Department of Chemical Engineering, University of California, Santa Barbara, California 93106, United States.
Biomacromolecules. 2013 May 13;14(5):1669-77. doi: 10.1021/bm400327a. Epub 2013 Apr 17.
Normal (e.g., adhesion) and lateral (friction) forces were measured between physisorbed and chemically grafted layers of hyaluronic acid (HA), an anionic polyelectrolyte in the presence of lubricin (Lub), a mucinous glycoprotein, on mica surfaces using a surface forces apparatus (SFA). This work demonstrates that high friction coefficients between the surfaces do not necessarily correlate with surface damage and that chemically grafted HA acts synergistically with Lub to provide friction reduction and enhanced wear protection to the surfaces. Surface immobilization of HA by grafting is necessary for such wear protection. Increasing the concentration of Lub enhances the threshold load that a chemically grafted HA surface can be subjected to before the onset of wear. Addition of Lub does not have any beneficial effect if HA is physisorbed to the mica surfaces. Damage occurs at loads less than 1 mN regardless of the amount of Lub, indicating that the molecules in the bulk play little or no role in protecting the surfaces from damage. Lub penetrates into the chemically bound HA to form a visco-elastic gel that reduces the coefficient of friction as well as boosts the strength of the surface against abrasive wear (damage).
在云母表面使用表面力仪器 (SFA),测量了吸附层和化学接枝层的透明质酸(HA)之间的正常(例如,附着力)和侧向(摩擦力)力,透明质酸是带负电荷的聚电解质,存在润滑素(Lub),一种粘蛋白糖蛋白。这项工作表明,表面之间的高摩擦系数不一定与表面损伤相关,并且化学接枝的 HA 与 Lub 协同作用,提供摩擦减少和增强表面磨损保护。通过接枝对 HA 进行表面固定是实现这种磨损保护所必需的。增加 Lub 的浓度可以提高化学接枝 HA 表面在开始磨损之前可以承受的临界负载。如果 HA 物理吸附在云母表面上,添加 Lub 不会产生任何有益效果。无论 Lub 的量如何,在负载小于 1 mN 时都会发生损坏,这表明在保护表面免受损坏方面,体相中的分子几乎没有或没有任何作用。Lub 渗透到化学结合的 HA 中形成粘弹性凝胶,降低摩擦系数,并提高表面抵抗磨料磨损(损坏)的强度。