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Low friction hydrogel for articular cartilage repair: Evaluation of mechanical and tribological properties in comparison with natural cartilage tissue

机译:用于关节软骨修复的低摩擦水凝胶:与天然软骨组织相比的机械和摩擦学性能评估

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摘要

The mechanical and tribological properties of a novel biomaterial, a boundary lubricant functionalized hydrogel, were investigated and compared to natural cartilage tissue. This low friction hydrogel material was developed for use as a synthetic replacement for focal defects in articular cartilage. The hydrogel was made by functionalizing the biocompatible polymer polyvinyl alcohol with a carboxylic acid derivative boundary lubricant molecule. Two different gel processing techniques were used to create the hydrogels. The first method consisted of initially functionalizing the boundary lubricant to the polyvinyl alcohol and then creating hydrogels by physically crosslinking the reacted polymer. The second method consisted of creating non-functionalized polyvinyl alcohol hydrogels and then performing the functionalization reaction on the fully formed gel. Osteochondral bovine samples were collected and replicate experiments were conducted to compare the mechanical and tribological performance of the boundary lubricant functionalized hydrogels to non-functionalized hydrogels and native cartilage. Friction experiments displayed a maximum decrease in friction coefficient of 70% for the functionalized hydrogels compared to neat polyvinyl alcohol. Indentation investigated the elastic modulus of the hydrogels, demonstrating that stability of the hydrogel was affected by processing method. Hydrogel performance was within the lower ranges of natural cartilage tested under the exact same conditions, showing the potential of the boundary lubricant functionalized hydrogels to perform as a biomimetic synthetic articular cartilage replacement.
机译:研究了一种新型生物材料(一种边界润滑剂功能化水凝胶)的机械和摩擦学性能,并将其与天然软骨组织进行了比较。开发了这种低摩擦水凝胶材料,用作关节软骨局灶性缺损的合成替代物。通过用羧酸衍生物边界润滑剂分子官能化生物相容性聚合物聚乙烯醇来制备水凝胶。使用两种不同的凝胶加工技术来制备水凝胶。第一种方法包括首先将边界润滑剂官能化为聚乙烯醇,然后通过将已反应的聚合物进行物理交联来生成水凝胶。第二种方法包括产生未官能化的聚乙烯醇水凝胶,然后在完全形成的凝胶上进行官能化反应。收集骨软骨牛样品并进行重复实验以比较边界润滑剂官能化水凝胶与非官能化水凝胶和天然软骨的机械和摩擦学性能。摩擦实验显示,与纯聚乙烯醇相比,功能化水凝胶的摩擦系数最大降低70%。压痕研究了水凝胶的弹性模量,表明水凝胶的稳定性受加工方法的影响。在完全相同的条件下,水凝胶性能处于测试的天然软骨的较低范围内,显示出边界润滑剂官能化水凝胶有可能作为仿生合成关节软骨替代物发挥作用。

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