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用于大鼠临界尺寸颅骨缺损骨愈合的成骨纳米 MgO/PMMA 骨水泥的制备和评价。

Preparation and evaluation of osteogenic nano-MgO/PMMA bone cement for bone healing in a rat critical size calvarial defect.

机构信息

Centre for Translational Medicine Research & Development, Shenzhen Institutes of Advanced Technology, Chinese Academy of Sciences, Shenzhen, Guangdong 518055, China.

出版信息

J Mater Chem B. 2020 Jun 7;8(21):4575-4586. doi: 10.1039/d0tb00074d. Epub 2020 Apr 3.

Abstract

The clinical outcomes of polymethylmethacrylate (PMMA) bone cement used to fill gaps or marrow cavities of bones and bone defects are limited due to poor handling properties, mismatched mechanical properties with natural bone and lack of osteogenesis for bone healing. In this study, a series of PMMA bone cements containing active nano-MgO particles (nano-MgO/PMMA) were prepared. The handling and mechanical properties were systemically evaluated according to an International Standardization Organization standard (ISO 5833:2002). The biocompatibility and osteogenic activity of nano-MgO/PMMA were also analysed in vitro. The osteogenic effects of nano-MgO/PMMA were assessed in a rat calvarial critical bone defect model. The addition of less than 15 wt% nano-MgO to PMMA improved the handling properties of PMMA. Compared with PMMA, the compression modulus and strength of 20MP (20 wt% nano-MgO to PMMA) decreased to 0.725 ± 0.023 GPa and 25.38 ± 2.82 MPa, respectively. In vitro studies with MC3T3-E1 showed that nano-MgO/PMMA had better biocompatibility than the PMMA group after 7 days of culture. The nano-MgO/PMMA groups showed more calcium nodules and higher osteogenic gene expression levels than PMMA after 12 days of osteogenic induction of the rat BMSCs. The in vivo studies analysed by micro-CT and histomorphology results proved that nano-MgO/PMMA could significantly enhance new bone formation. The mean new bone mineral density in the nano-MgO/PMMA group was 50% greater than that in the PMMA group. In addition, biomechanical tests showed that nano-MgO/PMMA was superior to PMMA in bone-bonding strength after 12 weeks implantation. Therefore, the nano-MgO/PMMA bone cement has good potential in joint fixation and bone defect filling applications.

摘要

聚甲基丙烯酸甲酯(PMMA)骨水泥用于填充骨骼的间隙或骨髓腔以及骨缺损的临床效果有限,这是由于其较差的操作性能、与天然骨不匹配的机械性能以及缺乏成骨作用以促进骨愈合。在本研究中,制备了一系列含有活性纳米氧化镁颗粒的 PMMA 骨水泥(nano-MgO/PMMA)。根据国际标准化组织标准(ISO 5833:2002),系统地评估了其操作性能和机械性能。还分析了纳米氧化镁/PMMA 的生物相容性和成骨活性。通过大鼠颅盖临界骨缺损模型评估了纳米氧化镁/PMMA 的成骨作用。将小于 15wt%的纳米氧化镁添加到 PMMA 中可改善 PMMA 的操作性能。与 PMMA 相比,20MP(20wt%纳米氧化镁与 PMMA)的压缩模量和强度分别降低至 0.725±0.023GPa 和 25.38±2.82MPa。体外研究表明,在培养 7 天后,纳米氧化镁/PMMA 比 PMMA 组具有更好的生物相容性。在诱导大鼠 BMSCs 成骨 12 天后,纳米氧化镁/PMMA 组的钙结节较多,成骨基因表达水平较高。通过 micro-CT 和组织形态学分析的体内研究结果证明,纳米氧化镁/PMMA 可显著增强新骨形成。纳米氧化镁/PMMA 组的新骨矿物质密度比 PMMA 组高 50%。此外,生物力学测试表明,在植入 12 周后,纳米氧化镁/PMMA 在骨结合强度方面优于 PMMA。因此,纳米氧化镁/PMMA 骨水泥在关节固定和骨缺损填充应用中具有良好的应用前景。

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