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首页> 外文期刊>Rheumatology >Decreased bone strength in HLA-B27 transgenic rat model of spondyloarthropathy.
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Decreased bone strength in HLA-B27 transgenic rat model of spondyloarthropathy.

机译:HLA-B27转基因大鼠脊柱关节炎模型的骨强度降低。

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摘要

OBJECTIVE: To investigate the nature of osteopenia/osteoporosis in spondyloarthropathy, an inflammatory disorder, using the HLA-B27 transgenic rat model. METHODS: HLA-B27 transgenic rats were housed individually and sacrificed at the peak of their disease (8-month-old). The spine and femurs were removed and stored in saline at -20 degrees C until analysis. The bone structure and strength were determined using a micro-computed tomography (micro-CT) device (Scanco Medical) and mechanical testing (Instron 5543). Vertebral bodies and femurs were scanned to determine trabecular structural properties in terms of bone volume (BV/TV), trabecular thickness, and spacing. After scanning, the mid-shaft femurs were subjected to a 3-point bending test (along anterior-posterior direction), the femoral necks were tested in bending, and the vertebral bodies (L4) were tested in compression. Structural (ultimate/yield load, stiffness) and apparent material (ultimate/yield stress, modulus) strength parameters were then determined. RESULTS: The majority of the bone structural and strength parameters were significantly lower (P < 0.05) in the HLA-B27 transgenic rats as compared with control littermates. Micro-CT data suggested that the transgenic animals had lower BV/TV and trabecular thickness in their vertebral bodies. The poor trabecular structure observed in HLA-B27 rats is also indicative of the poor biomechanical strength properties in the vertebral bodies as well. CONCLUSION: The HLA-B27 transgenic rats develop bone fragility similar to that seen in spondyloarthropathy and may be an important model for the study of osteoporosis in spondyloarthropathy.
机译:目的:使用HLA-B27转基因大鼠模型研究骨质疏松症/骨质疏松症(一种炎症性疾病)的性质。方法:将HLA-B27转基因大鼠单独饲养并在其疾病高峰(8个月大)处死。去除脊柱和股骨并在-20℃下储存在盐水中直至分析。使用微型计算机断层扫描(micro-CT)设备(Scanco Medical)和机械测试(Instron 5543)确定骨骼结构和强度。扫描椎体和股骨,以骨量(BV / TV),小梁厚度和间距确定小梁的结构特性。扫描后,对中轴股骨进行三点弯曲测试(沿前后方向),对股骨颈进行弯曲测试,对椎体(L4)进行压缩测试。然后确定结构(极限/屈服载荷,刚度)和表观材料(极限/屈服应力,模量)强度参数。结果:与对照组相比,HLA-B27转基因大鼠的大多数骨骼结构和强度参数均显着降低(P <0.05)。 Micro-CT数据表明,转基因动物的椎体BV / TV和小梁厚度较低。在HLA-B27大鼠中观察到的小梁结构不良也表明椎体的生物力学强度特性也较差。结论:HLA-B27转基因大鼠的骨质脆性类似于脊椎关节炎,可能是研究脊椎骨质疏松症的重要模型。

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