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Fibronectin mediates enhanced wear protection of lubricin during shear

机译:纤连蛋白在剪切过程中介导润滑脂的增强耐磨性

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摘要

Fibronectin (FN) is a glycoprotein found in the superficial zone of cartilage; however, its role in the lubrication and the wear protection of articular joints is unknown. In this work, we have investigated the molecular interactions between FN and various components of the synovial fluid such as lubricin (LUB), hyaluronan (HA), and serum albumin (SA), which are all believed to contribute to joint lubrication. Using a Surface Forces Apparatus, we have measured the normal (adhesion/repulsion) and lateral (friction) forces across layers of individual synovial fluid components physisorbed onto FN-coated mica substrates. Our chief findings are (i) FN strongly tethers LUB and HA to mica, as indicated by high and reversible long-range repulsive normal interactions between surfaces, and (ii) FN and LUB synergistically enhance wear protection of surfaces during shear, as suggested by the structural robustness of FN+LUB layers under pressures up to about 4 MPa. These findings provide new insights into the role of FN in the lubricating properties of synovial fluid components sheared between ideal substrates and represent a significant step forward in our understanding of cartilage damage involved in diseases such as osteoarthritis.
机译:纤连蛋白(FN)是在软骨表层发现的一种糖蛋白。但是,其在关节关节的润滑和磨损保护中的作用尚不清楚。在这项工作中,我们研究了FN与滑液的各种成分(如润滑蛋白(LUB),透明质酸(HA)和血清白蛋白(SA))之间的分子相互作用,这些都被认为有助于关节润滑。使用表面力装置,我们测量了物理吸附到FN涂层云母基底上的各个滑液成分层的法向力(附着力/斥力)和横向力(摩擦力)。我们的主要发现是(i)FN将LUB和HA牢固地束缚在云母上,这表现为表面之间的高且可逆的远程排斥法向相互作用,并且(ii)FN和LUB协同增强了剪切过程中表面的磨损保护,如FN + LUB层在高达约4 MPa的压力下的结构坚固性。这些发现为FN在理想基质之间剪切的滑液成分的润滑特性中的作用提供了新的见解,并代表了我们对诸如骨关节炎等疾病所涉及的软骨损伤的认识的重要一步。

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