solution. The material was co-cultured with rat osteoblasts in vitro, and implanted into rabbit femur marrow cavities. The results indicate that the PEC-HA composite promoted osteoblast adhesion, morphology, proliferation, and differentiation in vitro; the bone tissue response to the material histologically showed that it was bioactive, as well as biodegradable. The HA-PEC composite shows promise as a bone-repair material.
机译:在体外和体内评估了新型的含碳酸盐的低结晶度纳米粒子羟基磷灰石(HA)和壳聚糖磷酸化的壳聚糖聚电解质复合物(PEC)的复合材料的生物活性。采用仿生法制备了具有复杂多孔结构的HA-PEC纳米复合材料。将含有钙和磷酸根离子的酸性壳聚糖(聚阳离子)溶液(6mM Ca〜(2 +),Ca / P:1.67)添加到磷酸化壳聚糖(聚阴离子)溶液中; PEC的形成和HA晶体的受控生长在碱性溶液中共同组织。该材料与大鼠成骨细胞在体外共培养,然后植入兔股骨髓腔中。结果表明,PEC-HA复合材料在体外促进成骨细胞的粘附,形态,增殖和分化。骨组织对这种材料的反应从组织学上显示出它具有生物活性以及可生物降解性。 HA-PEC复合材料显示出有望成为骨修复材料。

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