The McCaig Institute for Bone & Joint Health, Faculty of Medicine, University of Calgary, Calgary, Alberta, Canada.
Scand J Med Sci Sports. 2011 Aug;21(4):543-53. doi: 10.1111/j.1600-0838.2009.01073.x. Epub 2010 Mar 10.
Menisci help maintain the structural integrity of the knee. However, the poor healing potential of the meniscus following a knee injury can not only end a career in sports but lead to osteoarthritis later in life. Complete understanding of meniscal structure is essential for evaluating its risk for injury and subsequent successful repair. This study used novel approaches to elucidate meniscal architecture. The radial and circumferential collagen fibrils in the meniscus were investigated using novel tissue-preparative techniques for light and electron microscopic studies. The results demonstrate a unique architecture based on differences in the packaging of the fundamental collagen fibrils. For radial arrays, the collagen fibrils are arranged in parallel into ∼10 μm bundles, which associate laterally to form flat sheets of varying dimensions that bifurcate and come together to form a honeycomb network within the body of the meniscus. In contrast, the circumferential arrays display a complex network of collagen fibrils arranged into ∼5 μm bundles. Interestingly, both types of architectural organization of collagen fibrils in meniscus are conserved across mammalian species and are age and sex independent. These findings imply that disruptions in meniscal architecture following an injury contribute to poor prognosis for functional repair.
半月板有助于维持膝关节的结构完整性。然而,膝关节损伤后半月板的愈合潜力差不仅可能结束运动员的职业生涯,还可能导致晚年发生骨关节炎。全面了解半月板结构对于评估其受伤风险和随后的成功修复至关重要。本研究采用新方法阐明了半月板的结构。使用新型组织制备技术对半月板中的径向和环形胶原纤维进行了研究,以便进行光镜和电子显微镜研究。结果表明,基于基本胶原纤维包装的差异,存在独特的结构。对于径向排列,胶原纤维平行排列成约 10μm 的束,这些束侧向结合形成不同尺寸的平板,分叉并汇聚形成半月板体内的蜂窝状网络。相比之下,环形排列显示出胶原纤维的复杂网络,排列成约 5μm 的束。有趣的是,在哺乳动物物种中,半月板中胶原纤维的这两种结构组织都保持不变,与年龄和性别无关。这些发现表明,损伤后半月板结构的破坏会导致功能修复的预后不良。