Department of Mechanical Engineering-Engineering Mechanics, Michigan Technological University, Houghton, MI 49931, USA.
Acta Biomater. 2013 May;9(5):6624-9. doi: 10.1016/j.actbio.2012.12.033. Epub 2013 Jan 12.
Menisci are two crescent shaped fibrocartilaginous structures that provide fundamental load distribution and support within the knee joint. Their unique shape transmits axial stresses (i.e. "body force") into hoop or radial stresses. The menisci are primarily an inhomogeneous aggregate of glycosaminoglycans (GAGs) supporting bulk compression and type I collagen fibrils sustaining tension. It has been shown that the superficial meniscal layers are functionally homogeneous throughout the three distinct regions (anterior, central and posterior) using a 300 μm diameter spherical indenter tip, but the deep zone of the meniscus has yet to be mechanically characterized at this scale. Furthermore, the distribution and content of GAG throughout the human meniscal cross-section have not been examined. This study investigated the mechanical properties, via indentation, of the human deep zone meniscus among three regions of the lateral and medial menisci. The distribution of GAGs through the cross-section was also documented. Results for the deep zone of the meniscus showed the medial posterior region to have a significantly greater instantaneous elastic modulus than the central region. No significant differences in the equilibrium modulus were seen when comparing regions or the hemijoint. Histological results revealed that GAGs are not present until at least ~600 μm from the meniscal surface. Understanding the role and distribution of GAG within the human meniscus in conjunction with the material properties of the meniscus will aid in the design of tissue engineered meniscal replacements.
半月板是两个新月形的纤维软骨结构,为膝关节提供基本的负荷分布和支撑。它们独特的形状将轴向应力(即“体力”)传递为环向或径向应力。半月板主要是糖胺聚糖(GAG)的不均匀聚集物,支持体压缩,I 型胶原纤维维持张力。已经表明,使用直径为 300μm 的球形压头,在三个不同区域(前、中、后)中,半月板的浅层具有功能均匀性,但在该尺度上尚未对半月板的深层进行机械特性表征。此外,GAG 在整个半月板横截面中的分布和含量尚未得到检查。本研究通过压痕法研究了外侧和内侧半月板三个区域的人半月板深层的力学特性。还记录了 GAG 在横截面中的分布。半月板深层的结果表明,内侧后区域的瞬时弹性模量明显大于中央区域。比较区域或半关节时,平衡模量没有显著差异。组织学结果表明,GAG 至少要到距半月板表面~600μm 处才出现。了解 GAG 在人半月板中的作用和分布以及半月板的材料特性将有助于设计组织工程半月板替代物。