首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Reconstruction of critical size calvarial bone defects in rabbits with glass-fiber-reinforced composite with bioactive glass granule coating.
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Reconstruction of critical size calvarial bone defects in rabbits with glass-fiber-reinforced composite with bioactive glass granule coating.

机译:用生物活性玻璃颗粒涂层的玻璃纤维增​​强复合材料重建家兔临界尺寸的颅骨缺损。

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摘要

The aim of this study was to evaluate glass-fiber-reinforced composite as a bone reconstruction material in the critical size defects in rabbit calvarial bones. The bone defect healing process and inflammatory reactions were evaluated histologically at 4 and 12 weeks postoperatively. Possible neuropathological effects on brain tissue were evaluated. The release of residual monomers from the fiber-reinforced composite (FRC) was analyzed by high performance liquid chromatograph (HPLC). RESULTS: At 4 weeks postoperatively, fibrous connective tissue ingrowth to implant structures was seen. Healing had started as new bone formation from defect margins, as well as woven bone islets in the middle of the defect. Woven bone was also seen inside the implant. Inflammation reaction was slight. At 12 weeks, part of the new bone had matured to lamellar-type, and inflammation reaction was slight to moderate. Control defects had healed by fibrous connective tissue. Histological examinations of the brain revealed no obvious damage to brain morphology. In HPLC analysis, the release of residual 1,4-butanedioldimethacrylate and methylmethacrylate from polymerized FRC was low. CONCLUSIONS: This FRC-implant was shown to promote the healing process of critical size calvarial bone defect in rabbits. After some modifications to the material properties, this type of implant has the potential to become an alternative for the reconstruction of bone defects in the head and neck area in the future.
机译:这项研究的目的是评估玻璃纤维增​​强复合材料作为兔颅骨关键尺寸缺损的骨重建材料。术后4周和12周通过组织学评估骨缺损的愈合过程和炎症反应。评价了对脑组织可能的神经病理学影响。通过高效液相色谱仪(HPLC)分析了纤维增强复合材料(FRC)中残留单体的释放。结果:术后4周,可见纤维结缔组织向内生长至植入物结构。愈合开始于从缺损边缘形成新的骨,以及在缺损中部形成编织的骨岛。还可以在植入物内部看到编织的骨头。炎症反应轻微。在第12周时,部分新骨已成熟为层状,炎症反应轻微至中度。对照缺陷已由纤维结缔组织治愈。大脑的组织学检查未发现对大脑形态的明显损害。在HPLC分析中,聚合的FRC中残留的1,4-丁二醇二甲基丙烯酸酯和甲基丙烯酸甲酯的释放低。结论:这种FRC植入物可促进家兔关键尺寸颅盖骨缺损的愈合过程。在对材料特性进行一些修改之后,这种植入物将来有可能成为重建头颈部区域骨缺损的替代方法。

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