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Effects of Confinement on the Mechanical Properties of Self-Assembled Articular Cartilage Constructs in the Direction Orthogonal to the Confinement Surface

机译:约束对正交于约束表面方向的自组装关节软骨结构力学性能的影响

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摘要

During in vivo development, articular cartilage is exposed to several different forms of stress. This study examined the effects of radial confinement and passive axial compression-induced vertical confinement, on the biomechanical, biochemical, and histological properties of self-assembled chondrocyte constructs. The self-assembled constructs, engineered without the use of an exogenous scaffold, exhibited significant increases in stiffness in the direction orthogonal to that of the confinement surface. With radial confinement, the significantly increased aggregate modulus was accompanied by increased collagen organization in the direction perpendicular to the articular surface, with no change in collagen or glycosaminoglycan (GAG) content. Additionally, radial confinement was most beneficial when applied before t=2 wks. With passive axial compression, the significantly increased Young’s modulus and ultimate tensile strength were accompanied by a significant increase in collagen production. This study is the first to demonstrate the beneficial effects of confinement on tissue engineered constructs in the direction orthogonal to that of the confinement surface.
机译:在体内发育期间,关节软骨暴露于几种不同形式的压力下。这项研究检查了径向限制和被动轴向压缩诱导的垂直限制对自组装软骨细胞构建体的生物力学,生化和组织学特性的影响。在不使用外来支架的情况下进行工程改造的自组装结构在垂直于约束表面方向的方向上显示出刚度的显着提高。在径向限制下,聚集模量的显着增加伴随着在垂直于关节表面的方向上胶原组织的增加,而胶原或糖胺聚糖(GAG)含量没有变化。另外,在t = 2 wks之前施加径向约束最有利。在被动轴向压缩的情况下,杨氏模量和极限拉伸强度显着增加,同时胶原蛋白的产生也显着增加。这项研究是第一个证明限制在垂直于限制表面方向的组织工程构造体上的有益作用。

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