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大鼠腰椎运动节段的髓核糖胺聚糖含量与轴向力学相关。

Nucleus pulposus glycosaminoglycan content is correlated with axial mechanics in rat lumbar motion segments.

作者信息

Boxberger John I, Sen Sounok, Yerramalli Chandra S, Elliott Dawn M

机构信息

McKay Orthopaedic Research Laboratory, Department of Orthopaedic Surgery, University of Pennsylvania, Philadelphia, Pennsylvania 19104-6081, USA.

出版信息

J Orthop Res. 2006 Sep;24(9):1906-15. doi: 10.1002/jor.20221.

Abstract

The unique biochemical composition and structure of the intervertebral disc allow it to support load, permit motion, and dissipate energy. With degeneration, both the biochemical composition and mechanical behavior of the disc are drastically altered, yet quantitative relationships between the biochemical changes and overall motion segment mechanics are lacking. The objective of this study was to determine the contribution of nucleus pulposus glycosaminoglycan content, which decreases with degeneration, to mechanical function of a rat lumbar spine motion segment in axial loading. Motion segments were treated with varying doses of Chondroitinase-ABC (to degrade glycosaminoglycans) and loaded in axial cyclic compression-tension, followed by compressive creep. Nucleus glycosaminoglycan content was significantly correlated (p < 0.05) with neutral zone mechanical behavior, which occurs in low load transition between tension and compression (stiffness: r = 0.59; displacement: r = -0.59), and with creep behavior (viscous parameter eta(1): r = 0.34; short time constant tau(1): r = 0.46). These results indicate that moderate decreases in nucleus glycosaminoglycan content consistent with early human degeneration affect overall mechanical function of the disc. These decreases may expose the disc to altered internal stress and strain patterns, thus contributing through mechanical or biological mechanisms to the degenerative cascade.

摘要

椎间盘独特的生化组成和结构使其能够承受负荷、允许运动并消散能量。随着退变,椎间盘的生化组成和力学行为都会发生显著改变,但目前尚缺乏生化变化与整体运动节段力学之间的定量关系。本研究的目的是确定髓核糖胺聚糖含量(随退变而降低)对大鼠腰椎运动节段轴向加载力学功能的贡献。对运动节段用不同剂量的软骨素酶ABC进行处理(以降解糖胺聚糖),并进行轴向循环压缩-拉伸加载,随后进行压缩蠕变试验。髓核糖胺聚糖含量与中性区力学行为显著相关(p < 0.05),中性区力学行为发生在拉伸和压缩之间的低负荷过渡阶段(刚度:r = 0.59;位移:r = -0.59),并且与蠕变行为相关(粘性参数eta(1):r = 0.34;短时间常数tau(1):r = 0.46)。这些结果表明,与人类早期退变一致的髓核糖胺聚糖含量适度降低会影响椎间盘的整体力学功能。这些降低可能会使椎间盘暴露于改变的内部应力和应变模式下,从而通过机械或生物学机制促成退变级联反应。

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