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首页> 外文期刊>Methods: A Companion to Methods in Enzymology >Biodynamic performance of hyaluronic acid versus synovial fluid of the knee in osteoarthritis
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Biodynamic performance of hyaluronic acid versus synovial fluid of the knee in osteoarthritis

机译:透明质酸与膝关节滑液在骨关节炎中的生物力学性能

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Hyaluronic acid (HA), a natural biomaterial present in healthy joints but depleted in osteoarthritis (OA), has been employed clinically to provide symptomatic relief of joint pain. Joint movement combined with a reduced joint lubrication in osteoarthritic knees can result in increased wear and tear, chondrocyte apoptosis, and inflammation, leading to cascading cartilage deterioration. Therefore, development of an appropriate cartilage model that can be evaluated for its friction properties with potential lubricants in different conditions is necessary, which can closely resemble a mechanically induced OA cartilage. Additionally, a comparison of different models with and without endogenous lubricating surface zone proteins, such as PRG4 promotes a well-rounded understanding of cartilage lubrication. In this study, we present our findings on the lubricating effects of HA on different articular cartilage model surfaces in comparison to synovial fluid, a physiological lubricating biomaterial. The mechanical testings data demonstrated that HA reduced average static and kinetic friction coefficient values of the cartilage samples by 75% and 70%, respectively. Furthermore, HA mimicked the friction characteristics of freshly harvested natural synovial fluid throughout all tested and modeled OA conditions with no statistically significant difference. These characteristics led us to exclusively identify HA as an effective boundary layer lubricant in the technology that we develop to treat OA (Singh et al., 2014). (C) 2015 Elsevier Inc. All rights reserved.
机译:透明质酸(HA)是存在于健康关节中但在骨关节炎(OA)中消耗掉的天然生物材料,已在临床上用于缓解关节痛的症状。骨关节炎膝盖中的关节运动与减少的关节润滑可导致磨损增加,软骨细胞凋亡和炎症增加,从而导致级联软骨恶化。因此,有必要开发一种合适的软骨模型,以评估其与不同条件下与潜在润滑剂的摩擦性能,该模型可以非常类似于机械诱导的OA软骨。此外,对带有和不带有内源性润滑表面区域蛋白(例如PRG4)的不同模型进行比较,可以促进对软骨润滑的全面理解。在这项研究中,我们提出了与滑液(一种生理润滑的生物材料)相比,HA在不同关节软骨模型表面上的润滑效果的发现。力学测试数据表明,HA使软骨样品的平均静摩擦系数和动摩擦系数值分别降低了75%和70%。此外,HA在所有经过测试和建模的OA条件下都模仿了新鲜收获的天然滑液的摩擦特性,无统计学差异。这些特性使我们在开发用于治疗OA的技术中将HA专门确定为有效的边界层润滑剂(Singh等,2014)。 (C)2015 Elsevier Inc.保留所有权利。

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