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Preparation of Macroporous Hydroxyapatite/Chitosan-Alginate Composite Scaffolds for Bone Implants

机译:骨植入物的大孔羟基磷灰石/壳聚糖 - 藻酸盐复合支架的制备

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Porous HAp/chitosan-alginate composite scaffolds were successfully synthesized by in-situ co-precipitation method. During the preparation of HAp/chitosan-alginate composite scaffolds, the interaction between chitosan-alginate molecules would be reduced with increasing HAp content, with the resulting that the chitosan-alginate molecules were homogeneously dispersed in the composite scaffolds. The chitosan-alginate content was found to be almost consistent as initially added during the preparation. These results imply that chitosan-alginate was almost perfectly incorporated into the composites. It was found that the pore structure of the composite scaffolds with low HAp content was similar to chitosan-alginate scaffolds, and the morphology of uniform microstructure was unaffected by the presence of HAp. However, the pore diameter decreased with increasing the HAp content up to HAp content of 30 wt%, eventually the pore structure was collapsed and the composites scaffolds appeared to be agglomerated at higher HAp content.
机译:通过原位共沉淀法成功地合成多孔HAP /壳聚糖 - 藻酸盐复合支架。在制备HAP / Chitosan-藻酸盐复合支架期间,通过增加的Hap含量降低壳聚糖 - 藻酸盐分子之间的相互作用,从而得到壳聚糖 - 藻酸盐分子在复合支架中均匀地分散在复合支架中。发现壳聚糖藻酸盐含量几乎一致,如在制剂期间最初添加。这些结果意味着壳聚糖 - 藻酸盐几乎完美地掺入复合材料中。结果发现,具有低Hap含量的复合支架的孔结构类似于壳聚糖 - 藻酸盐支架,并且均匀微观结构的形态不受Hap存在的影响。然而,随着HAP含量增加到30wt%的Hap含量增加,孔径降低,最终塌陷孔结构,复合材料的支架似乎在较高的Hap含量下凝聚。

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