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Biomimetic surface functionalization of clinically relevant metals used as orthopaedic and dental implants

机译:临床相关金属的仿真表面官能化用作整形外科和牙科植入物

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摘要

Titanium and its alloys or tantalum (Ta) are materials used in orthopaedic and dental implants due to their excellent mechanical properties and biocompatibility. However, their bioactivity and osteoconductivity is low. With a view to improving the bioactivity of these materials we hypothesised that the surface of Ta and TiAl6V4 can be functionalised with biomimetic, amorphous nano-sized calcium phosphate (CaP) apatite-like deposits, instead of creating uniform coatings, which can lead to flaking, delamination and poor adherence.Weused Ta and TiAl6V4 metal discs with smooth and rough surfaces. Amorphous CaP apatite-like particles were deposited on the different surfaces by a biomimetic rapid two-step soaking method using concentrated simulated body fluid (SBF) solutions without a pre-treatment of the metal surfaces to induce CaP deposition. Immersion times in the second SBF solution of 48 and 18 h for Ta and TiAl6V4 respectively produced CaP deposits composed of amorphous globular nano-sized particles that also contained Mg,Cand O. Longer immersion times produced more uniform coatings as well as an undesired calcite mineral phase. Prediction of in vivo behaviour by immersion in regular SBF showed that the obtained CaP deposits would act as a catalyst to rapidly form aCa deficient CaP layer that also incorporates Mg. The amorphous CaP apatite-like deposits promoted initial attachment, proliferation and osteogenic differentiation of bone marrow derived mesenchymal stem cells. Finally, we used our method to functionalise 3D porous structures of titanium alloy made by selective laser sintering. Our study uses a novel and cost-effective approach to functionalise clinically relevant metal surfaces in order to increase the bioactivity of these materials, which could improve their clinical performance.
机译:钛及其合金或钽(TA)是矫形和牙科植入物的材料,由于它们出色的机械性能和生物相容性。然而,它们的生物活性和骨导电性低。为了提高这些材料的生物活性,我们假设Ta和TiAl6v4的表面可以用仿生,无定形纳米型磷酸钙(帽)样磷灰石状沉积物,而不是产生均匀的涂层,这可能导致剥落,分层和可怜的粘附。伸展TA和TiAl6V4金属椎间盘,具有光滑粗糙的表面。通过使用浓缩的模拟体液(SBF)溶液在不同的浓缩体液(SBF)溶液中沉积在不同表面上的无定形帽磷灰石样颗粒,而无需预处理金属表面以诱导帽沉积。对于Ta和TiAl6v4的第二SBF溶液中的浸入时间分别产生由也含有Mg的无定形球状纳米尺寸颗粒组成的帽沉积物,CAND O.较长的浸渍时间产生更均匀的涂层以及不需要的方解石矿物质阶段。通过沉浸在常规SBF中的体内行为的预测显示,所获得的帽沉积物作为催化剂,以快速形成含有Mg的ACA缺陷帽层。无定形帽磷灰石样沉积物促进了骨髓衍生间充质干细胞的初始附着,增殖和成骨分化。最后,我们利用我们用选择性激光烧结制成的钛合金的三维多孔结构的方法。我们的研究使用新颖且经济高效的方法来功能临床相关的金属表面,以增加这些材料的生物活性,这可以提高其临床表现。

著录项

  • 来源
    《Biomedical materials》 |2018年第1期|共14页
  • 作者单位

    John Scales Centre for Biomedical Engineering Institute of Orthopaedics and Musculoskeletal Science Division of Surgery and Interventional Science University College London Royal National Orthopaedic Hospital Stanmore HA7 4LP United Kingdom;

    John Scales Centre for Biomedical Engineering Institute of Orthopaedics and Musculoskeletal Science Division of Surgery and Interventional Science University College London Royal National Orthopaedic Hospital Stanmore HA7 4LP United Kingdom;

    Instituto de Ciencia de Materiales de Aragón (ICMA) CSIC and Universidad de Zaragoza 50009 Zaragoza Spain;

    Regenerative Biomaterials Group RAFT Institute of Plastic Surgery Mount Vernon Hospital Northwood HA6 2RN United Kingdom;

    Division of Biomaterials and Tissue Engineering UCL Eastman Dental Institute University College London LondonWC1X8LD United Kingdom;

    John Scales Centre for Biomedical Engineering Institute of Orthopaedics and Musculoskeletal Science Division of Surgery and Interventional Science University College London Royal National Orthopaedic Hospital Stanmore HA7 4LP United Kingdom;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 医用一般科学;
  • 关键词

    metals; tantalum; TiAl6V4; biomimetic; calcium phosphate; functionalisation;

    机译:金属;钽;TiAl6v4;仿生;磷酸钙;官能化;

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