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The Intrinsic Incompressibility of Osteoblast-like Cells.成骨样细胞的内在不可压缩性。
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A mixture theory analysis for passive transport in osmotic loading of cells.细胞渗透加载中被动运输的混合理论分析。
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Determination of the Poisson's ratio of the cell: recovery properties of chondrocytes after release from complete micropipette aspiration.细胞泊松比的测定:软骨细胞从完全微吸管抽吸释放后的恢复特性。
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Unconfined creep compression of chondrocytes.软骨细胞的无侧限蠕变压缩
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The role of the cytoskeleton in the viscoelastic properties of human articular chondrocytes.细胞骨架在人关节软骨细胞黏弹性特性中的作用。
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Modeling of neutral solute transport in a dynamically loaded porous permeable gel: implications for articular cartilage biosynthesis and tissue engineering.动态加载的多孔可渗透凝胶中中性溶质传输的建模:对关节软骨生物合成和组织工程的启示
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Inhomogeneous cartilage properties enhance superficial interstitial fluid support and frictional properties, but do not provide a homogeneous state of stress.不均匀的软骨特性增强了表面组织液的支撑和摩擦特性,但无法提供均匀的应力状态。
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Measurement of the chondrocyte membrane permeability to Me2SO, glycerol and 1,2-propanediol.软骨细胞对二甲基亚砜、甘油和1,2 - 丙二醇的细胞膜通透性测量。
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软骨细胞水转运的理论分析

A theoretical analysis of water transport through chondrocytes.

作者信息

Ateshian G A, Costa K D, Hung C T

机构信息

Department of Biomedical Engineering, Columbia University, 500 West 120th St. 242 S.W. Mudd, MC4703, New York, NY 10027, USA.

出版信息

Biomech Model Mechanobiol. 2007 Jan;6(1-2):91-101. doi: 10.1007/s10237-006-0039-9. Epub 2006 May 17.

DOI:10.1007/s10237-006-0039-9
PMID:16705444
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2853978/
Abstract

Because of the avascular nature of adult cartilage, nutrients and waste products are transported to and from the chondrocytes by diffusion and convection through the extracellular matrix. The convective interstitial fluid flow within and around chondrocytes is poorly understood. This theoretical study demonstrates that the incorporation of a semi-permeable membrane when modeling the chondrocyte leads to the following findings: under mechanical loading of an isolated chondrocyte the intracellular fluid pressure is on the order of tens of Pascals and the transmembrane fluid outflow, on the order of picometers per second, takes several days to subside; consequently, the chondrocyte behaves practically as an incompressible solid whenever the loading duration is on the order of minutes or hours. When embedded in its extracellular matrix (ECM), the chondrocyte response is substantially different. Mechanical loading of the tissue leads to a fluid pressure difference between intracellular and extracellular compartments on the order of tens of kilopascals and the transmembrane outflow, on the order of a nanometer per second, subsides in about 1 h. The volume of the chondrocyte decreases concomitantly with that of the ECM. The interstitial fluid flow in the extracellular matrix is directed around the cell, with peak values on the order of tens of nanometers per second. The viscous fluid shear stress acting on the cell surface is several orders of magnitude smaller than the solid matrix shear stresses resulting from the ECM deformation. These results provide new insight toward our understanding of water transport in chondrocytes.

摘要

由于成年软骨的无血管特性,营养物质和代谢废物通过细胞外基质的扩散和对流在软骨细胞之间运输。软骨细胞内部和周围的对流性组织液流动情况目前还知之甚少。这项理论研究表明,在对软骨细胞进行建模时加入半透膜会得出以下结果:在对单个软骨细胞施加机械负荷时,细胞内液压力约为几十帕斯卡,跨膜液体流出速度约为每秒皮米级,需要几天时间才能消退;因此,只要加载持续时间为几分钟或几小时,软骨细胞的行为实际上就如同不可压缩的固体。当软骨细胞嵌入其细胞外基质(ECM)中时,其反应则大不相同。对组织施加机械负荷会导致细胞内和细胞外隔室之间的流体压力差达到几十千帕斯卡,跨膜流出速度约为每秒纳米级,在大约1小时内消退。软骨细胞的体积会随着细胞外基质的体积相应减小。细胞外基质中的组织液流动方向是围绕细胞的,峰值速度约为每秒几十纳米。作用于细胞表面的粘性流体剪切应力比细胞外基质变形产生的固体基质剪切应力小几个数量级。这些结果为我们理解软骨细胞中的水运输提供了新的见解。