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Development of a Biodegradable Bone Cement for Craniofacial Applications

机译:开发用于颅面应用的可生物降解的骨水泥

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摘要

This study investigated the formulation of a two-component biodegradable bone cement comprising the unsaturated linear polyester macromer poly(propylene fumarate) (PPF) and crosslinked PPF microparticles for use in craniofacial bone repair applications. A full factorial design was employed to evaluate the effects of formulation parameters such as particle weight percentage, particle size, and accelerator concentration on the setting and mechanical properties of crosslinked composites. It was found that the addition of crosslinked microparticles to PPF macromer significantly reduced the temperature rise upon crosslinking from 100.3 ± 21.6 to 102.7 ± 49.3 °C for formulations without microparticles to 28.0 ± 2.0 to 65.3 ± 17.5 °C for formulations with microparticles. The main effects of increasing the particle weight percentage from 25 to 50% were to significantly increase the compressive modulus by 37.7 ± 16.3 MPa, increase the compressive strength by 2.2 ± 0.5 MPa, decrease the maximum temperature by 9.5 ± 3.7 °C, and increase the setting time by 0.7 ± 0.3 min. Additionally, the main effects of increasing the particle size range from 0–150 μm to 150–300 μm were to significantly increase the compressive modulus by 31.2 ± 16.3 MPa and the compressive strength by 1.3 ± 0.5 MPa. However, the particle size range did not have a significant effect on the maximum temperature and setting time. Overall, the composites tested in this study were found to have properties suitable for further consideration in craniofacial bone repair applications.
机译:该研究研究了一种双组分可生物降解的骨水溶性,其包含不饱和线性聚酯大分子聚氯镁聚体(丙烯富马酸丙酯)(PPF)和交联的PPF微粒,用于用于颅面骨修复应用。使用完整的因子设计来评估配方参数如粒子重量百分比,粒度和加速器浓度的作用,并在交联复合材料的设置和机械性能下进行。发现将交联的微粒加入PPF大分子机的加入在没有微粒的制剂中的交联后显着降低了在15.3±21.6至102.7±49.3℃下进行的温度升高至28.0±2.0至65.3±17.5°C。将粒子重量百分比从25%增加到50%至50%的主要效果是显着增加压缩模量37.7±16.3MPa,将压缩强度提高2.2±0.5MPa,将最高温度降低9.5±3.7°C,增加设定时间0.7±0.3分钟。另外,增加粒度范围为0-150μm至150-300μm的主要效果是显着增加压缩模量31.2±16.3MPa和抗压强度1.3±0.5MPa。然而,粒度范围对最大温度和设定时间没有显着影响。总的来说,发现该研究中测试的复合材料具有适于进一步考虑在颅面骨修复应用中的性质。

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