Zhang Lihai, Gardiner Bruce S, Smith David W, Pivonka Peter, Grodzinsky Alan
Department of Civil and Environmental Engineering, The University of Melbourne, Vic, Australia.
Arch Biochem Biophys. 2007 Jan 1;457(1):47-56. doi: 10.1016/j.abb.2006.10.007. Epub 2006 Oct 30.
Diffusive transport must play an important role in transporting nutrients into cartilage due to its avascular nature. Recent theoretical studies generally support the idea that cyclic loading enhances large molecule transport through advection. However, to date, reactive transport, i.e. the effects of solute binding, has not yet been taken into consideration in cyclically deformed cartilage. In the present study, we develop a reactive transport model to describe the potential role of binding of solute within cyclically deformed cartilage. Our results show that binding does have a significant effect on transport, particularly for the low IGF-I concentrations typical of synovial fluid. A dynamic loading regime of high strain magnitudes (up to 10%) in combination with high frequencies (e.g. 1 Hz) was seen to produce the most dramatic results with enhanced total uptake ratio as high as 25% averaged over the first 5h of cyclic loading.
由于软骨无血管的特性,扩散运输在将营养物质输送到软骨中必定起着重要作用。最近的理论研究普遍支持这样一种观点,即循环加载通过平流增强大分子运输。然而,迄今为止,在周期性变形的软骨中尚未考虑反应性运输,即溶质结合的影响。在本研究中,我们建立了一个反应性运输模型来描述溶质结合在周期性变形软骨中的潜在作用。我们的结果表明,结合对运输确实有显著影响,特别是对于滑液中典型的低胰岛素样生长因子 - I(IGF - I)浓度。在高应变幅度(高达10%)与高频(例如1Hz)相结合的动态加载模式下,在循环加载的前5小时内平均总摄取率提高高达25%,产生了最显著的结果。