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Using rheology to probe the mechanism of joint lubrication: polyelectrolyte/protein interactions in synovial fluid

机译:使用流变学探测联合润滑机制:滑膜中的聚电解质/蛋白质相互作用

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The outstanding lubricating properties of synovial fluid, found in freely moving mammalian joints, may be due to intermolecular associations between hyaluronic acid, an anionic polysaccharide, and the plasma proteins. A synovial fluid model comprised of hyaluronic acid and the plasma proteins albumin and γ-globulins, was constructed. Rheological measurements reveal a pronounced viscoelasticity with a strong shear history dependence for the synovial fluid model and the plasma protein solutions at low shear rates. The addition of the anti-inflammatory drug D-Penicillamine to the solution alters the rheology of the synovial fluid model. We present two ideas about the structural features of synovial fluid that may explain this viscoelasticity and suggest further experimental techniques that can be used to test these ideas.
机译:在自由移动的哺乳动物关节中发现的滑膜的出色润滑性能可能是由于透明质酸,阴离子多糖和血浆蛋白之间的分子间缔合。构建了由透明质酸和血浆蛋白白蛋白和γ-球蛋白组成的滑膜流体模型。流变测量揭示了一种具有强烈剪切历史依赖性的明显粘弹性,对滑膜流体模型和低剪切速率的血浆蛋白质溶液。向溶液中添加抗炎药D-青霉胺改变了滑膜流体模型的流变。我们提出了两个关于可解释这种粘弹性的滑膜的结构特征的两个想法,并提出了可用于测试这些想法的进一步的实验技术。

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