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Relationship Between Wettability and Lubrication Characteristics of the Surfaces of Contacting Phospholipid-Based Membranes

机译:接触性磷脂基膜的表面润湿性与润滑特性的关系

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摘要

The wettability of the articular surface of cartilage depends on the condition of its surface active phospholipid overlay, which is structured as multi-bilayer. Based on a hypothesis that the surface of cartilage facilitates the almost frictionless lubrication of the joint, we examined the characteristics of this membrane surface entity in both its normal and degenerated conditions using a combination of atomic force microscopy, contact angle measurement, and friction test methods. The observations have led to the conclusions that (1) the acid–base equilibrium condition influences the lubrication effectiveness of the surface of cartilage and (2) the friction coefficient is significantly dependent on the hydrophobicity of the surface of the tissue, thereby confirming the hypothesis tested in this paper. Both wettability angle and interfacial energy were obtained for varying conditions of the cartilage surface both in its wet, dry and lipid-depleted conditions. The interfacial energy also increased with mole fraction of the lipid species reaching an asymptotic value after 0.6. Also, the friction coefficient was found to decrease to an asymptotic level as the wettability angle increased. The result reveal that the interfacial energy increased with pH till pH = 4.0, and then decreased from pH = 4.0 to reach equilibrium at pH = 7.0.
机译:软骨的关节表面的可湿性取决于其表面活性磷脂覆盖物的状况,该覆盖物被构造为多层。基于软骨表面促进关节几乎无摩擦润滑的假设,我们结合原子力显微镜,接触角测量和摩擦测试方法,研究了该膜表面实体在正常和退化状态下的特性。观察结果得出以下结论:(1)酸碱平衡条件影响软骨表面的润滑效果;(2)摩擦系数显着取决于组织表面的疏水性,从而证实了这一假设。经过本文测试。对于在湿,干和脂质耗尽的条件下软骨表面的不同条件,均获得了润湿角和界面能。随着脂质种类的摩尔分数在0.6之后达到渐近值,界面能也增加。另外,发现随着润湿角的增加,摩擦系数减小到渐近水平。结果表明,界面能随着pH值的增加而增加,直到pH = 4.0,然后从pH = 4.0下降到pH = 7.0时达到平衡。

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