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Osteoarthritic changes in the biphasic mechanical properties of the chondrocyte pericellular matrix in articular cartilage

机译:关节软骨软骨细胞周细胞基质的双相力学特性的骨关节炎变化

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摘要

The pericellular matrix (PCM) is a narrow region of cartilaginous tissue that surrounds chondrocytes in articular cartilage. Previous modeling studies indicate that the mechanical properties of the PCM relative to those of the extracellular matrix (ECM) can significantly affect the stress-strain, fluid flow, and physicochemical environments of the chondrocyte, suggesting that the PCM plays a biomechanical role in articular cartilage. The goals of this study were to measure the mechanical properties of the PCM using micropipette aspiration coupled with a linear biphasic finite element model, and to determine the alterations in the mechanical properties of the PCM with osteoarthritis (OA). Using a recently developed isolation technique, chondrons (the chondrocyte and its PCM) were mechanically extracted from non-degenerate and osteoarthritic human cartilage. The transient mechanical behavior of the PCM was well-described by a biphasic model, suggesting that the viscoelastic response of the PCM is attributable to flow-dependent effects, similar to that of the ECM. With OA, the mean Young's modulus of the PCM was significantly decreased (38.7 +/- 16.2 kPa vs. 23.5 +/- 12.9 kPa, p < 0.001), and the permeability was significantly elevated (4.19 +/- 3.78 x 10(-17)m(4)/N s vs. 10.2+/-9.38 x 10(-11)m(4) /N s, p < 0.001). The Poisson's ratio was similar for both non-degenerate and OA PCM (0.044 + 0.063 vs. 0.030 +/- 0.068, p > 0.6). These findings suggest that the PCM may undergo degenerative processes with OA, similar to those occurring in the ECM. In combination with previous theoretical models of cell-matrix interactions in cartilage, our findings suggest that changes in the properties of the PCM with OA may have an important influence on the biomechanical environment of the chondrocyte. (C) 2004 Elsevier Ltd. All rights reserved.
机译:细胞周围基质(PCM)是软骨组织的狭窄区域,围绕着关节软骨中的软骨细胞。先前的建模研究表明,PCM相对于细胞外基质(ECM)的机械性能可以显着影响软骨细胞的应力应变,流体流动和理化环境,这表明PCM在关节软骨中起着生物力学作用。 。这项研究的目的是使用微量移液器抽吸和线性双相有限元模型来测量PCM的机械性能,并确定骨关节炎(OA)的PCM的机械性能的变化。使用最新开发的隔离技术,可以从非变性和骨关节炎的人软骨中机械提取软骨(软骨细胞及其PCM)。 PCM的瞬态力学行为已通过双相模型很好地描述,这表明PCM的粘弹性响应可归因于流量依赖性效应,类似于ECM。使用OA时,PCM的平均杨氏模量显着降低(38.7 +/- 16.2 kPa与23.5 +/- 12.9 kPa,p <0.001),磁导率显着提高(4.19 +/- 3.78 x 10(- 17)m(4)/ Ns与10.2 +/- 9.38 x 10(-11)m(4)/ Ns,p <0.001)。非变性和OA PCM的泊松比相似(0.044 + 0.063对0.030 +/- 0.068,p> 0.6)。这些发现表明,PCM可能会发生OA的退化过程,类似于ECM中发生的过程。结合以前的软骨中细胞-基质相互作用的理论模型,我们的发现表明,OA的PCM特性的变化可能对软骨细胞的生物力学环境产生重要影响。 (C)2004 Elsevier Ltd.保留所有权利。

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