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改性微弧氧化处理钛植入物的组织学评估及表面成分分析

Histological evaluation and surface componential analysis of modified micro-arc oxidation-treated titanium implants.

作者信息

Ma Wei, Wei Jian-Hua, Li Ying-Zhe, Wang Xin-Mu, Shi Hui-Ying, Tsutsumi Sadami, Li De-Hua

机构信息

Department of Dental Implant, School of Stomatology, Fourth Military Medical University, Xi'an 710032, People's Republic of China.

出版信息

J Biomed Mater Res B Appl Biomater. 2008 Jul;86(1):162-9. doi: 10.1002/jbm.b.31002.

Abstract

The objective of this study is to investigate soft tissue and bone tissue reaction to titanium implants treated by a modified micro arc oxidation (MAO) technique, and analyze the surface components and implant-bone contact ratio by animal experiments to evaluate the osseointegration condition of implants with this modified MAO surface. MAO titanium plates were installed subcutaneously in rabbits. Tissue reaction was evaluated by HE sections. MAO titanium implants designed for endosseous examination were installed in Beagles' femurs. Bone tissue surrounding implants was analyzed histologically. Surfaces of retrieved implants were observed and examined by SEM and EDX. All procedures were performed under the control of untreated pure titanium implants. Thin homogeneous fibrous envelope could be found without apparent inflammation cells infiltration around the subcutaneously imbedded MAO titanium plates, which was almost same as control group. Fast osteoid deposition comprising high content of calcium, phosphor, carbon, and nitrogen elements was found on the retrieved MAO implant surfaces, while comparatively less amount of carbon and nitrogen elements were found on the retrieved implants of control group. Matured bone tissue comprising bone trabeculae and Haversian canals appeared in 8 weeks, while it took 12 weeks needed to form matured bone tissue in control group. In conclusion, MAO titanium materials shows good biocompatibility and calcium phosphate inducement capability in vivo and could accelerate bone tissue growth and shorten the osseointegration time.

摘要

本研究的目的是通过动物实验研究经改良微弧氧化(MAO)技术处理的钛植入物的软组织和骨组织反应,分析其表面成分及种植体与骨的接触率,以评估具有这种改良MAO表面的种植体的骨整合情况。将MAO钛板皮下植入兔子体内。通过苏木精-伊红(HE)切片评估组织反应。将设计用于骨内检查的MAO钛植入物植入比格犬的股骨中。对植入物周围的骨组织进行组织学分析。对回收的植入物表面进行扫描电子显微镜(SEM)和能谱仪(EDX)观察和检测。所有操作均在未处理的纯钛植入物对照下进行。在皮下植入的MAO钛板周围可发现薄而均匀的纤维包膜,无明显炎症细胞浸润,这与对照组几乎相同。在回收的MAO植入物表面发现快速类骨质沉积,其中钙、磷、碳和氮元素含量较高,而在对照组回收的植入物上发现的碳和氮元素相对较少。8周时出现了包含骨小梁和哈弗斯管的成熟骨组织,而对照组则需要12周才能形成成熟骨组织。总之,MAO钛材料在体内表现出良好的生物相容性和磷酸钙诱导能力,可加速骨组织生长并缩短骨整合时间。

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