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Adaptive mechanically controlled lubrication mechanism found in articular joints

机译:关节关节中发现的自适应机械控制润滑机制

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摘要

Articular cartilage is a highly efficacious water-based tribological system that is optimized to provide low friction and wear protection at both low and high loads (pressures) and sliding velocities that must last over a lifetime. Although many different lubrication mechanisms have been proposed, it is becoming increasingly apparent that the tribological performance of cartilage cannot be attributed to a single mechanism acting alone but on the synergistic action of multiple “modes” of lubrication that are adapted to provide optimum lubrication as the normal loads, shear stresses, and rates change. Hyaluronic acid (HA) is abundant in cartilage and synovial fluid and widely thought to play a principal role in joint lubrication although this role remains unclear. HA is also known to complex readily with the glycoprotein lubricin (LUB) to form a cross-linked network that has also been shown to be critical to the wear prevention mechanism of joints. Friction experiments on porcine cartilage using the surface forces apparatus, and enzymatic digestion, reveal an “adaptive” role for an HA-LUB complex whereby, under compression, nominally free HA diffusing out of the cartilage becomes mechanically, i.e., physically, trapped at the interface by the increasingly constricted collagen pore network. The mechanically trapped HA-LUB complex now acts as an effective (chemically bound) “boundary lubricant”—reducing the friction force slightly but, more importantly, eliminating wear damage to the rubbing/shearing surfaces. This paper focuses on the contribution of HA in cartilage lubrication; however, the system as a whole requires both HA and LUB to function optimally under all conditions.
机译:关节软骨是一种高效的水基摩擦系统,经过优化可在必须承受一生的高负荷和低负荷(压力)和滑动速度下提供低摩擦和磨损保护。尽管已经提出了许多不同的润滑机制,但越来越明显的是,软骨的摩擦学性能不能归因于单独作用的单个机制,而是归因于多种润滑方式的协同作用,这些方式适合于提供最佳润滑效果。法向载荷,剪应力和速率变化。透明质酸(HA)富含于软骨和滑液中,尽管这种作用尚不清楚,但广泛认为在关节润滑中起主要作用。还已知HA容易与糖蛋白lubricin(LUB)络合形成交联网络,这对关节的预防磨损机制也至关重要。使用表面力仪器对猪软骨进行摩擦实验和酶消化,揭示了HA-LUB复合物的“自适应”作用,在压缩作用下,名义上自由的HA从软骨中扩散出来成为机械的,即物理上被捕获在软骨上。逐渐收缩的胶原蛋白孔网络形成界面。现在,被机械捕获的HA-LUB复合物可以作为有效的(化学结合的)“边界润滑剂”,从而稍微降低摩擦力,但更重要的是,消除了对摩擦/剪切表面的磨损。本文着重研究HA在软骨润滑中的作用。但是,整个系统需要HA和LUB在所有条件下均能发挥最佳功能。

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