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Fiber-reinforced Composite as Oral Implant Material. Experimental studies of glass fiber and bioactive glass in vitro and in vivo

机译:纤维增强复合材料作为口腔植入材料。玻璃纤维和生物活性玻璃的体内外实验研究

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摘要

Fiber-reinforced composite as oral implant material: Experimental studies of glass fiber and bioactive glass in vitro and in vivoDepartment of Prosthetic Dentistry and Biomaterials Science, Institute of Dentistry, University of Turku, Turku, Finland 2008.Biocompatibility and mechanical properties are important variables that need to be determined when new materials are considered for medical implants. Special emphasis was placed on these characteristics in the present work, which aimed to investigate the potential of fiber-reinforced composite (FRC) material as an oral implant. Furthermore, the purpose of this study was to explore the effect of bioactive glass (BAG) on osseointegration of FRC implants. The biocompatibility and mechanical properties of FRC implants were studied both in vitro and in vivo. The mechanical properties of the bulk FRC implant were tested with a cantilever bending test, torsional test and push-out test. The biocompatibility was first evaluated with osteoblast cells cultured on FRC substrates. Bone bonding was determined with the mechanical push-out test and histological as well as histomorplanimetric evaluation. Implant surface was characterized with SEM and EDS analysis.The results of these studies showed that FRC implants can withstand the static load values comparably to titanium. Threaded FRC implants had significantly higher push-out strength than the threaded titanium implants.Cell culture study revealed no cytotoxic effect of FRC materials on the osteoblast-like-cells. Addition of BAG particles enhanced cell proliferation and mineralization of the FRC substrates The in vivo study showed that FRC implants can withstand static loading until failure without fracture. The results also suggest that the FRC implant is biocompatible in bone. The biological behavior of FRC was comparable to that of titanium after 4 and 12 weeks of implantation. Furthermore, addition of BAG to FRC implant increases peri-implant osteogenesis and bone maturation.
机译:纤维增强复合材料作为口腔植入材料:玻璃纤维和生物活性玻璃的体外和体内实验研究,芬兰图尔库大学齿科研究所义齿修复与生物材料科学系,芬兰图尔库,2008.生物相容性和机械性能是重要变量在考虑将新材料用于医疗植入物时需要确定。在当前的工作中,特别强调了这些特性,旨在研究纤维增强复合材料(FRC)作为口腔植入物的潜力。此外,本研究的目的是探讨生物活性玻璃(BAG)对FRC植入物骨整合的影响。在体外和体内研究了FRC植入物的生物相容性和力学性能。用悬臂弯曲测试,扭转测试和推出测试测试了整体FRC植入物的机械性能。首先用在FRC基质上培养的成骨细胞评估生物相容性。用机械推出试验,组织学和组织平面测量法确定骨结合。通过SEM和EDS分析对植入物表面进行了表征。研究结果表明,FRC植入物可以承受的静载荷值与钛相当。带螺纹的FRC植入物比带螺纹的钛植入物具有更高的推出强度。细胞培养研究表明FRC材料对成骨样细胞无细胞毒性作用。 BAG颗粒的添加增强了FRC基质的细胞增殖和矿化作用体内研究表明,FRC植入物可以承受静态载荷,直到失败而不破裂。结果还表明,FRC植入物在骨骼中具有生物相容性。植入4周和12周后,FRC的生物学行为与钛相当。此外,在FRC植入物中添加BAG会增加植入物周围的成骨作用和骨骼成熟度。

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    Ballo Ahmed;

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