Department of Applied Physics, University of Eastern Finland, P.O. Box 1627, 70211 Kuopio, Finland.
Comput Math Methods Med. 2013;2013:164146. doi: 10.1155/2013/164146. Epub 2013 Mar 24.
The aim of this study was to investigate if the experimentally detected altered chondrocyte volumetric behavior in early osteoarthritis can be explained by changes in the extracellular and pericellular matrix properties of cartilage. Based on our own experimental tests and the literature, the structural and mechanical parameters for normal and osteoarthritic cartilage were implemented into a multiscale fibril-reinforced poroelastic swelling model. Model simulations were compared with experimentally observed cell volume changes in mechanically loaded cartilage, obtained from anterior cruciate ligament transected rabbit knees. We found that the cell volume increased by 7% in the osteoarthritic cartilage model following mechanical loading of the tissue. In contrast, the cell volume decreased by 4% in normal cartilage model. These findings were consistent with the experimental results. Increased local transversal tissue strain due to the reduced collagen fibril stiffness accompanied with the reduced fixed charge density of the pericellular matrix could increase the cell volume up to 12%. These findings suggest that the increase in the cell volume in mechanically loaded osteoarthritic cartilage is primarily explained by the reduction in the pericellular fixed charge density, while the superficial collagen fibril stiffness is suggested to contribute secondarily to the cell volume behavior.
本研究旨在探讨早期骨关节炎中实验检测到的软骨细胞体积行为改变是否可以用软骨细胞外基质和细胞周基质特性的变化来解释。基于我们自己的实验测试和文献,将正常和骨关节炎软骨的结构和力学参数纳入到一个多尺度纤维增强多孔弹性肿胀模型中。模型模拟结果与从前交叉韧带切断的兔膝关节机械加载的软骨中观察到的细胞体积变化进行了比较。我们发现,组织机械加载后,骨关节炎软骨模型中的细胞体积增加了 7%。相比之下,正常软骨模型中的细胞体积减少了 4%。这些发现与实验结果一致。由于胶原纤维束刚度降低和细胞周基质固定电荷密度降低导致的局部横向组织应变增加,可使细胞体积增加高达 12%。这些发现表明,机械加载的骨关节炎软骨中细胞体积的增加主要是由于细胞周固定电荷密度的降低所致,而浅层胶原纤维束的刚度则被认为是细胞体积行为的次要因素。