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Assessment of bone ingrowth potential of biomimetic hydroxyapatite and brushite coated porous E-beam structures

机译:仿生羟基磷灰石和透钙磷石涂覆的多孔电子束结构的骨长入潜力评估

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摘要

The bone ingrowth potential of biomimetic hydroxyapatite and brushite coatings applied on porous E-beam structure was examined in goats and compared to a similar uncoated porous structure and a conventional titanium plasma spray coating. Specimens were implanted in the iliac crest of goats for a period of 3 (4 goats) or 15 weeks (8 goats). Mechanical implant fixation generated, by bone ingrowth was analyzed by a push out test. Histo-morphometry was performed to assess the bone ingrowth depth and bone implant contact. The uncoated and hydroxyapatite-coated cubic structure had significantly higher mechanical strength at the interface compared to the Ti plasma spray coating at 15 weeks of implantation. Bone ingrowth depth was significantly larger for the hydroxyapatite- and brushite-coated structures compared to the uncoated structure. In conclusion, the porous E-beam surface structure showed higher bone ingrowth potential compared to a conventional implant surface after 15 weeks of implantation. Addition of a calcium phosphate coating to the E-beam structure enhanced bone ingrowth significantly. Furthermore, the calcium phosphate coating appears to work as an accelerator for bone ingrowth.
机译:在山羊中检查了应用于多孔电子束结构的仿生羟基磷灰石和透钙磷石涂层的骨向内生长潜力,并将其与相似的未涂层多孔结构和常规钛等离子喷涂涂层进行了比较。将标本植入山羊的rest中,进行3次(4只山羊)或15周(8只山羊)。通过推出试验分析了由骨向内生长产生的机械植入物固定情况。进行组织形态测定法以评估骨向内生长深度和骨植入物接触。与钛等离子喷涂涂层在植入15周后相比,未涂层和羟基磷灰石涂层的立方结构在界面处具有明显更高的机械强度。与未涂层结构相比,羟基磷灰石涂层和透钙磷石涂层结构的骨向内生长深度明显更大。总之,在植入15周后,与常规植入物表面相比,多孔电子束表面结构显示出更高的骨向内生长潜力。在电子束结构上添加磷酸钙涂层可显着增强骨骼向内生长。此外,磷酸钙涂层似乎起到促进骨长入的作用。

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  • 来源
    《Journal of materials science》 |2011年第4期|p.917-925|共9页
  • 作者单位

    Orthopaedic Research Laboratory, Radboud University Nijmegen Medical Center, P.O. Box 9101, 6500, HB, Nijmegen,The Netherlands;

    Department Materials Engineering and Industrial Technologies,University of Trento, Via Mesiano 77, 38050 Trento, Italy;

    Orthopaedic Research Laboratory, Radboud University Nijmegen Medical Center, P.O. Box 9101, 6500, HB, Nijmegen,The Netherlands;

    Orthopaedic Research Laboratory, Radboud University Nijmegen Medical Center, P.O. Box 9101, 6500, HB, Nijmegen,The Netherlands,Laboratory for Biomechanical Engineering, University of Twente, P.O.Box 217, 7500, AE, Enschede, The Netherlands;

    Orthopaedic Research Laboratory, Radboud University Nijmegen Medical Center, P.O. Box 9101, 6500, HB, Nijmegen,The Netherlands;

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