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带有钙磷涂层的压入多孔钛颗粒的骨诱导作用与压入同种异体骨颗粒的骨诱导作用相当:非负重山羊模型中的体内研究。

Osteoconduction of impacted porous titanium particles with a calcium-phosphate coating is comparable to osteoconduction of impacted allograft bone particles: in vivo study in a nonloaded goat model.

机构信息

Department of Orthopedics, Radboud University Nijmegen Medical Centre, Nijmegen, The Netherlands.

出版信息

J Biomed Mater Res B Appl Biomater. 2012 Aug;100(6):1483-9. doi: 10.1002/jbm.b.32716. Epub 2012 Jun 16.

Abstract

AIMS

Impaction grafting restores bone defects in hip arthroplasty. Defects are reconstructed with bone particles (BoP) as substitute materials with adequate mechanical and biological properties are not yet available. Ceramic particles (CeP) have mechanical drawbacks as opposed to porous titanium particles (TiP). In this in vivo study, bone ingrowth and bone volume in coated and noncoated TiP were compared to porous biphasic calcium-phospate CeP and allograft BoP. Coatings consisted of silicated calcium-phosphate and carbonated apatite. Materials were implanted in goats and impacted in cylindrical defects (diameter 8 mm) in the cancellous bone of the femur. On the basis of fluorochrome labeling and histology, bone ingrowth distance was measured at 4, 8, and 12 weeks. Cross-sectional bone area was measured at 12 weeks.

FINDINGS

TiP created a coherent matrix of entangled particles. CeP pulverized and were noncoherent. Bone ingrowth in TiP improved significantly by the coatings to levels comparable to BoP and CeP. Cross-sectional bone area was smaller in CeP and TiP compared to BoP.

CONCLUSIONS

The osteoconductive properties of impacted TiP with a calcium-phosphate coating are comparable to impacted allograft bone and impacted biphasic ceramics. A more realistic loaded in vivo study should prove that coated TiP is an attractive alternative to allograft bone.

摘要

目的

压配移植可修复髋关节置换术中的骨缺损。目前还没有机械性能和生物学性能都足够理想的替代骨缺损的骨颗粒(BoP)。陶瓷颗粒(CeP)的机械性能不如多孔钛颗粒(TiP)。在这项体内研究中,将涂层和未涂层 TiP 与多孔双相磷酸钙 CeP 和同种异体 BoP 进行比较,以评估其骨长入和骨体积。涂层由硅化钙磷酸盐和碳酸磷灰石组成。将材料植入山羊体内,并将其压入股骨松质骨中的圆柱形缺损(直径 8mm)中。基于荧光标记和组织学,在 4、8 和 12 周时测量骨长入距离。在 12 周时测量骨横截面积。

结果

TiP 形成了一种纠缠颗粒的连续基质。CeP 粉碎且不成形。涂层显著改善了 TiP 的骨长入,使其达到与 BoP 和 CeP 相当的水平。与 BoP 相比,CeP 和 TiP 的骨横截面积较小。

结论

具有钙磷酸盐涂层的压配 TiP 的骨诱导特性可与同种异体骨和双相陶瓷相媲美。更现实的体内受力研究应证实涂层 TiP 是同种异体骨的一种有吸引力的替代物。

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