Smith Lachlan J, Fazzalari Nicola L
Bone and Joint Research Laboratory, Division of Tissue Pathology, Institute of Medical and Veterinary Science and Hanson Institute, Adelaide, Australia.
J Anat. 2006 Sep;209(3):359-67. doi: 10.1111/j.1469-7580.2006.00610.x.
Elastic fibres are critical components of the extracellular matrix in dynamic biological structures that undergo extension and recoil. Their presence has been demonstrated in the anulus fibrosus of the human lumbar intervertebral disc; however, a detailed regional analysis of their density and arrangement has not been undertaken, limiting our understanding of their structural and functional roles. In this investigation we have quantitatively described regional variations in elastic fibre density in the anulus fibrosus of the human L3-L4 intervertebral disc using histochemistry and light microscopy. Additionally, a multiplanar comparison of patterns of elastic fibre distribution in the intralamellar and interlamellar zones was undertaken. Novel imaging techniques were developed to facilitate the visualization of elastic fibres otherwise masked by dense surrounding matrix. Elastic fibre density was found to be significantly higher in the lamellae of the posterolateral region of the anulus than the anterolateral, and significantly higher in the outer regions than the inner, suggesting that elastic fibre density in each region of the anulus is commensurate with the magnitude of the tensile deformations experienced in bending and torsion. Elastic fibre arrangments in intralamellar and interlamellar zones were shown to be architecturally distinct, suggesting that they perform multiple functional roles within the anulus matrix structural hierarchy.
弹性纤维是动态生物结构中细胞外基质的关键组成部分,这些结构会经历伸展和回弹。在人类腰椎间盘的纤维环中已证实有弹性纤维存在;然而,尚未对其密度和排列进行详细的区域分析,这限制了我们对其结构和功能作用的理解。在本研究中,我们使用组织化学和光学显微镜定量描述了人类L3 - L4椎间盘纤维环中弹性纤维密度的区域差异。此外,还对层内和层间区域的弹性纤维分布模式进行了多平面比较。开发了新的成像技术,以促进对原本被密集的周围基质掩盖的弹性纤维的可视化。结果发现,纤维环后外侧区域的板层中弹性纤维密度明显高于前外侧,外部区域明显高于内部,这表明纤维环各区域的弹性纤维密度与弯曲和扭转时所经历的拉伸变形程度相当。层内和层间区域的弹性纤维排列在结构上明显不同,这表明它们在纤维环基质结构层次中发挥多种功能作用。