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Nucleation and growth mechanism of apatite on a bioactive and degradable ceramic/polymer composite with a thick polymer layer

机译:具有厚聚合物层的生物活性可降解陶瓷/聚合物复合材料上磷灰石的成核和生长机理

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摘要

Nucleation and growth mechanism of apatite on a bioactive and degradable PLLA/SiO2-CaO composite with a thick PLLA surface layer were investigated compared to that on a bioactive but non-degradable polyurethane (PU)/SiO2-CaO composite with a thick PU surface layer. The bioactive SiO2-CaO particles were made by a sol-gel method from tetraethyl orthosilicate and calcium nitrate tetrahydrate under acidic condition followed by heat treatment at 600 A degrees C for 2 h. The PLLA/SiO2-CaO and PU/SiO2-CaO composites were then prepared by a solvent casting method which resulted in thick PLLA and PU surface layers, respectively, due to precipitation of SiO2-CaO particles during the casting process. Two composites were exposed to SBF for 1 week and this exposure led to form uniform and complete apatite coating layer on the PLLA/SiO2-CaO composite but not on the PU/SiO2-CaO composite. These results were interpreted in terms of the degradability of the polymers. A practical implication of the results is that a post-surface grinding or cutting processes to expose bioactive ceramics to the surface of a composite with a thick biodegradable polymer layer is not required for providing apatite forming ability, which has been considered as one of the pragmatic obstacles for the application as a bone grafting material.
机译:与具有厚PULA表面的生物活性但不可降解的聚氨酯(PU)/ SiO2-CaO复合材料相比,研究了磷灰石在具有生物活性但可降解的PLLA / SiO2-CaO复合材料上的成核和生长机理。 。通过溶胶-凝胶法由原硅酸四乙酯和硝酸钙四水合物在酸性条件下通过溶胶-凝胶法制备生物活性SiO2-CaO颗粒,然后在600 A的温度下热处理2 h。然后通过溶剂浇铸方法制备PLLA / SiO2-CaO和PU / SiO2-CaO复合材料,由于在浇铸过程中SiO2-CaO颗粒的沉淀,分别导致了厚的PLLA和PU表面层。将两种复合材料暴露于SBF中1周,这种暴露导致在PLLA / SiO2-CaO复合材料上而不是PU / SiO2-CaO复合材料上形成均匀而完整的磷灰石涂层。这些结果是根据聚合物的可降解性来解释的。结果的实际含义是,为了提供磷灰石形成能力,不需要后表面研磨或切割工艺以将生物活性陶瓷暴露于具有厚的可生物降解聚合物层的复合材料表面,从而提供了磷灰石成型能力。用作骨移植材料的障碍。

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