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ISSLS prize winner: Adaptations to the multifidus muscle in response to experimentally induced intervertebral disc degeneration.

机译:ISSLS获奖者:适应多裂肌,以响应实验诱发的椎间盘退变。

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STUDY DESIGN: Basic science study of the rabbit multifidus muscle response to intervertebral disc degeneration. OBJECTIVE: To assess changes in passive mechanical properties, associated protein structure, and histology of multifidus in response to disc degeneration produced by experimental needle puncture. SUMMARY OF BACKGROUND DATA: Relationships have been reported between muscle dysfunction and low back injury; however, little is known about the cause and effect of such relationships. METHODS: Twelve rabbits were studied; 4 in each of 3 groups: control, 4-weeks postintervertebral disc injury (4-week disc degeneration), and 12-weeks postintervertebral disc injury (12-week disc degeneration). Single multifidus fibers and bundles of fibers were isolated and tested for slack sarcomere length and elastic modulus. Titin isoform mass, myosin heavy chain distribution, and muscle histology were also examined. RESULTS: Compared to control, individual muscle fibers were 34% stiffer and fiber bundles 107% stiffer in the 12-week disc degeneration group. No changes were detected at 4-week disc degeneration. No statistically significant change was found for MHC distribution in the 12-week disc degeneration group when compared to control, whereas titin isoforms were larger (P < 0.05) in the 12-week disc degeneration group. Histology revealed select regions of multifidus, at 12-week disc degeneration, with increased space between bundles of fibers, which in some instances was partly occupied by adipose tissue. CONCLUSION: Multifidus becomes stiffer, both in individual fibers and fiber bundles, in response to experimentally induced intervertebral disc degeneration. This cannot be explained by change in fiber-type due to reduced muscle use, nor by the increased size of the protein titin (which would reduce stiffness). We hypothesize that fiber bundles become stiffer by proliferation and/or reorganization of collagen content within the muscle but the basis for fiber stiffening is not known.
机译:研究设计:兔多裂肌对椎间盘退变反应的基础科学研究。目的:评估被动针刺性椎间盘退变所引起的被动力学特性,相关蛋白质结构和多纤维组织学变化。背景资料摘要:据报道,肌肉功能障碍与下背部受伤之间存在关系。但是,关于这种关系的原因和结果知之甚少。方法:研究了十二只兔子。 3组中的每组4个:对照组,椎间盘损伤4周(4周椎间盘退变)和椎间盘损伤12周(12周椎间盘退变)。分离出多股纤维和纤维束,并测试松弛的肌节长度和弹性模量。还检查了钛蛋白同工型质量,肌球蛋白重链分布和肌肉组织学。结果:与对照组相比,在12周椎间盘退变组中,单个肌肉纤维的硬度增加了34%,纤维束的硬度增加了107%。在4周椎间盘退变时未检测到变化。与对照组相比,在12周椎间盘退变组中,MHC分布没有统计学上的显着变化,而在12周椎间盘退变组中,titin同工型更大(P <0.05)。组织学显示,多裂肌的选定区域在椎间盘退变12周时,纤维束之间的空间增加,在某些情况下,纤维束的一部分被脂肪组织占据。结论:由于实验诱发的椎间盘退变,多纤维在单个纤维和纤维束中都变硬。这不能解释为由于减少肌肉使用而导致的纤维类型变化,也不能解释为蛋白滴定蛋白尺寸的增加(这会降低硬度)。我们假设纤维束会由于肌肉内胶原含量的增生和/或重组而变硬,但纤维变硬的基础尚不清楚。

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