The effect of deactivated phospholipids on joints lubrication: Osteoarthritis and lubricating properties

Z. Pawlak
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Abstract

PLs bilayers coating the major synovial joints such as knees and hips as the lubricant are responsible for the lubrication of articular cartilage. Lamellar-repulsive effect has been considered as a lubrication mechanism but it is likely that lubricin and hyaluronan with PLs participate in the lubrication process. The molecules of lubricin and hyaluronan adsorbed by PLs have a supportive role and provide the efficient lubrication of synovial joints via the hydration mechanism (~ 80% water content). Lipid profiles of injured and healthy knees’ synovial fluids show significant differences. The phospholipid content in synovial fluid (SF) during joint inflammation, osteoarthritis is significantly higher (2 to 3 times) above the normal concentration of PL, and has a poor boundary-lubricating ability because of deactivated PL molecules. Deactivated PL molecule has no ability to form bilayers, lamellar phases, and liposomes.
失活磷脂对关节润滑的影响:骨关节炎和润滑性能
包裹在主要滑膜关节(如膝盖和臀部)上的PLs双分子层作为润滑剂负责关节软骨的润滑。层状排斥效应被认为是一种润滑机制,但润滑素和透明质酸可能参与了润滑过程。PLs吸附的润滑素和透明质酸分子具有支持作用,通过水化机制(~ 80%含水量)为滑膜关节提供有效的润滑。损伤和健康膝关节滑液的脂质谱有显著差异。关节炎症、骨关节炎时滑膜液(SF)磷脂含量明显高于正常PL浓度(2 ~ 3倍),且由于PL分子失活,其边界润滑能力较差。失活的PL分子不能形成双分子层、层状相和脂质体。
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