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基质张力-压缩非线性及固定负电荷对软骨中软骨细胞反应的影响。

The effect of matrix tension-compression nonlinearity and fixed negative charges on chondrocyte responses in cartilage.

作者信息

Likhitpanichkul Morakot, Guo X Edward, Mow Van C

机构信息

Department of Biomedical Engineering, Columbia University, 351 Engineering Terrace 500 West 120th Street, New York, NY 10027, USA.

出版信息

Mol Cell Biomech. 2005 Dec;2(4):191-204.

Abstract

Thorough analyses of the mechano-electrochemical interaction between articular cartilage matrix and the chondrocytes are crucial to understanding of the signal transduction mechanisms that modulate the cell metabolic activities and biosynthesis. Attempts have been made to model the chondrocytes embedded in the collagen-proteoglycan extracellular matrix to determine the distribution of local stress-strain field, fluid pressure and the time-dependent deformation of the cell. To date, these models still have not taken into account a remarkable characteristic of the cartilage extracellular matrix given rise from organization of the collagen fiber architecture, now known as the tension-compression nonlinearity (TCN) of the tissue, as well as the effect of negative charges attached to the proteoglycan molecules, and the cell cytoskeleton that interacts with mobile ions in the interstitial fluid to create osmotic and electro-kinetic events in and around the cells. In this study, we proposed a triphasic, multi-scale, finite element model incorporating the Conewise Linear Elasticity that can describe the various known coupled mechanical, electrical and chemical events, while at the same time representing the TCN of the extracellular matrix. The model was employed to perform a detailed analysis of the chondrocytes' deformational and volume responses, and to quantitatively describe the mechano-electrochemical environment of these cells. Such a model describes contributions of the known detailed micro-structural and composition of articular cartilage. Expectedly, results from model simulations showed substantial effects of the matrix TCN on the cell deformational and volume change response. A low compressive Poisson's ratio of the cartilage matrix exhibiting TCN resulted in dramatic recoiling behavior of the tissue under unconfined compression and induced significant volume change in the cell. The fixed charge density of the chondrocyte and the pericellular matrix were also found to play an important role in both the time-dependent and equilibrium deformation of the cell. The pericellular matrix tended to create a uniform osmolarity around the cell and overall amplified the cell volume change. It is concluded that the proposed model can be a useful tool that allows detailed analysis of the mechano-electrochemical interactions between the chondrocytes and its surrounding extracellular matrix, which leads to more quantitative insights in the cell mechano-transduction.

摘要

深入分析关节软骨基质与软骨细胞之间的机械 - 电化学相互作用,对于理解调节细胞代谢活动和生物合成的信号转导机制至关重要。人们已尝试对嵌入胶原 - 蛋白聚糖细胞外基质中的软骨细胞进行建模,以确定局部应力 - 应变场、流体压力以及细胞随时间的变形分布。迄今为止,这些模型仍未考虑到由胶原纤维结构组织引起的软骨细胞外基质的一个显著特征,即现在所知的组织拉伸 - 压缩非线性(TCN),以及附着在蛋白聚糖分子上的负电荷的影响,还有与间质液中移动离子相互作用以在细胞内外产生渗透和电动现象的细胞细胞骨架。在本研究中,我们提出了一个三相、多尺度、有限元模型,该模型纳入了可描述各种已知的耦合机械、电气和化学事件的锥形线性弹性,同时代表细胞外基质的TCN。该模型用于对软骨细胞的变形和体积响应进行详细分析,并定量描述这些细胞的机械 - 电化学环境。这样的模型描述了关节软骨已知的详细微观结构和组成的贡献。不出所料,模型模拟结果显示基质TCN对细胞变形和体积变化响应有显著影响。表现出TCN的软骨基质的低压缩泊松比导致组织在无侧限压缩下出现剧烈的回弹行为,并引起细胞显著的体积变化。还发现软骨细胞和细胞周围基质的固定电荷密度在细胞的时间依赖性和平衡变形中都起着重要作用。细胞周围基质倾向于在细胞周围创造均匀的渗透压,并总体上放大细胞体积变化。得出的结论是,所提出的模型可以成为一个有用的工具,允许对软骨细胞与其周围细胞外基质之间的机械 - 电化学相互作用进行详细分析,从而在细胞机械转导方面获得更定量的见解。

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