Andresen Eguiluz Roberto C, Cook Sierra G, Tan Mingchee, Brown Cory N, Pacifici Noah J, Samak Mihir S, Bonassar Lawrence J, Putnam David, Gourdon Delphine
Department of Materials Science and Engineering, Cornell University, Ithaca, NY, United States.
Meinig School of Biomedical Engineering, Cornell University, Ithaca, NY, United States.
Front Bioeng Biotechnol. 2017 Jun 28;5:36. doi: 10.3389/fbioe.2017.00036. eCollection 2017.
Lubricin (LUB), a major mucinous glycoprotein of mammalian synovial fluids, is believed to provide excellent lubrication to cartilage surfaces. Consequently, when joint disease or replacement leads to increased friction and surface damage in the joint, robust synthetic LUB alternatives that could be used therapeutically to improve lubrication and surface protection are needed. Here, we report the characterization of a lubricating multiblock bottlebrush polymer whose architecture was inspired by LUB, and we investigate the role of fibronectin (FN), a glycoprotein found in the superficial zone of cartilage, in mediating the tribological properties of the polymer upon shear between mica surfaces. Our surface forces apparatus (SFA) normal force measurements indicate that the lubricin-mimetic (mimLUB) could be kept anchored between mica surfaces, even under high contact pressures, when an intermediate layer of FN was present. Additional SFA friction measurements show that FN would also extend the wearless friction regime of the polymer up to pressures of 3.4 MPa while ensuring stable friction coefficients (μ ≈ 0.28). These results demonstrate synergistic interactions between mimLUB and FN in assisting the lubrication and wear protection of ideal (mica) substrates upon shear. Collectively, these findings suggest that our proposed mimLUB might be a promising alternative to LUB, as similar mechanisms could potentially facilitate the interaction between the polymer and cartilage surfaces in articular joints and prosthetic implants .
润滑素(LUB)是哺乳动物滑液中的一种主要黏液糖蛋白,据信它能为软骨表面提供出色的润滑作用。因此,当关节疾病或关节置换导致关节内摩擦力增加和表面损伤时,就需要强大的合成LUB替代物,可用于治疗以改善润滑和表面保护。在此,我们报告了一种润滑性多嵌段刷状聚合物的特性,其结构灵感来源于LUB,并且我们研究了纤连蛋白(FN)(一种在软骨表层区域发现的糖蛋白)在介导聚合物在云母表面间剪切时的摩擦学特性中所起的作用。我们的表面力仪(SFA)法向力测量表明,当存在一层中间层FN时,即使在高接触压力下,类润滑素(mimLUB)也能锚定在云母表面之间。额外的SFA摩擦力测量表明,FN还能将聚合物的无磨损摩擦范围扩展至3.4兆帕的压力,同时确保稳定的摩擦系数(μ≈0.28)。这些结果证明了mimLUB与FN之间的协同相互作用有助于在剪切时对理想(云母)基底进行润滑和磨损保护。总体而言,这些发现表明我们提出的mimLUB可能是LUB的一种有前景的替代物,因为类似的机制可能潜在地促进聚合物与关节和假体植入物中软骨表面之间的相互作用。