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骨水泥在兔胫骨皮质表面的粘结能力评估。

Bonding ability evaluation of bone cement on the cortical surface of rabbit's tibia.

机构信息

Department of Orthopaedic Surgery, Faculty of Medicine, Kyoto University, Kawahara-cho 54, Shogoin, Sakyo-ku, Kyoto 606-8507, Japan.

出版信息

J Mater Sci Mater Med. 2010 Jan;21(1):139-46. doi: 10.1007/s10856-009-3861-7.

Abstract

A composite bone cement designated G2B1 that contains beta tricalcium phosphate particles was developed as a bone substitute for percutaneous transpedicular vertebroplasty. In this study, both G2B1 and commercial PMMA bone cement (CMW1) were implanted into proximal tibiae of rabbits, and their bone-bonding strengths were evaluated at 4, 8, 12 and 16 weeks after implantation. Some of the specimens were evaluated histologically using Giemsa surface staining, contact microradiography (CMR) and scanning electron microscopy (SEM). Histological findings showed that G2B1 contacted bone directly without intervening soft tissue in the specimens at each time point, while there was always a soft tissue layer between CMW1 and bone. The bone-bonding strength of G2B1 was significantly higher than that of CMW1 at each time point, and significantly increased from 4 weeks to 8 and 12 weeks, while it decreased significantly from 12 weeks to 16 weeks. Bone remodeling of the cortex under the cement was observed especially for G2B1 and presumably influenced the bone bonding strength of the cement. The results indicate that G2B1 has bioactivity, and bone bonding strength of bioactive bone cements can be estimated fairly with this experimental model in the short term.

摘要

一种名为 G2B1 的复合骨水泥,其中含有β-磷酸三钙颗粒,被开发为经皮经椎弓根椎体后凸成形术的骨替代物。在这项研究中,将 G2B1 和商用 PMMA 骨水泥(CMW1)分别植入兔的胫骨近端,并在植入后 4、8、12 和 16 周评估它们的骨结合强度。对部分标本进行了 Giemsa 表面染色、接触显微 X 线摄影(CMR)和扫描电子显微镜(SEM)评估。组织学发现,G2B1 在每个时间点的标本中直接与骨接触,没有中间软组织,而 CMW1 与骨之间始终存在一层软组织。G2B1 的骨结合强度在每个时间点均显著高于 CMW1,并从 4 周增加到 8 周和 12 周,而从 12 周增加到 16 周时则显著降低。在水泥下皮质骨的骨重塑被观察到,尤其是 G2B1,这可能影响了水泥的骨结合强度。结果表明 G2B1 具有生物活性,并且可以通过该实验模型在短期内对生物活性骨水泥的骨结合强度进行合理估计。

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