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Rheopexy of synovial fluid and protein aggregation

机译:滑液流变性和蛋白质聚集

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摘要

Bovine synovial fluid and albumin solutions of similar concentration are rheopectic (stress increases with time in steady shear). This unusual flow characteristic is caused by protein aggregation, and the total stress is enhanced by entanglement of this tenuous protein network with the long-chain polysaccharide sodium hyaluronate under physiological conditions. Neutron scattering measurements on albumin solutions demonstrate protein aggregation and all measurements are consistent with a weak dipolar attraction energy (of order 3kT) that is most likely augmented by hydrophobic interactions and/or disulfide bond formation between proteins. Protein aggregation appears to play an important role in the mechanical properties of blood and synovial fluid. We also suggest a connection between the observed rheopexy and the remarkable lubrication properties of synovial fluid.
机译:浓度相似的牛滑液和白蛋白溶液具有流变特性(在稳态剪切下应力会随时间增加)。这种异常的流动特性是由蛋白质聚集引起的,并且在生理条件下,这种脆弱的蛋白质网络与长链多糖透明质酸钠的缠结会增加总应力。在白蛋白溶液上的中子散射测量表明蛋白质聚集,所有测量结果均与弱的偶极吸引能(3kT量级)一致,极弱的偶极吸引能很可能由蛋白质之间的疏水相互作用和/或二硫键形成而增强。蛋白质聚集似乎在血液和滑液的机械特性中起重要作用。我们还建议观察到的流变性和滑液的显着润滑性能之间存在联系。

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