Raj Akanksha, Wang Min, Zander Thomas, Wieland D C Florian, Liu Xiaoyan, An Junxue, Garamus Vasil M, Willumeit-Römer Regine, Fielden Matthew, Claesson Per M, Dėdinaitė Andra
KTH Royal Institute of Technology, School of Chemical Sciences and Engineering, Department of Chemistry, Surface and Corrosion Science, Drottning Kristinas Väg 51, SE-10044 Stockholm, Sweden.
Helmholtz Zentrum Geesthacht, Institute for Materials Research, Max-Planck Straße 1, 21502 Geesthacht, Germany.
J Colloid Interface Sci. 2017 Feb 15;488:225-233. doi: 10.1016/j.jcis.2016.10.091. Epub 2016 Nov 1.
Phospholipids and hyaluronan have been implied to fulfil important roles in synovial joint lubrication. Since both components are present in synovial fluid, self-assembly structures formed by them should also be present. We demonstrate by small angle X-ray scattering that hyaluronan associates with the outer shell of dipalmitoylphophatidylcholine (DPPC) vesicles in bulk solution. Further, we follow adsorption to silica from mixed hyaluronan/DPPC vesicle solution by Quartz Crystal Microbalance with Dissipation measurements. Atomic Force Microscope imaging visualises the adsorbed layer structure consisting of non-homogeneous phospholipid bilayer with hyaluronan/DPPC aggregates on top. The presence of these aggregates generates a long-range repulsive surface force as two such surfaces are brought together. However, the aggregates are easily deformed, partly rearranged into multilayer structures and partly removed from between the surfaces under high loads. These layers offer very low friction coefficient (<0.01), high load bearing capacity (≈23MPa), and self-healing ability. Surface bound DPPC/hyaluronan aggregates provide a means for accumulation of lubricating DPPC molecules on sliding surfaces.
磷脂和透明质酸被认为在滑膜关节润滑中发挥着重要作用。由于这两种成分都存在于滑液中,由它们形成的自组装结构也应该存在。我们通过小角X射线散射证明,在本体溶液中,透明质酸与二棕榈酰磷脂酰胆碱(DPPC)囊泡的外壳结合。此外,我们通过带有耗散测量的石英晶体微天平跟踪了混合透明质酸/DPPC囊泡溶液对二氧化硅的吸附。原子力显微镜成像显示了吸附层结构,该结构由不均匀的磷脂双层组成,顶部有透明质酸/DPPC聚集体。当两个这样的表面靠近时,这些聚集体的存在会产生长程排斥表面力。然而,这些聚集体很容易变形,部分重新排列成多层结构,部分在高负荷下从表面之间被去除。这些层具有非常低的摩擦系数(<0.01)、高承载能力(≈23MPa)和自愈能力。表面结合的DPPC/透明质酸聚集体为润滑性DPPC分子在滑动表面上的积累提供了一种方式。