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通过3D纤维沉积法制备的多孔钛植入物中的骨长入。

Bone ingrowth in porous titanium implants produced by 3D fiber deposition.

作者信息

Li Jia Ping, Habibovic Pamela, van den Doel Mirella, Wilson Clayton E, de Wijn Joost R, van Blitterswijk Clemens A, de Groot Klaas

机构信息

Department of Tissue Regeneration, Institute for Biomedical Technology, University of Twente, The Netherlands.

出版信息

Biomaterials. 2007 Jun;28(18):2810-20. doi: 10.1016/j.biomaterials.2007.02.020. Epub 2007 Mar 23.

Abstract

3D fiber deposition is a technique that allows the development of metallic scaffolds with accurately controlled pore size, porosity and interconnecting pore size, which in turn permits a more precise investigation of the effect of structural properties on the in vivo behavior of biomaterials. This study analyzed the in vivo performance of titanium alloy scaffolds fabricated using 3D fiber deposition. The titanium alloy scaffolds with different structural properties, such as pore size, porosity and interconnecting pore size were implanted on the decorticated transverse processes of the posterior lumbar spine of 10 goats. Prior to implantation, implant structure and permeability were characterized. To monitor the bone formation over time, fluorochrome markers were administered at 3, 6 and 9 weeks and the animals were sacrificed at 12 weeks after implantation. Bone formation in the scaffolds was investigated by histology and histomorphometry of non-decalcified sections using traditional light- and epifluorescent microscopy. In vivo results showed that increase of porosity and pore size, and thus increase of permeability of titanium alloy implants positively influenced their osteoconductive properties.

摘要

三维纤维沉积是一种能够制造出孔径、孔隙率和连通孔径精确可控的金属支架的技术,这反过来又能更精确地研究结构特性对生物材料体内行为的影响。本研究分析了采用三维纤维沉积制造的钛合金支架的体内性能。将具有不同结构特性(如孔径、孔隙率和连通孔径)的钛合金支架植入10只山羊后腰椎去皮质横突上。植入前,对植入物的结构和渗透性进行了表征。为了监测随时间的骨形成情况,在第3、6和9周给予荧光染料标记物,并在植入后12周处死动物。通过使用传统光学显微镜和落射荧光显微镜对未脱钙切片进行组织学和组织形态计量学分析,研究支架内的骨形成情况。体内结果表明,钛合金植入物孔隙率和孔径的增加,以及由此导致的渗透性增加,对其骨传导性能有积极影响。

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