Čípek Pavel, Vrbka Martin, Rebenda David, Nečas David, Křupka Ivan
Faculty of Mechanical Engineering, Brno University of Technology, 616 69 Brno, Czech Republic.
Materials (Basel). 2020 Apr 30;13(9):2075. doi: 10.3390/ma13092075.
A healthy natural synovial joint is very important for painless active movement of the natural musculoskeletal system. The right functioning of natural synovial joints ensures well lubricated contact surfaces with a very low friction coefficient and wear of cartilage tissue. The present paper deals with a new method for visualization of lubricating film with simultaneous measurements of the friction coefficient. This can contribute to better understanding of lubricating film formation in a natural synovial joint. A newly developed device, a reciprocating tribometer, is used to allow for simultaneous measurement of friction forces with contact visualization by fluorescence microscopy. The software allowing for snaps processing and subsequent evaluation of fluorescence records is developed. The evaluation software and the follow-up evaluation procedure are also described. The experiments with cartilage samples and model synovial fluid are carried out, and the new software is applied to provide their evaluation. The primary results explaining a connection between lubrication and friction are presented. The results show a more significant impact of albumin proteins on the lubrication process, whereas its clusters create a more stable lubrication layer. A decreasing trend of protein cluster count, which corresponds to a decrease in the thickness of the lubrication film, is found in all experiments. The results highlight a deeper connection between the cartilage friction and the lubrication film formation, which allows for better understanding of the cartilage lubrication mechanism.
健康的天然滑膜关节对于天然肌肉骨骼系统的无痛主动运动非常重要。天然滑膜关节的正常功能确保了具有极低摩擦系数的润滑良好的接触表面以及软骨组织的磨损。本文介绍了一种可视化润滑膜并同时测量摩擦系数的新方法。这有助于更好地理解天然滑膜关节中润滑膜的形成。一种新开发的装置——往复式摩擦磨损试验机,用于通过荧光显微镜同时测量摩擦力和进行接触可视化。开发了允许对快照进行处理并随后评估荧光记录的软件。还描述了评估软件和后续评估程序。对软骨样本和模型滑液进行了实验,并应用新软件对其进行评估。给出了解释润滑与摩擦之间联系的主要结果。结果表明白蛋白对润滑过程的影响更为显著,而其聚集体形成了更稳定的润滑层。在所有实验中均发现蛋白质聚集体数量呈下降趋势,这与润滑膜厚度的减小相对应。结果突出了软骨摩擦与润滑膜形成之间更深层次的联系,有助于更好地理解软骨润滑机制。