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Triborheological Study under Physiological Conditions of PVA Hydrogel/HA Lubricant as Synthetic System for Soft Tissue Replacement

机译:PVA水凝胶/ HA润滑剂生理条件下的富殖民海学研究作为软组织替代的合成系统

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摘要

In soft tissue replacement, hydrophilic, flexible, and biocompatible materials are used to reduce wear and coefficient of friction. This study aims to develop and evaluate a solid/liquid triborheological system, polyvinyl alcohol (PVA)/hyaluronic acid (HA), to mimic conditions in human synovial joints. Hydrogel specimens prepared via the freeze–thawing technique from a 10% (w/v) PVA aqueous solution were cut into disc shapes (5 ± 0.5 mm thickness). Compression tests of PVA hydrogels presented a Young’s modulus of 2.26 ± 0.52 MPa. Friction tests were performed on a Discovery Hybrid Rheometer DHR-3 under physiological conditions using 4 mg/mL HA solution as lubricant at 37 °C. Contact force was applied between 1 and 20 N, highlighting a coefficient of friction change of 0.11 to 0.31 between lubricated and dry states at 3 N load (angular velocity: 40 rad/s). Thermal behavior was evaluated by differential scanning calorimetry (DSC) in the range of 25–250 °C (5 °C/min rate), showing an endothermic behavior with a melting temperature (Tm) around 231.15 °C. Scanning Electron Microscopy (SEM) tests showed a microporous network that enhanced water content absorption to 82.99 ± 1.5%. Hydrogel achieved solid/liquid lubrication, exhibiting a trapped lubricant pool that supported loads, keeping low coefficient of friction during lubricated tests. In dry tests, interstitial water evaporates continuously without countering sliding movement friction.
机译:在软组织替代品中,使用亲水,柔性和生物相容性材料来减少磨损和系数摩擦系数。本研究旨在开发和评估固体/液体繁殖体系,聚乙烯醇(PVA)/透明质酸(HA),以模拟人类滑膜关节的核心。通过从10%(w / v)pVA水溶液中通过冻融技术制备的水凝胶样品切成盘形状(厚度为5±0.5mm)。 PVA水凝胶的压缩试验呈现杨氏模量为2.26±0.52MPa。在使用4mg / ml HA溶液在37℃下使用4mg / ml HA溶液在生理条件下在生理条件下进行摩擦试验。接触力在1和20 n之间施加,在3 n负载(角速度:40rad / s)之间突出润滑和干燥状态之间的摩擦系数0.11至0.31。通过差示扫描量热法(DSC)在25-250℃(5℃/ min速率)范围内评价热行为,显示出熔化温度(Tm)约为231.15℃的吸热行为。扫描电子显微镜(SEM)测试显示了一种微孔网络,可增强水含量吸收至82.99±1.5%。水凝胶达到固体/液体润滑,表现出捕获的润滑油池,其负载负载,在润滑试验期间保持低摩擦系数。在干燥测试中,间质水连续蒸发,而不会抵消滑动运动摩擦。

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