Department of Bioengineering, Rice University, Houston, TX, USA.
Biomech Model Mechanobiol. 2012 Sep;11(7):1047-56. doi: 10.1007/s10237-012-0372-0. Epub 2012 Jan 10.
Central to understanding mechanotransduction in the knee meniscus is the characterization of meniscus cell mechanics. In addition to biochemical and geometric differences, the inner and outer regions of the meniscus contain cells that are distinct in morphology and phenotype. This study investigated the regional variation in meniscus cell mechanics in comparison with articular chondrocytes and ligament cells. It was found that the meniscus contains two biomechanically distinct cell populations, with outer meniscus cells being stiffer (1.59 ± 0.19 kPa) than inner meniscus cells (1.07 ± 0.14 kPa). Additionally, it was found that both outer and inner meniscus cell stiffnesses were similar to ligament cells (1.32 ± 0.20 kPa), and articular chondrocytes showed the highest stiffness overall (2.51 ± 0.20 kPa). Comparison of compressibility characteristics of the cells showed similarities between articular chondrocytes and inner meniscus cells, as well as between outer meniscus cells and ligament cells. These results show that cellular biomechanics vary regionally in the knee meniscus and that meniscus cells are biomechanically similar to ligament cells. The mechanical properties of musculoskeletal cells determined in this study may be useful for the development of mathematical models or the design of experiments studying mechanotransduction in a variety of soft tissues.
理解膝关节半月板的力学转导的核心是半月板细胞力学的特征描述。除了生化和几何差异外,半月板的内、外区域还包含在形态和表型上有明显区别的细胞。本研究调查了半月板细胞力学的区域变化,并与关节软骨细胞和韧带细胞进行了比较。结果发现,半月板包含两种具有不同生物力学特性的细胞群体,外侧半月板细胞(1.59 ± 0.19 kPa)比内侧半月板细胞(1.07 ± 0.14 kPa)更硬。此外,还发现外侧和内侧半月板细胞的刚度均与韧带细胞相似(1.32 ± 0.20 kPa),而关节软骨细胞的整体刚度最高(2.51 ± 0.20 kPa)。对细胞压缩特性的比较表明,关节软骨细胞和内侧半月板细胞之间以及外侧半月板细胞和韧带细胞之间存在相似性。这些结果表明,膝关节半月板的细胞生物力学在区域上存在差异,半月板细胞在生物力学上与韧带细胞相似。本研究中确定的肌肉骨骼细胞的机械性能可能有助于开发用于研究各种软组织力学转导的数学模型或实验设计。