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Properties of Novel PMMA-co-EHA Bone Cements Filled with Hydroxyapatite

机译:新型填充羟基磷灰石的PMMA-co-EHA骨水泥的性能

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To design bone cements with predictable intraoperative and postoperative behavior, researchers must understand how cement formulations affect the polymerization reaction and specially the properties of the end product. In this study, a bioactive filler (commercial hydroxyapatite, HA) was incorporated into poly(methyl methacrylate)-co-ethyl hexyl acrylate (PMMA-co-EHA) matrices to prepare new bone cement formulations. The new PMMA-co-EHA/HA composites were obtained by varying the relative contents of the monomers, MMA, and EHA, The resulting composites were evaluated in terms of the curing parameters, water uptake and weight loss in phosphate buffer solution and mechanical properties. The results obtained showed that incorporation of 25% HA particles induced major changes in the final properties of the bone cements comparing with the unfilled parent matrices. In particular, the peak temperature decreased and the setting time and the bending elastic modulus increased in all formulations containing HA particles. Composites with low EHA content exhibited a decrease in strength after HA incorporation, which was attributed to the poor interfacial adhesion between the components of the composites. Additionally, the immersion results showed that the amount of 25% HA (regarding the total mass) in the composites was not enough to induce in vitro bioactive properties in the materials.
机译:为了设计具有可预测的术中和术后行为的骨水泥,研究人员必须了解水泥配方如何影响聚合反应,尤其是最终产品的性能。在这项研究中,将一种生物活性填料(商业羟基磷灰石,HA)掺入到聚(甲基丙烯酸甲酯)-丙烯酸共乙基己酯(PMMA-co-EHA)基体中,以制备新的骨水泥配方。通过改变单体,MMA和EHA的相对含量,获得了新的PMMA-co-EHA / HA复合材料。根据固化参数,吸水率和磷酸盐缓冲溶液的失重以及机械性能评估了所得复合材料。 。获得的结果表明,与未填充的母体基质相比,掺入25%的HA颗粒会导致骨水泥的最终性能发生重大变化。特别是,在所有含有HA颗粒的配方中,峰值温度降低,凝固时间和弯曲弹性模量增加。具有低EHA含量的复合材料在掺入HA后表现出强度降低,这归因于复合材料各组分之间的不良界面粘合性。此外,浸泡结果表明,复合材料中25%的HA(相对于总质量)不足以诱导材料的体外生物活性。

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