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In vivo evaluation of bioactive PMMA-based bone cement with unchanged mechanical properties in a load-bearing model on rabbits

机译:在兔子的承重模型中具有不变力学性能的生物活性基于PMMA的骨水泥的体内评估

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Polymethylmethacrylate-based bone cements are widely used for fixation of joint replacements. To improve the long-term outcome, bioactive bone cements are aspired to advance the bone-cement interface. This study evaluated the in vivo properties of a new polymethylmethacrylate-based bioactive bone cement with addition of amphiphilic phosphorylated 2-hydroxyethylmethacrylate. Previous in vitro studies confirmed bioactive properties in cell culture, as well as unchanged mechanical properties are tests according to ISO 5833:2002. Three different variations of the cement (polymethylmethacrylate+phosphorylated 2-hydroxyethylmethacrylate, polymethylmethacrylate+phosphorylated 2-hydroxyethylmethacrylate+CaCl2 and polymethylmethacrylate+phosphorylated 2-hydroxyethylmethacrylate+CaCl2+Na2CO3) were compared to conventional polymethylmethacrylate cement. To evaluate the properties under load-bearing conditions, a spacer prosthesis was implanted into the femoral diaphysis of 24 rabbits. Additionally, a cement plug was installed into the proximal tibia. After three months, polished sections with Giemsa surface staining were prepared. The bioactivity was determined using the bone affinity index. The sections showed a good osseointegration of the bioactive bone cement without cement cracks under load-bearing conditions. Regarding the bone affinity index, the bioactive bone cement revealed a significantly higher value in the proximal tibia (25.9-37.7%) and around the spacer prosthesis (36.8-58.9%) compared to the conventional polymethylmethacrylate cement (12.8-17.0%). The results confirm the in vivo bioactivity of this bone cement. The absence of cement cracks indicates a sufficient mechanical stability to fix prostheses with this bioactive cement, but for a final assessment long-term tests are necessary.
机译:聚甲基丙烯酸甲酯基骨水泥被广泛用于固定关节置换物。为了改善长期结果,人们希望生物活性骨水泥能够促进骨水泥界面的发展。这项研究评估了一种新的基于聚甲基丙烯酸甲酯的生物活性骨水泥的体内特性,并添加了两亲性磷酸化的甲基丙烯酸2-羟乙酯。根据ISO 5833:2002,先前的体外研究证实了细胞培养中的生物活性,以及​​不变的机械性能。与传统的聚甲基丙烯酸甲酯水泥相比,水泥的三种不同变化(聚甲基丙烯酸甲酯+磷酸化的甲基丙烯酸2-羟乙酯,聚甲基丙烯酸甲酯+磷酸化的甲基丙烯酸2-羟乙酯+ CaCl 2和聚甲基丙烯酸甲酯+磷酸化的甲基丙烯酸2-羟乙酯+ CaCl 2 + Na 2 CO 3)进行了比较。为了评估在承重条件下的性能,将间隔物假体植入24只兔子的股骨干中。另外,将水泥塞安装在胫骨近端。三个月后,准备了带有Giemsa表面染色的抛光切片。使用骨亲和指数确定生物活性。这些截面显示了在负载条件下生物活性骨水泥的良好骨整合,而没有水泥裂缝。关于骨亲和指数,与传统的聚甲基丙烯酸甲酯水泥(12.8-17.0%)相比,生物活性骨水泥在胫骨近端(25.9-37.7%)和间隔物假体周围的价值(36.8-58.9%)显着更高。结果证实了这种骨水泥的体内生物活性。没有水泥裂缝表明该生物活性水泥具有足够的机械稳定性来固定假体,但要进行最终评估,则必须进行长期测试。

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