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首页> 外文期刊>Key Engineering Materials >A Review of Two Animal Studies Dealing with Biological Responses to Glass-Fibre-Reinforced Composite Implants in Critical Size Calvarial Bone Defects in Rabbits
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A Review of Two Animal Studies Dealing with Biological Responses to Glass-Fibre-Reinforced Composite Implants in Critical Size Calvarial Bone Defects in Rabbits

机译:两项针对玻璃纤维增​​强复合植入物在兔关键尺寸颅骨缺损中的生物学反应的动物研究综述。

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摘要

In these studies, E-glass-fibre-reinforced composite (FRC) implants with photopolymerisable resin systems and bioactive glass granules (BAG) were evaluated as a reconstructive material in the critical size bone defects made to rabbits' calvarial bones. In the first study, a new experimental resin system, DD1/MMA/BDDMA, was used to impregnate the doubleveil FRC-implants, while in the second study, a commercial resin system composed of BisGMA/MMA/PMMA was used in impregnation. These double-veil FRC-implants were coated with bioactive glass granules (BAG, 315-500 μm). In the second study, an experimental FRC consisting of two laminates of woven fibres, was also tested as an implant material. These implants were filled with BAG-granules and pure fused quartz fibers (Quartzel wool). In the first study, implantation time was 4 or 12 weeks, while in the second study, it was 12 weeks for both the implant types. Results: In the first study, the healing of the defects had started in the form of new bone growth from the defect margins, as well as small islands of woven bone in the middle of the defect, at 4 weeks postoperatively. Ingrowth of dense connective tissue into the pores of the implant was widely seen. At 12 weeks postoperatively, more bony islands were seen as compared to the animals studied at 4 weeks. Part of the newly formed bone had an appearance of lamellar structure. The porous structures of the implant were deeply filled with fibroconnective tissue. Ingrowth of maturing bone to the implant structures was occasionally seen. The inflammatory reaction was moderate, and was mostly found inside the upper part of the implant. In the second study, inflammatory reactions caused by both types of the FRC implants were very slight. Small amount of new bone had started to grow from the defect margins in doulble-veil implanted defects. No ingrowth of connective tissues or new bone formation was seen inside these implants. Instead, both the connective tissues and newly formed, mineralizing bone were seen inside the experimental double-laminate implants. SiO_2-fibres seemed to cause moderate inflammatory reaction inside the implants, while BAG granules did not. In both the study groups, the brain tissue was oedemic, but no obvious serious damage was found. Conclusions: The structural properties of the FRC-implants had an influence on the healing process of the bone defect. BAG, as a constituent of the FRC-implants, enhanced the bone formation process. After some modifications to the properties of the FRC, this type of implant has possibilities to become one material alternative in clinical bone defect reconstruction at the craniofacial area in the future.
机译:在这些研究中,采用可光聚合树脂系统和生物活性玻璃颗粒(BAG)的E玻璃纤维增​​强复合材料(FRC)植入物被评估为重建兔兔颅骨大小骨缺损的重建材料。在第一项研究中,新的实验树脂系统DD1 / MMA / BDDMA用于浸渍双层面膜FRC植入物,而在第二项研究中,由BisGMA / MMA / PMMA组成的商业树脂系统用于浸渍。用生物活性玻璃颗粒(BAG,315-500μm)涂覆这些双层面膜FRC植入物。在第二项研究中,还测试了由两层编织纤维层压板组成的实验性FRC作为植入材料。这些植入物充满了BAG颗粒和纯熔融石英纤维(Quartzel羊毛)。在第一项研究中,植入时间为4或12周,而在第二项研究中,两种植入物的植入时间均为12周。结果:在第一个研究中,缺陷的修复开始于术后4周,以缺陷边缘的新骨生长以及缺陷中间的编织骨小岛开始。广泛可见到致密的结缔组织向植入物的孔内生长。与在第4周研究的动物相比,在术后12周观察到更多的骨岛。新形成的骨头的一部分具有层状结构的外观。植入物的多孔结构深深地充满了纤维结缔组织。偶尔会看到成熟的骨头向植入物结构的向内生长。炎症反应中等,主要在植入物上部内部发现。在第二项研究中,两种类型的FRC植入物引起的炎症反应都很轻微。从双面纱植入的缺损边缘开始,少量新骨开始生长。这些植入物内部未见结缔组织向内生长或新骨形成。取而代之的是,在实验性双层覆膜植入物内部看到了结缔组织和新形成的矿化骨。 SiO_2纤维似乎在植入物内部引起中等程度的炎症反应,而BAG颗粒则没有。在这两个研究组中,脑组织都是血肿,但未发现明显的严重损伤。结论:FRC植入物的结构特性对骨缺损的愈合过程有影响。作为FRC植入物的组成部分,BAG增强了骨形成过程。在对FRC的特性进行一些修改之后,这种植入物有可能在将来成为颅面区域临床骨缺损重建的一种替代材料。

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