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DEPTH DEPENDENT DIFFUSIVITY PROFILE IN BOVINE ARTICULAR CARTILAGE: COMPARING TRANSVERSE AND AXIAL DIFFUSIVITIES

机译:牛关节软骨中的深度依赖扩散曲线:横向和轴向扩散性比较

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As articular cartilage is avascular, diffusion at a tissue length scale is the primary mode of solute and nutrient transport to its cells. The major extracellular matrix components are water (70-80%), chondrocytes, collagen (10-20%) and proteoglycans (5-10%) bearing sulfated glycosaminoglycans (GAG) [1]. Electron microscopy studies have shown that articular cartilage can be regarded as having three separate structural zones - superficial, middle and deep. The proportions of the various matrix components vary from the surface to the deep zone in any given joint and the greatest variations in content occur in the GAG content [2]. In addition the collagen fiber alignment varies, with fibers oriented parallel to the articular surface in the superficial zone, randomly oriented in the middle zone and oriented perpendicular to the surface in the deep zone. To a large extent, it is the spatially inhomogeneous composition of articular cartilage and microstructural orientation of its extracellular matrix components that determines the tortuosity of the transport pathway [3]. We therefore hypothesized that the diffusivity profile of a solute through the cartilage depth is inversely related to the GAG content and that the ratio between the axial and lateral diffusivities within each cartilage zone is related to the degree of anisotropy within the zone.
机译:作为关节软骨是腺体血管的,组织长度的扩散是溶质和营养转运到其细胞的主要模式。主要的细胞外基质组分是水(70-80%),软骨细胞,胶原(10-20%)和蛋白多糖(5-10%)含有硫酸化糖蛋白聚糖(GAG)[1]。电子显微镜研究表明,关节软骨可被视为具有三个单独的结构区 - 浅表,中间和深。各种基质组分的比例在任何给定关节中的表面到深处变化,并且内容的最大变化发生在GAG含量[2]中发生。此外,胶原纤维对准变化,纤维平行于浅地面的关节表面定向,随机取向中间区域并垂直于深处的表面定向。在很大程度上,它是其细胞外囊组成的空间不均匀的组成,其细胞外基质组分决定了运输途径的曲折性[3]。因此,我们假设通过软骨深度的溶质的扩散曲线与GAG含量成反比,并且每个软骨区域内的轴向和横向扩散之间的比率与区域内的各向异性有关。

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