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首页> 外文期刊>Orthopaedic surgery >Accumulated Spinal Axial Biomechanical Loading Induces Degeneration in Intervertebral Disc of Mice Lumbar Spine
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Accumulated Spinal Axial Biomechanical Loading Induces Degeneration in Intervertebral Disc of Mice Lumbar Spine

机译:累积脊柱轴向生物力学载量诱导小鼠腰椎椎间盘的退化

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Objective: To investigate the effect of accumulated spinal axial biomechanical loading on mice lumbar disc and the feasibility of applying this method to establish a mice intervertebral disc degeneration model using a custom-made hot plate cage. In previous studies, we observed that the motion pattern of mice was greatly similar to that of humans when they were standing and jumping on their lower limbs. There is little data to demonstrate whether or not accumulated spinal axial biomechanical loading could induce intervertebral disc degeneration in vivo.Methods: Twenty-four O-week-old mice were randomly divided into model 1-month and 3-month groups, and control 1-month and 3-month groups (n = 6 per group). The model groups was transferred into the custom-made hot plate cage three times per day for modeling. The control group was kept in a regular cage. The intervertebral disc samples of the L_3-L_5 were harvested for histologic, molecular, and immunohistochemical studies after modeling for 1 and 3 months. Results: Accumulated spinal axial biomechanical loading affects the histologic, molecular, and immunohistochemical changes of mice L_3_L_5 intervertebral discs. Decreased height of disc and endplate, fissures of annul us fibrosus, and ossification of cartilage endplate were found in morphological studies. Immunohistochemical studies of the protein level showed a similar expression of type II collagen at 1 month, but a slightly decreased expression at 3 months, and an increased expression level of type X collagen and matrix metalloproteinase 13 (MMP13). Molecular studies showed that Colllal and aggrecan mRNA expression levels were slightly increased at 1 month (P > 0.05), but then decreased slightly (P > 0.05). ColXa1, ADAMTS-5, and MMP-13 expression levels werer increased both at 1 and 3 months (P < 0.05). In addition, increased expression of Runx2 was observed. Conclusion: Accumulated spinal axial loading provided by a custom-made hot plate accelerated mice lumbar disc and especially endplate degeneration. However, this method requires further development to establish a lumbar disc degeneration model.
机译:目的:探讨积累脊柱轴向生物力学载荷对小鼠腰椎间盘的影响及应用这种方法的可行性,使用定制热板笼建立小鼠椎间盘退化模型。在以前的研究中,我们观察到小鼠的运动模式与人类站立和跳跃在其下肢时大大类似。几乎没有数据来证明累积的脊柱轴向生物力学负载是否可以在体内诱导椎间盘退化。方法:24只O周龄小鼠随机分为1个月和3个月的组,并控制1 -Month和3个月的组(每组n = 6)。模型组每天将三次转移到定制的热板笼中进行建模。对照组保持在常规笼中。在建模1和3个月后收获L_3-L_5的椎间盘样品,用于组织学,分子和免疫组化研究。结果:累积脊柱轴向生物力学负荷影响小鼠L_3_L_5椎间盘的组织学,分子和免疫组化变化。在形态学研究中发现了圆盘和端板的圆盘和端板的高度,纤维化的裂缝,以及软骨底板的骨化。蛋白质水平的免疫组织化学研究表明,在1个月内表达II型胶原蛋白,但在3个月内表达略微降低,以及X型胶原蛋白和基质金属蛋白酶13的表达水平增加(MMP13)。分子研究表明,在1个月(P> 0.05)下,电极和聚集体mRNA表达水平略微增加,但随后略微降低(P> 0.05)。 COLXA1,ADAMTS-5和MMP-13表达水平WERER在1和3个月内增加(P <0.05)。此外,观察到runx2的表达增加。结论:定制的热板提供的累积脊柱轴向载荷加速小鼠腰椎间盘,特别是端板变性。然而,该方法需要进一步发展以建立腰椎椎间盘退化模型。

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