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Bioactive implant surface with electrochemically bound doxycycline promotes bone formation markers in vitro and in vivo

机译:具有电化学结合的强力霉素的生物活性植入物表面可在体内和体外促进骨形成标记

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摘要

Objectives. The objective of this study was to demonstrate a successful binding of Doxy hyclate onto a titanium zirconium alloy surface. Methods. The coating was done on titanium zirconium coins in a cathodic polarization setup. The surface binding was analyzed by SEM, SIMS, UV-vis, FTIR and XPS. The in vitro biological response was tested with MC3T3-E1 murine pre-osteoblast cells after 14 days of cultivation and analyzed in RT-PCR. A rabbit tibial model was also used to confirm its bioactivity in vivo after 4 and 8 weeks healing by means of microCT. Results. A mean of 141 μg/cm~2 of Doxy was found firmly attached and undamaged on the coin. Inclusion of Doxy was documented up to a depth of approximately 0.44 μm by tracing the ~(12)C carbon isotope. The bioactivity of the coating was documented by an in vitro study with murine osteoblasts, which showed significantly increased alkaline phosphatase and osteocalcin gene expression levels after 14 days of cell culture along with low cytotoxicity. Doxy coated surfaces showed increased bone formation markers at 8 weeks of healing in a rabbit tibial model. Significance. The present work demonstrates a method of binding the broad spectrum antibiotic doxycycline (Doxy) to an implant surface to improve bone formation and reduce the risk of infection around the implant. We have demonstrated that TiZr implants with electrochemically bound Doxy promote bone formation markers in vitro and in vivo.
机译:目标。这项研究的目的是要证明盐酸多西克成功地结合到钛锆合金表面上。方法。涂层是在阴极极化设置下在钛锆硬币上完成的。通过SEM,SIMS,UV-vis,FTIR和XPS分析表面结合。培养14天后,用MC3T3-E1鼠前成骨细胞测试体外生物学反应,并在RT-PCR中进行分析。还使用兔胫骨模型通过microCT证实其在4周和8周愈合后的体内生物活性。结果。硬币上平均附着了141μg/ cm〜2的Doxy,没有损坏。通过追踪〜(12)C碳同位素,记录到Doxy的夹杂物深度约为0.44μm。用鼠成骨细胞进行的一项体外研究证明了该涂层的生物活性,该研究显示,细胞培养14天后碱性磷酸酶和骨钙素基因表达水平显着提高,且细胞毒性较低。在兔胫骨模型中,涂有抗氧剂的表面在愈合8周后显示出增加的骨形成标记。意义。本工作证明了一种将广谱抗生素强力霉素(Doxy)结合到植入物表面上的方法,以改善骨形成并降低植入物周围感染的风险。我们已经证明,具有电化学结合的Doxy的TiZr植入物可在体外和体内促进骨形成标记。

著录项

  • 来源
    《Dental materials》 |2014年第2期|200-214|共15页
  • 作者单位

    Department of Biomaterials, Institute for Clinical Dentistry, University of Oslo, Oslo, Norway,Institute of Medical and Polymer Engineering, Chair of Medical Engineering, Technische Universitaet Muenchen, Garching, Germany;

    Department of Biomaterials, Institute for Clinical Dentistry, University of Oslo, Oslo, Norway,Institute of Medical and Polymer Engineering, Chair of Medical Engineering, Technische Universitaet Muenchen, Garching, Germany;

    Department of Fundamental Biology and Health Sciences, Research Institute on Health Sciences (IUNICS), University of Balearic Islands, Palma de Mallorca, Spain;

    Department of Fundamental Biology and Health Sciences, Research Institute on Health Sciences (IUNICS), University of Balearic Islands, Palma de Mallorca, Spain;

    Department of Prosthodontics, Institute of Clinical Odontology, University of Oslo, Oslo, Norway;

    Department of Biomaterials, Institute for Clinical Dentistry, University of Oslo, Oslo, Norway;

    Department of Biomaterials, Institute for Clinical Dentistry, University of Oslo, Oslo, Norway,PO Box 1109 Blindern, NO-0317 Oslo, Norway;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Doxycycline; Biomolecule binding; Cathodic reduction; SIMS; XPS; Surface modification; Titanium zirconium implant; Bone formation; microCT; In vivo;

    机译:强力霉素;生物分子结合;阴极还原;模拟人生;XPS;表面改性;钛锆植入物;骨形成;microCT;体内;
  • 入库时间 2022-08-18 03:46:56

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