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Osteoblast and bone tissue response to surface modified zirconia and titanium implant materials

机译:成骨细胞和骨组织对表面改性的氧化锆和钛植入物材料的反应

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摘要

Objective. This study examined the in uitro and in vivo response of osteoblasts to a novel, acid-etched and sandblasted zirconia surface. Methods. Osteoblastic hFOB 1.19 cells were cultured either on electrochemically anodized titanium (TiUnite®), machined titanium (Ti-m), sandblasted and acid-etched zirconia (TZP-proc), and machined zirconia (TZP-A-m). The surface topography of the various substrates was analyzed by 3D laserscan measurements and scanning electron microscopy. At culture days 1, 3, 7,14, 21, and 28, cell proliferation was determined. Gene expression was analyzed using RT-PCR. Histologic analysis and biomechanical testing was performed on miniature implants placed in the rat femur. Results. During the first 7 days, a retarded cell proliferation was observed on the TiUnite® surface. After 28 days of cultivation, cell proliferation reached similar levels on all surfaces. An up-regulation of bone and extracellular matrix specific genes could be seen for TZP-proc at day 21. The mean bone-implant contact rate after a healing period of 14 and 28 days, respectively, was higher for TiUnite® than for TZP-proc. At 28 day, the biomechanical test showed significantly higher values for TiUnite® than for all other surfaces. Significance. The novel, rough zirconia surface was accepted by hFOB 1.19 cells and integrates into rat bone tissue. However, osseointegration seemed to proceed more slowly and to a lesser extent compared to a moderately roughened titanium surface.
机译:目的。这项研究检查了成骨细胞对新型,酸蚀和喷砂氧化锆表面的体外和体内反应。方法。将成骨细胞hFOB 1.19细胞培养在电化学阳极氧化的钛(TiUnite®),机加工的钛(Ti-m),喷砂和酸蚀的氧化锆(TZP-proc)和机加工的氧化锆(TZP-A-m)上。通过3D激光扫描测量和扫描电子显微镜分析各种基材的表面形貌。在培养的第1、3、7、14、21和28天,确定细胞增殖。使用RT-PCR分析基因表达。对放置在大鼠股骨中的微型植入物进行了组织学分析和生物力学测试。结果。在最初的7天中,在TiUnite®表面观察到细胞增殖受阻。培养28天后,细胞在所有表面上的增殖达到相似的水平。在第21天,TZP-proc的骨和细胞外基质特异性基因上调。TiUnite®分别在愈合14天和28天后的平均骨-植入物接触率高于TZP- proc。在第28天时,生物力学测试显示TiUnite®的值明显高于所有其他表面。意义。 hFOB 1.19细胞接受了新颖的粗糙氧化锆表面,并整合到大鼠骨组织中。然而,与中等粗糙化的钛表面相比,骨整合似乎进行得更慢且程度更小。

著录项

  • 来源
    《Dental materials》 |2013年第7期|763-776|共14页
  • 作者单位

    Department of Prosthodontics, School o/Dentistry, University Hospital Freiburg, Hugstetter Str. 55, 79106 Freiburg, Germany;

    Department of Prosthodontics, School o/Dentistry, University Hospital Freiburg, Hugstetter Str. 55, 79106 Freiburg, Germany;

    Department of Prosthodontics, School o/Dentistry, University Hospital Freiburg, Hugstetter Str. 55, 79106 Freiburg, Germany;

    Department of Prosthodontics, School o/Dentistry, University Hospital Freiburg, Hugstetter Str. 55, 79106 Freiburg, Germany;

    Department of Prosthodontics, School o/Dentistry, University Hospital Freiburg, Hugstetter Str. 55, 79106 Freiburg, Germany;

    Fraunhofer Institute for Mechanics of Materials IWM, Woehlerstr. 11, 79108 Freiburg, Germany;

    Department of Prosthodontics, School o/Dentistry, University Hospital Freiburg, Hugstetter Str. 55, 79106 Freiburg, Germany;

  • 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

    Dental implants; Zirconia; Surface topography; Histomorphometry; Push-in test; Cell-culture study; Rats;

    机译:牙种植体;氧化锆表面形貌;组织形态计量学;推入测试;细胞培养研究;老鼠;
  • 入库时间 2022-08-18 03:47:03

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