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The mechanical and biological studies of calcium phosphate cement-fibrin glue for bone reconstruction of rabbit femoral defects

机译:磷酸钙骨水泥纤维蛋白胶修复兔股骨缺损的力学和生物学研究

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摘要

In order to improve the mechanical and biological properties of calcium phosphate cement (CPC, nanometer-biomaterial) for bone reconstruction in the rabbit femoral defect model, fibrin glue (FG, the natural product, purified from the blood) was introduced at three different ratios. The CPC powder and the FG solution were mixed, respectively, at the powder/liquid (P/L) ratios (g/mL) of 1:1, 3:1, and 5:1 (g/mL), and pure CPC was used as a control. After being implanted into the femoral defect in rabbit, the healing process was evaluated by micro-computed tomography scan, biomechanical testing, and histological examination. By micro-computed tomography analysis, the P/L ratio of 1:1 (g/mL) group indicated the largest quantity of new bone formation at 4 weeks, 8 weeks, and 12 weeks after implantation, respectively. Bone volume per trabecular volume of the 1:1 group was highest in the four groups, which was 1.45% ± 0.42%, 7.35% ± 1.45%, and 29.10% ± 1.67% at 4 weeks, 8 weeks, and 12 weeks after the operation, respectively. In the biomechanical tests, the compressive strength and the elastic modulus of the three CPC–FG groups were much higher than those of the pure CPC group at the determined time point (P < 0.05). The histological evaluation also showed the best osseointegration in the 1:1 group at 4 weeks, 8 weeks, and 12 weeks after the operation, respectively. In the 1:1 group, the bone grew into the pore of the cement in the laminar arrangement and connected with the cement tightly at the 12th week after the operation. This present study indicated that the CPC–FG composite at the P/L ratio of 1:1 (g/mL) stimulated bone regeneration better than any other designed group, which suggested that CPC–FG at the P/L ratio of 1:1 has significant potential as the bioactive material for the treatment of bone defects.
机译:为了改善兔股骨缺损模型中用于骨骼重建的磷酸钙水泥(CPC,纳米生物材料)的机械和生物学性能,以三种不同的比例引入了纤维蛋白胶(FG,天然产物,从血液中纯化)。 。将CPC粉末和FG溶液分别以1:1、3:1和5:1(g / mL)的粉末/液体(P / L)比(g / mL)和纯CPC混合用作对照。植入兔股骨缺损后,通过计算机断层扫描,生物力学测试和组织学检查评估其愈合过程。通过微计算机断层扫描分析,P / L 1:1(g / mL)组分别表明在植入后4周,8周和12周时新骨形成的数量最多。 1:1组的小梁体积的骨量在四组中最高,分别在术后4周,8周和12周时分别为1.45%±0.42%,7.35%±1.45%和29.10%±1.67%。操作分别。在生物力学测试中,在确定的时间点,三个CPC-FG组的抗压强度和弹性模量远高于纯CPC组(P <0.05)。组织学评估还显示,分别在术后4周,8周和12周时1:1组的骨整合最佳。 1:1组的骨以层状排列长入水泥的孔中,并在术后第12周与水泥紧密连接。本研究表明,P / L为1:1(g / mL)的CPC-FG复合材料比其他设计组更好地刺激了骨再生,这表明CPC / FG在P / L为1的比例下: 1具有作为治疗骨缺损的生物活性材料的巨大潜力。

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