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电子束熔融、自由成形制造的实心和多孔钛合金的长期生物相容性和骨整合:绵羊的实验研究。

Long-term biocompatibility and osseointegration of electron beam melted, free-form-fabricated solid and porous titanium alloy: experimental studies in sheep.

机构信息

Department of Biomaterials, Sahlgrenska Academy at University of Gothenburg, Göteborg, Sweden.

出版信息

J Biomater Appl. 2013 May;27(8):1003-16. doi: 10.1177/0885328211431857. Epub 2011 Dec 29.

Abstract

The purpose of the present study was to evaluate the long-term osseointegration and biocompatibility of electron beam melted (EBM) free-form-fabricated (FFF titanium grade 5 (Ti6Al4V) implants. Porous and solid machined cylindrical and disk-shaped implants were prepared by EBM and implanted bilaterally in the femur and subcutaneously in the dorsum of the sheep. After 26 weeks, the implants and surrounding tissue were retrieved. The tissue response was examined qualitatively and quantitatively using histology and light microscopic (LM) morphometry. Selected bone implants specimens were evaluated by scanning electron microscopy (SEM), energy dispersive X-ray spectroscopy (EDS), and micro-computed tomography (mCT). The results showed that both porous and solid implants were osseointegrated and high bone-implant contact was observed throughout the porous implant. In the soft tissue, the porous implants showed thinner fibrous encapsulation while no signs of intolerance were observed for either implant type. Taken together, the present experimental results show that FFF Ti6Al4V with and without porous structures demonstrate excellent long-term soft tissue biocompatibility and a high degree of osseointegration. The present findings extend earlier, short-term experimental observations in bone and suggest that EBM, FFF Ti6Al4V implants possess valuable properties in bone and soft tissue applications.

摘要

本研究旨在评估电子束熔化(EBM)自由成形(FFF)钛 5 级(Ti6Al4V)多孔和实心机械加工圆柱形和盘形植入物的长期骨整合和生物相容性。通过 EBM 制备多孔和实心机械加工圆柱形和盘形植入物,并将其双侧植入绵羊股骨和背部皮下。26 周后,取出植入物和周围组织。使用组织学和光镜(LM)形态计量学对组织反应进行定性和定量检查。使用扫描电子显微镜(SEM)、能谱(EDS)和微计算机断层扫描(mCT)对选定的骨植入物标本进行评估。结果表明,多孔和实心植入物均实现了骨整合,并且在整个多孔植入物中观察到高骨-植入物接触。在软组织中,多孔植入物显示出更薄的纤维包封,而两种植入物类型均未观察到不耐受的迹象。综上所述,本实验结果表明,具有和不具有多孔结构的 FFF Ti6Al4V 具有优异的长期软组织生物相容性和高度的骨整合。本研究结果扩展了早期在骨中的短期实验观察结果,并表明 EBM、FFF Ti6Al4V 植入物在骨和软组织应用中具有有价值的特性。

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