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短期阿仑膦酸盐治疗对犬松质骨三维微观结构、物理及力学性能的影响。

Effects of short-term alendronate treatment on the three-dimensional microstructural, physical, and mechanical properties of dog trabecular bone.

作者信息

Hu J H, Ding M, Søballe K, Bechtold J E, Danielsen C C, Day J S, Hvid I

机构信息

Orthopaedic Research Laboratory, Department of Orthopaedics, Aarhus University Hospital, Denmark.

出版信息

Bone. 2002 Nov;31(5):591-7. doi: 10.1016/s8756-3282(02)00870-0.

Abstract

The bisphosphonate, alendronate, is well known for its potent inhibition of osteoclast-mediated bone resorption. It has been used clinically for the treatment of osteoporosis and has also recently been used to reduce osteolysis around prostheses in a canine revision model of implant loosening (femoral condyle). In this study, the effects of alendronate on trabecular bone properties were assessed in dogs at an oral dose of 0.5 mg/kg per day over a 12 week period, and compared with control dogs. Cubic cancellous bone specimens were produced from lumbar vertebrae (L-1 and L-2) and bilateral proximal humeri. These specimens were scanned using a high-resolution microcomputed tomography (micro-CT) system. From accurate data sets, three-dimensional microstructural properties were calculated and physical and mechanical properties were determined. Treatment with alendronate increased bone volume fraction by 9.5%, 7.7%, 7.4%, and 18.4%, respectively, in L-1, L-2, humeral greater tuberosity, and humeral head trabecular bone. In the lumbar vertebrae, the alendronate-treated trabeculae were thicker and lower in bone surface-to-volume ratio. In the greater tuberosity, the alendronate-treated trabeculae were thicker, lower in bone surface-to-volume ratio, and less anisotropic. In the humeral head, the alendronate-treated trabeculae were thicker, less anisotropic, lower in surface density, and showed decreased trabecular separation. Alendronate significantly increased apparent density and collagen density in the lumbar vertebrae and humeral heads, and significantly decreased collagen concentration in the vertebrae. In the lumbar vertebrae, Young's modulus in the cephalocaudal direction, ultimate stress, and failure energy were significantly increased in the alendronate-treated group. The changes in mechanical properties in the humeral head trabecular bone were similar to those seen in the lumbar vertebrae. Our results demonstrate that alendronate increases the mechanical properties of healthy canine trabecular bone after short-term treatment. The physical and microstructural changes of trabecular bone are consistent with the significantly increased mechanical properties.

摘要

双膦酸盐阿仑膦酸钠以其对破骨细胞介导的骨吸收的强效抑制作用而闻名。它已被临床用于治疗骨质疏松症,最近还被用于在犬类植入物松动(股骨髁)翻修模型中减少假体周围的骨溶解。在本研究中,以每天0.5 mg/kg的口服剂量对犬进行为期12周的阿仑膦酸钠治疗,评估其对松质骨特性的影响,并与对照犬进行比较。从腰椎(L-1和L-2)和双侧近端肱骨获取立方松质骨标本。使用高分辨率微计算机断层扫描(micro-CT)系统对这些标本进行扫描。根据精确的数据集,计算三维微观结构特性并确定物理和力学性能。阿仑膦酸钠治疗使L-1、L-2、肱骨大结节和肱骨头松质骨的骨体积分数分别增加了9.5%、7.7%、7.4%和18.4%。在腰椎中,阿仑膦酸钠治疗的小梁更厚,骨表面积与体积比更低。在大结节中,阿仑膦酸钠治疗的小梁更厚,骨表面积与体积比更低,各向异性更小。在肱骨头中,阿仑膦酸钠治疗的小梁更厚,各向异性更小,表面密度更低,小梁间距减小。阿仑膦酸钠显著增加了腰椎和肱骨头的表观密度和胶原密度,并显著降低了椎骨中的胶原浓度。在腰椎中,阿仑膦酸钠治疗组在头尾方向的杨氏模量、极限应力和破坏能量显著增加。肱骨头松质骨的力学性能变化与腰椎相似。我们的结果表明,短期治疗后阿仑膦酸钠可提高健康犬松质骨的力学性能。松质骨的物理和微观结构变化与力学性能的显著提高一致。

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