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对具有阳极氧化表面的钛锆(aTiZr)种植体进行组织形态计量学和组织学评估。

Histomorphometric and histologic evaluation of titanium-zirconium (aTiZr) implants with anodized surfaces.

作者信息

Sharma Ajay, McQuillan A James, Shibata Yo, Sharma Lavanya A, Waddell John Neil, Duncan Warwick John

机构信息

Faculty of Dentistry, Sir John Walsh Research Institute, University of Otago, 310 Great King Street, Dunedin, 9016, New Zealand.

Department of Chemistry, University of Otago, Dunedin, New Zealand.

出版信息

J Mater Sci Mater Med. 2016 May;27(5):86. doi: 10.1007/s10856-016-5695-4. Epub 2016 Mar 12.

Abstract

The choice of implant surface has a significant influence on osseointegration. Modification of TiZr surface by anodization is reported to have the potential to modulate the osteoblast cell behaviour favouring more rapid bone formation. The aim of this study is to investigate the effect of anodizing the surface of TiZr discs with respect to osseointegration after four weeks implantation in sheep femurs. Titanium (Ti) and TiZr discs were anodized in an electrolyte containing DL-α-glycerophosphate and calcium acetate at 300 V. The surface characteristics were analyzed by scanning electron microscopy, electron dispersive spectroscopy, atomic force microscopy and goniometry. Forty implant discs with thickness of 1.5 and 10 mm diameter (10 of each-titanium, titanium-zirconium, anodized titanium and anodized titanium-zirconium) were placed in the femoral condyles of 10 sheep. Histomorphometric and histologic analysis were performed 4 weeks after implantation. The anodized implants displayed hydrophilic, porous, nano-to-micrometer scale roughened surfaces. Energy dispersive spectroscopy analysis revealed calcium and phosphorous incorporation into the surface of both titanium and titanium-zirconium after anodization. Histologically there was new bone apposition on all implanted discs, slightly more pronounced on anodised discs. The percentage bone-to-implant contact measurements of anodized implants were higher than machined/unmodified implants but there was no significant difference between the two groups with anodized surfaces (P > 0.05, n = 10). The present histomorphometric and histological findings confirm that surface modification of titanium-zirconium by anodization is similar to anodised titanium enhances early osseointegration compared to machined implant surfaces.

摘要

种植体表面的选择对骨整合有显著影响。据报道,通过阳极氧化对钛锆表面进行改性有可能调节成骨细胞行为,促进更快的骨形成。本研究的目的是调查在绵羊股骨中植入四周后,对钛锆盘表面进行阳极氧化处理对骨整合的影响。将钛(Ti)盘和钛锆盘在含有DL-α-甘油磷酸酯和醋酸钙的电解液中于300V电压下进行阳极氧化处理。通过扫描电子显微镜、电子能谱、原子力显微镜和测角术对表面特性进行分析。将40个厚度为1.5mm、直径为10mm的种植盘(每种各10个——钛盘、钛锆盘、阳极氧化钛盘和阳极氧化钛锆盘)植入10只绵羊的股骨髁中。植入4周后进行组织形态计量学和组织学分析。阳极氧化处理后的种植体表面呈现亲水性、多孔性,具有纳米到微米尺度的粗糙表面。能谱分析显示,阳极氧化处理后,钙和磷融入了钛和钛锆的表面。组织学检查发现,所有植入盘上均有新骨附着,在阳极氧化处理后的盘上更为明显。阳极氧化处理后的种植体的骨-种植体接触百分比测量值高于机械加工/未改性的种植体,但两组阳极氧化处理后的表面之间无显著差异(P>0.05,n=10)。目前的组织形态计量学和组织学研究结果证实,与机械加工的种植体表面相比,通过阳极氧化对钛锆进行表面改性与阳极氧化钛类似,可增强早期骨整合。

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