Bursac P, Arnoczky S, York A
Sports Medicine Group, RTI Biologics, Inc., Alachua, FL 32615, USA.
Biorheology. 2009;46(3):227-37. doi: 10.3233/BIR-2009-0537.
The menisci of the knee play a significant role in the complex biomechanics of the joint and are critically important in maintaining articular cartilage health. While a general form-function relationship has been identified for the structural orientation of the extra-cellular matrix of the meniscus, the role of individual biochemical components has yet to be fully explored. To determine if correlations exist between the dynamic and static compressive modulus of human menisci and their major extra-cellular matrix constituents (collagen, glycosoaminoglycan and water content), 12 lateral and 11 medial menisci from 13 adult donors were examined. The results showed that in dynamic compression at high loading frequencies (0.1-1 Hz) the menisci behave as a rubber-like elastic material while at lower frequencies (0.01-0.03 Hz) significant viscous dissipation occurs. While regional variations in compressive moduli and extra-cellular matrix composition were observed, the magnitude of both dynamic and static compressive moduli were found to be insensitive to collagen content (p>0.4). However, this magnitude was found to significantly increase with increasing glycosaminoglycan content (p<0.001) and significantly decrease with increasing water content (p<0.001). The results of this study identify significant relationships between the viscoelastic behavior of the meniscus and its extra-cellular matrix composition.
膝关节半月板在关节复杂的生物力学中发挥着重要作用,对维持关节软骨健康至关重要。虽然已经确定了半月板细胞外基质结构取向的一般形式-功能关系,但单个生化成分的作用尚未得到充分探索。为了确定人类半月板的动态和静态压缩模量与其主要细胞外基质成分(胶原蛋白、糖胺聚糖和含水量)之间是否存在相关性,研究人员检查了来自13名成年捐赠者的12个外侧半月板和11个内侧半月板。结果表明,在高加载频率(0.1-1Hz)的动态压缩中,半月板表现为橡胶状弹性材料,而在较低频率(0.01-0.03Hz)时,会发生显著的粘性耗散。虽然观察到压缩模量和细胞外基质组成存在区域差异,但发现动态和静态压缩模量的大小对胶原蛋白含量不敏感(p>0.4)。然而,发现该大小随着糖胺聚糖含量的增加而显著增加(p<0.001),并随着含水量的增加而显著降低(p<0.001)。本研究结果确定了半月板的粘弹性行为与其细胞外基质组成之间的重要关系。