首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >In-vitro biocompatibility, bioactivity, and mechanical strength of PMMA-PCL polymer containing fluorapatite and graphene oxide bone cements
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In-vitro biocompatibility, bioactivity, and mechanical strength of PMMA-PCL polymer containing fluorapatite and graphene oxide bone cements

机译:含有氟磷酸盐和石墨烯骨水泥的PMMA-PCL聚合物的体外生物相容性,生物活性和机械强度

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摘要

In this study, a bone cement consisting of poly methyl methacrylate (PMMA)-poly caprolactone (PCL)-fluorapatite (FA)-graphene oxide (GO) was synthesized as bone filler for application in orthopedic surgeries. The FA and GO particulates were homogenously distributed in the PMMA-PCL polymer matrix and no defects and agglomeration were found in the PMMA-PCL/FA/GO bone cement. The in-vitro bioactivity result exhibited that addition of FA and GO to the polymer cement (PMMA-PCL) improved the apatite formation ability on the surface of polymer. The results also showed that addition of FA to the polymer bone cement escalated the compressive strength and elastic modulus while reducing elongation to 8 +/- 2%. However, after addition of GO into the PMMA-PCL/FA bone cement, both compressive strength and elongation considerably increased to 101 +/- 5 MPa and 35 +/- 6%, respectively. Furthermore, tensile tests exhibited that inclusion of GO was favorable in improving the tensile modulus, UTS and elongation of the PMMA-PCL/FA bone cement. The cytotoxicity test pointed out that MG63 osteoblast cells viability increased to 279 +/- 15% after addition of FA and GO to the PMMA-PCL polymer bone cement. The DAPI (4',6-diamidino-2-phenylindole) staining demonstrated better spreading and attachment of MG63 cells on PMMA-PCL/FA/GO surface compared to the PMMA-PCL bone cements. These results confirm the suitable mechanical properties and favorable bioactivity along with high cells viability of PMMA-PCL/FA/GO bone cement, indicating its potentials for orthopedic applications.
机译:在该研究中,由聚甲基丙烯酸甲酯(PMMA) - 聚己内酯(PCL)-Fluorapatite(PCL)-Fluorapatite(FA)氧化物(GO)组成的骨水泥被合成为骨填料,用于在整形外科手术中施用。在PMMA-PCL聚合物基质中均匀分布FA和GO颗粒,在PMMA-PCL / FA / GO骨水泥中没有发现缺陷和附聚。体外生物活性结果表明,加入Fa并转到聚合物水泥(PMMA-PCL)改善了聚合物表面上的磷灰石形成能力。结果还表明,添加到聚合物骨水泥的加入升级强度和弹性模量,同时将伸长率降低至8 +/- 2%。然而,在加入PMMA-PCL / FA骨水泥后,抗压强度和伸长率均显着增加至101 +/- 5MPa和35 +/- 6%。此外,张拉伸试验表明,含有Go的含有有利的是改善PMMA-PCL / FA骨水泥的拉伸模量,UT和伸长率。细胞毒性试验指出,在加入FA后,Mg63成骨细胞的活力增加至279 +/- 15%并转到PMMA-PCL聚合物骨水泥。与PMMA-PCL骨水泥相比,DAPI(4',6-二氨基-2-苯基吲哚)染色表现出更好的PMMA-PCL / FA / GO / Go表面上的Mg63细胞的展开和附着。这些结果证实了合适的机械性能和有利的生物活性以及PMMA-PCL / FA / GO骨水泥的高细胞活力,表明其对整形外科应用的电位。

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