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Intervertebral disc changes in an animal model representing altered mechanics in scoliosis

机译:代表脊柱侧凸改变力学的动物模型中的椎间盘改变

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The intervertebral discs become wedged and narrowed in a scoliosis curve, and this may be due in part to altered biomechanical environment. To study this, external rings were attached by percutaneous pins transfixing adjacent vertebrae in 5-week-old Sprague-Dawley rats and four permutations of mechanical conditions (4 groups of animals) were compared: (A) 15 degrees Angulation, (B) Angulation with 0.1 MPa Compression, (C) 0.1 MPa Compression, and (D) Reduced mobility. These altered mechanical conditions were applied for 5 weeks. After 5 weeks, disc narrowing at the intervention levels was evident in mciro-CT images. Average disc space loss as a percent of the initial values over the 5 weeks was 19%, 28%, 22% and 20% four groups listed above. Increased lateral bending stiffness relative to within-animal controls was also observed at all groups. The minimum stiffness was recorded at an angle close to the in vivo value, indicating that angulated discs had adapted to the imposed deformity. In the angulated and compressed discs there was a small difference in the amount of collagen crimping in the disc annuli between concave and convex sides. All experimental interventions produced substantial changes in the intervertebral discs of these growing animals. 'Reduced mobility' was present in all interventions, and the changes in the discs with reduced mobility alone were comparable with those in loaded and angulated discs. This suggests that imposed reduced mobility is the major source of disc changes, and may be a factor in disc degeneration in scoliosis. Further studies are in progress to characterize gene expression, matrix protein synthesis and composition in these discs.
机译:椎间盘在脊柱侧凸曲线中变得楔入并变窄,这可能部分是由于改变的生物力学环境。为研究这一点,通过经皮销的外圈附着在5周龄Sprague-Dawley大鼠中相邻的椎骨,并比较了四种机械条件(4组动物)的四种排列:(a)15度角度,(b)角度含有0.1MPa压缩,(C)0.1MPa压缩,(D)降低迁移率。将这些改变的机械条件施加5周。 5周后,在麦基CT图像中,干预水平的椎间盘缩小。平均磁盘空间损失为5周内初始值的百分比为19%,28%,22%和20%四组上面列出。在所有组中也观察到相对于动物对照的横向弯曲刚度增加。以靠近体内值的角度记录最小刚度,表明有角度的盘适合于施加的畸形。在角度和压缩盘中,在凹入和凸侧之间的圆盘束中的胶原卷曲的量存在少量差异。所有实验干预措施所有在这些生长动物的椎间盘中产生了大量的变化。在所有干预中存在“减少的流动性”,单独具有降低的迁移率的盘的变化与加载和成角度的圆盘的变化相当。这表明施加的减少的迁移率是椎间盘突变的主要来源,并且可能是脊柱侧凸椎间盘变性的因素。进一步的研究正在进行以表征基因表达,基质蛋白质合成和组合物在这些盘中。

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