首页> 外文期刊>Materials science & engineering >Osseointegration is improved by coating titanium implants with a nanostructured thin film with titanium carbide and titanium oxides clustered around graphitic carbon
【24h】

Osseointegration is improved by coating titanium implants with a nanostructured thin film with titanium carbide and titanium oxides clustered around graphitic carbon

机译:通过用纳米结构的薄膜覆盖钛植入物,并在石墨碳周围簇集碳化钛和氧化钛,可以改善骨整合性

获取原文
获取原文并翻译 | 示例
           

摘要

Titanium implants coated with a 500 nm nanostructured layer, deposited by the Ion Plating Plasma Assisted (IPPA) technology, composed of 60% graphitic carbon, 25% titanium oxides and 15% titanium carbide were implanted into rabbit femurs whilst into the controlateral femurs uncoated titanium implants were inserted as control. At four time points the animals were injected with calcein green, xylenol orange, oxytetracycline and alizarin. After 2,4 and 8 weeks femurs were removed and processed for histology and static and dynamic histomorphometry for undecalcified bone processing into methylmethacrylate, sectioned, thinned, polished and stained with Toluidine blue and Fast green. The overall bone-implant contacts rate (percentage of bone-implant contacts/weeks) of the TiC coated implant was 1.6 fold than that of the uncoated titanium implant The histomorphometric analyses confirmed the histological evaluations. More precisely, higher Mineral Apposition Rate (MAR, μm/day) (p < 0.005) and Bone Formation Rate (BFR, μm~2/μm/day) (p < 0.0005) as well as Bone Implant Contact (Bic) and Bone Ingrowth values (p < 0.0005) were observed for the TiC coated implants compared to uncoated implants. In conclusion the hard nanostructured TiC layer protects the bulk titanium implant against the harsh conditions of biological tissues and in the same time, stimulating adhesion, proliferation and activity of osteoblasts, induces a better bone-implant contacts of the implant compared to the uncoated titanium implant.
机译:将由60%石墨碳,25%氧化钛和15%碳化钛组成的,采用离子镀等离子辅助(IPPA)技术沉积的,涂覆有500 nm纳米结构层的钛植入物植入兔股骨中,而将未涂覆的钛植入对照侧股骨中植入植入物作为对照。在四个时间点,给动物注射钙黄绿素绿,二甲苯酚橙,土霉素和茜素。在第2、4和8周后,取出股骨,进行组织学检查和静态,动态组织形态计量学,以将未脱钙的骨处理成甲基丙烯酸甲酯,切片,稀释,抛光并用甲苯胺蓝和固绿染色。 TiC涂层种植体的总体骨-种植体接触率(每星期的骨-种植体接触率)是未涂覆的钛种植体的1.6倍。组织形态分析证实了组织学评估。更准确地说,更高的矿物质沉积率(MAR,μm/ day)(p <0.005)和骨形成率(BFR,μm〜2 /μm/ day)(p <0.0005)以及骨植入物接触(Bic)和骨TiC涂层植入物与未涂层植入物相比观察到了内生值(p <0.0005)。总之,坚硬的纳米结构TiC层可保护大量的钛植入物免受生物组织的恶劣条件,同时,与未涂覆的钛植入物相比,刺激成骨细胞的粘附力,增殖和活性,可诱导植入物更好的骨-植入物接触。 。

著录项

  • 来源
    《Materials science & engineering》 |2017年第1期|264-271|共8页
  • 作者单位

    Laboratory of Preclinical and Surgical Studies, Rizzoli Orthopedic Institute, Via Di Barbiano 1/10, Bologna 40136, Italy;

    Laboratory of Preclinical and Surgical Studies, Rizzoli Orthopedic Institute, Via Di Barbiano 1/10, Bologna 40136, Italy,Laboratory of Biocompatibility, Innovative Technologies and Advanced Therapies, Department Rizzoli RIT, Via Di Barbiano 1/10, Bologna 40136, Italy;

    Laboratory of Preclinical and Surgical Studies, Rizzoli Orthopedic Institute, Via Di Barbiano 1/10, Bologna 40136, Italy,Laboratory of Biocompatibility, Innovative Technologies and Advanced Therapies, Department Rizzoli RIT, Via Di Barbiano 1/10, Bologna 40136, Italy;

    CNR Istituto di Struttura della Materia, CNR, Via del Fosso del Cavaliere 100,00133 Roma, Italy;

    Dept. of Biochemical Sciences, Sapienza University of Roma, Ple A. Moro 5,00185 Roma, Italy;

    Dept. of Biochemical Sciences, Sapienza University of Roma, Ple A. Moro 5,00185 Roma, Italy;

    Dept. of Technologies and Health, Istituto Superiors di Sanita, Viale Regina Elena, 299 Roma, Italy;

    Dept. of Technologies and Health, Istituto Superiors di Sanita, Viale Regina Elena, 299 Roma, Italy;

    Romana Film Sottili, Anzio, Roma, Italy;

    Dept. of Clinical Sciences and Translational Medicine, Tor Vergata University, Via Montpellier 1,00133 Roma, Italy;

    Exotic Animals Clinic, Via S. Giovannini 53,00137 Roma, Italy;

    Exotic Animals Clinic, Via S. Giovannini 53,00137 Roma, Italy;

    Dept. of Radiology, S.M. Goretti Hospital, Via G. Reni 2,04100 Latina, Italy;

    Dept. of Biochemical Sciences, Sapienza University of Roma, Ple A. Moro 5,00185 Roma, Italy;

    Dept. of Biochemical Sciences, Sapienza University of Roma, Ple A. Moro 5,00185 Roma, Italy;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Titanium carbide; Nanostructured thin film; Graphitic carbon; Osseointegration; Osteoblasts; Animal model;

    机译:碳化钛纳米结构薄膜;石墨碳骨整合;成骨细胞;动物模型;

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号