Majd Sara Ehsani, Kuijer Roel, Köwitsch Alexander, Groth Thomas, Schmidt Tannin A, Sharma Prashant K
Department of Biomedical Engineering, University of Groningen, University Medical Centre Groningen , Antonius Deusinglaan 1, 9713AV Groningen, The Netherlands.
Langmuir. 2014 Dec 9;30(48):14566-72. doi: 10.1021/la504345c. Epub 2014 Nov 26.
Wear resistant and ultralow friction in synovial joints is the outcome of a sophisticated synergy between the major macromolecules of the synovial fluid, e.g., hyaluronan (HA) and proteoglycan 4 (PRG4), with collagen type II fibrils and other non-collagenous macromolecules of the cartilage superficial zone (SZ). This study aimed at better understanding the mechanism of PRG4 localization at the cartilage surface. We show direct interactions between surface bound HA and freely floating PRG4 using the quartz crystal microbalance with dissipation (QCM-D). Freely floating PRG4 was also shown to bind with surface bound collagen type II fibrils. Albumin, the most abundant protein of the synovial fluid, effectively blocked the adsorption of PRG4 with HA, through interaction with C and N terminals on PRG4, but not that of PRG4 with collagen type II fibrils. The above results indicate that collagen type II fibrils strongly contribute in keeping PRG4 in the SZ during cartilage articulation in situ. Furthermore, PRG4 molecules adsorbed very well on mimicked SZ of absorbed HA molecules with entangled collagen type II fibrils and albumin was not able to block this interaction. In this last condition PRG4 adsorption resulted in a coefficient of friction (COF) of the same order of magnitude as the COF of natural cartilage, measured with an atomic force microscope in lateral mode.
滑膜关节中的耐磨和超低摩擦是滑液中的主要大分子(如透明质酸(HA)和蛋白聚糖4(PRG4))与II型胶原纤维以及软骨表层(SZ)的其他非胶原大分子之间复杂协同作用的结果。本研究旨在更好地理解PRG4在软骨表面定位的机制。我们使用带耗散监测的石英晶体微天平(QCM-D)展示了表面结合的HA与自由漂浮的PRG4之间的直接相互作用。自由漂浮的PRG4也被证明能与表面结合的II型胶原纤维结合。白蛋白是滑液中含量最丰富的蛋白质,它通过与PRG4的C端和N端相互作用,有效阻断了PRG4与HA的吸附,但不能阻断PRG4与II型胶原纤维的吸附。上述结果表明,在原位软骨关节活动过程中,II型胶原纤维对将PRG4保持在SZ中起着重要作用。此外,PRG4分子能很好地吸附在由缠结的II型胶原纤维和HA分子模拟的SZ上,且白蛋白无法阻断这种相互作用。在最后这种情况下,用原子力显微镜横向模式测量,PRG4吸附导致的摩擦系数(COF)与天然软骨的COF处于同一数量级。