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Characterization of New PEEK/HA Composites with 3D HA Network Fabricated by Extrusion Freeforming

机译:自由挤压成型的具有3D HA网络的新型PEEK / HA复合材料的表征

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摘要

Addition of bioactive materials such as calcium phosphates or Bioglass, and incorporation of porosity into polyetheretherketone (PEEK) has been identified as an effective approach to improve bone-implant interfaces and osseointegration of PEEK-based devices. In this paper, a novel production technique based on the extrusion freeforming method is proposed that yields a bioactive PEEK/hydroxyapatite (PEEK/HA) composite with a unique configuration in which the bioactive phase (i.e., HA) distribution is computer-controlled within a PEEK matrix. The 100% interconnectivity of the HA network in the biocomposite confers an advantage over alternative forms of other microstructural configurations. Moreover, the technique can be employed to produce porous PEEK structures with controlled pore size and distribution, facilitating greater cellular infiltration and biological integration of PEEK composites within patient tissue. The results of unconfined, uniaxial compressive tests on these new PEEK/HA biocomposites with 40% HA under both static and cyclic mode were promising, showing the composites possess yield and compressive strength within the range of human cortical bone suitable for load bearing applications. In addition, preliminary evidence supporting initial biological safety of the new technique developed is demonstrated in this paper. Sufficient cell attachment, sustained viability in contact with the sample over a seven-day period, evidence of cell bridging and matrix deposition all confirmed excellent biocompatibility. View Full-Text
机译:已经确定添加生物活性材料(例如磷酸钙或生物玻璃),并将孔隙率并入聚醚醚酮(PEEK)中,是改善骨植入物界面和基于PEEK的设备的骨整合的有效方法。在本文中,提出了一种基于挤压自由成形法的新生产技术,该技术生产出具有独特构型的生物活性PEEK /羟基磷灰石(PEEK / HA)复合材料,其中生物活性相(即HA)的分布在计算机内控制。 PEEK矩阵。生物复合材料中HA网络的100%互连具有优于其他微结构配置替代形式的优势。此外,该技术可用于生产具有受控孔径和分布的多孔PEEK结构,从而有助于更大的细胞浸润和PEEK复合材料在患者组织内的生物整合。这些含有40%HA的新型PEEK / HA生物复合材料在静态和循环模式下的无限制单轴压缩试验结果是有希望的,表明该复合材料在适合负荷应用的人体皮质骨范围内具有屈服和抗压强度。此外,本文还证明了支持开发的新技术的初步生物安全性的初步证据。足够的细胞附着,在7天的时间内与样品接触的持续活力,细胞桥接和基质沉积的证据均证明了其优异的生物相容性。查看全文

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