首页> 外文期刊>Journal of orthopaedic research >Boundary mode lubrication of articular cartilage by recombinant human lubricin.
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Boundary mode lubrication of articular cartilage by recombinant human lubricin.

机译:重组人lubricin对关节软骨的边界润滑。

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Lubrication of cartilage involves a variety of physical and chemical factors, including lubricin, a synovial glycoprotein that has been shown to be a boundary lubricant. It is unclear how lubricin boundary lubricates a wide range of bearings from tissue to artificial surfaces, and if the mechanism is the same for both soluble and bound lubricin. In the current study, experiments were conducted to investigate the hypothesis that recombinant human lubricin (rh-lubricin) lubricates cartilage in a dose-dependent manner and that soluble and bound fractions of rh-lubricin both contribute to the lubrication process. An rh-lubricin dose response was observed with maximal lubrication achieved at concentrations of rh-lubricin greater than 50 microg/mL. A concentration-response variable-slope model was fit to the data, and indicated that rh-lubricin binding to cartilage was not first order. The pattern of decrease in equilibrium friction coefficient indicated that aggregation of rh-lubricin or steric arrangement may regulate boundary lubrication. rh-lubricin localized at the cartilage surface was found to lubricate a cartilage-glass interface in boundary mode, as did soluble rh-lubricin at high concentrations (150 microg/mL); however, the most effective lubrication occurred when both soluble and bound rh-lubricin were present at the interface. These findings point to two distinct mechanisms by which rh-lubricin lubricates, one mechanism involving lubricin bound to the tissue surface and the other involving lubricin in solution.
机译:软骨的润滑涉及多种物理和化学因素,包括lubricin,一种滑膜糖蛋白,已被证明是一种边界润滑剂。尚不清楚润滑脂边界如何润滑从组织到人造表面的各种轴承,以及可溶性和结合润滑脂的作用机理是否相同。在当前的研究中,进行了实验以研究以下假说:重组人lubricin(rh-lubricin)以剂量依赖的方式润滑软骨,而rh-lubricin的可溶部分和结合部分均有助于润滑过程。观察到rh-lubricin的剂量反应,当rh-lubricin的浓度大于50 microg / mL时达到最大润滑。浓度-响应可变斜率模型适合于该数据,表明rh-lubricin与软骨的结合不是一阶的。平衡摩擦系数的降低模式表明,rh-lubricin的聚集或空间排列可调节边界润滑。发现位于软骨表面的rh-lubricin可以边界模式润滑软骨-玻璃界面,高浓度(150 microg / mL)的可溶性rh-lubricin亦是如此。但是,当界面处同时存在可溶性和结合型rh-lubricin时,润滑效果最佳。这些发现指出了rh-lubricin润滑的两种不同机理,一种机理涉及与组织表面结合的lubricin,另一种涉及溶液中的lubricin。

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