Department of Bioengineering, Clemson University, Clemson, SC, USA.
J Dent Res. 2011 Oct;90(10):1216-20. doi: 10.1177/0022034511415275. Epub 2011 Jul 8.
The objective of this study was to examine the impact of mechanical loading on solute transport in porcine temporomandibular joint (TMJ) discs using the electrical conductivity method. The electrical conductivity, as well as ion diffusivity, of TMJ discs was determined under confined compression with 3 strains in 5 disc regions. The average electrical conductivity over the 5 regions (mean ± SD) at 0% strain was 3.10 ± 0.68 mS/cm, decreased to 2.76 ± 0.58 mS/cm (-11.0%) at 10% strain, and 2.38 ± 0.55 mS/cm (-22.2%) at 20% compressive strain. Correspondingly, the average relative ion diffusivity (mean ± SD) at 0% strain was 0.273 ± 0.055, decreased to 0.253 ± 0.048 (-7.3%) at 10% strain, and 0.231 ± 0.048 (-15.4%) at 20% compressive strain. These results indicated that compressive strain impeded solute transport in the TMJ disc. Furthermore, our results showed that the transport properties of TMJ discs were region-dependent. The electrical conductivity and ion diffusivity in the anterior region were significantly higher than in the posterior region. This regional difference is likely due to the significant differences of tissue hydration between these 2 regions. This study provides important insight into the electrical and solute transport behaviors in TMJ discs under mechanical loading and aids in the understanding of TMJ pathophysiology related to tissue nutrition.
本研究旨在用电导率法研究机械加载对猪颞下颌关节(TMJ)盘内溶质传输的影响。在 5 个盘区的 3 个应变下进行约束压缩,测定 TMJ 盘的电导率和离子扩散率。5 个区域的平均电导率(平均值±标准差)在 0%应变时为 3.10±0.68 mS/cm,在 10%应变时降至 2.76±0.58 mS/cm(-11.0%),在 20%压缩应变时降至 2.38±0.55 mS/cm(-22.2%)。相应地,平均相对离子扩散率(平均值±标准差)在 0%应变时为 0.273±0.055,在 10%应变时降至 0.253±0.048(-7.3%),在 20%压缩应变时降至 0.231±0.048(-15.4%)。这些结果表明压缩应变阻碍了 TMJ 盘内溶质的传输。此外,我们的结果表明 TMJ 盘的传输特性具有区域依赖性。前区的电导率和离子扩散率明显高于后区。这种区域差异可能是由于这两个区域之间组织水合作用的显著差异所致。本研究为机械加载下 TMJ 盘的电和溶质传输行为提供了重要的见解,并有助于理解与组织营养相关的 TMJ 病理生理学。