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Effects of fiber orientation on the frictional properties and damage of regenerative articular cartilage surfaces

机译:纤维取向对再生性软骨表面摩擦特性和损伤的影响

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Articular cartilage provides a low-friction, wear-resistant surface for diarthrodial joints. Due to overloading and overuse, articular cartilage is known to undergo significant wear and degeneration potentially resulting in osteoarthritis (OA). Regenerative medicine strategies offer a promising solution for the treatment of articular cartilage defects and potentially localized early OA. Such strategies rely on the development of materials to restore some aspects of cartilage. In this study, microfibrous poly(ε-caprolactone) scaffolds of varying fiber orientations (random and aligned) were cultured with bovine chondrocytes for 4 weeks in vitro, and the mechanical and frictional properties were evaluated. Mechanical properties were quantified using unconfined compression and tensile testing techniques. Frictional properties were investigated at physiological compressive strains occurring in native articular cartilage. Scaffolds were sheared along the fiber direction, perpendicular to the fiber direction and in random orientation. The evolution of damage as a result of shear was evaluated via white light interferometry and scanning electron microscopy. As expected, the fiber orientation strongly affected the tensile properties as well as the compressive modulus of the scaffolds. Fiber orientation did not significantly affect the equilibrium frictional coefficient, but it was, however, a key factor in dictating the evolution of surface damage on the surface. Scaffolds shear tested perpendicular to the fiber orientation displayed the highest surface damage. Our results suggest that the fiber orientation of the scaffold implanted in the joint could strongly affect its resistance to damage due to shear. Scaffold fiber orientation should thus be carefully considered when using microfibrous scaffolds.
机译:关节软骨为穿刺关节提供了低摩擦,耐磨的表面。由于超负荷和过度使用,已知关节软骨会发生严重磨损和变性,从而可能导致骨关节炎(OA)。再生医学策略为关节软骨缺损和潜在的局部早期OA的治疗提供了有希望的解决方案。这种策略依赖于材料的发展来恢复软骨的某些方面。在这项研究中,将具有不同纤维取向(随机和排列)的微纤维聚(ε-己内酯)支架与牛软骨细胞体外培养4周,并评估其机械和摩擦性能。使用无限制的压缩和拉伸测试技术对机械性能进行了量化。在天然关节软骨中发生的生理压缩应变下研究了摩擦特性。沿纤维方向,垂直于纤维方向并以无规取向剪切支架。通过白光干涉仪和扫描电子显微镜评估了剪切引起的损伤演变。如预期的那样,纤维取向强烈影响支架的拉伸性能以及压缩模量。纤维取向并没有显着影响平衡摩擦系数,但是,它是决定表面上表面损伤演变的关键因素。垂直于纤维取向测试的脚手架表面损伤最大。我们的结果表明,植入关节的支架的纤维取向可能强烈影响其抗剪切损伤的能力。因此在使用微纤维支架时应仔细考虑支架纤维的取向。

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