Department of Bioengineering, Imperial College London, London SW7 2AZ, UK.
Department of Engineering, Cambridge University, Cambridge CB2 1PZ, UK.
J Biomech. 2014 Mar 21;47(5):1110-6. doi: 10.1016/j.jbiomech.2013.12.020. Epub 2013 Dec 27.
The determination of lacunar-canalicular permeability is essential for understanding local fluid flow in bone, which may indicate how bone senses changes in the mechanical environment to regulate mechano-adaptation. The estimates of lacunar-canalicular permeability found in the literature vary by up to eight orders of magnitude, and age-related permeability changes have not been measured in non-osteonal mouse bone. The objective of this study is to use a poroelastic approach based on nanoindentation data to characterize lacunar-canalicular permeability in murine bone as a function of age. Nine wild type C57BL/6 mice of different ages (2, 7 and 12 months) were used. Three tibiae from each age group were embedded in epoxy resin, cut in half and indented in the longitudinal direction in the mid-cortex using two spherical fluid indenter tips (R=238 μm and 500 μm). Results suggest that the lacunar-canalicular intrinsic permeability of mouse bone decreases from 2 to 7 months, with no significant changes from 7 to 12 months. The large indenter tip imposed larger contact sizes and sampled larger ranges of permeabilities, particularly for the old bone. This age-related difference in the distribution was not seen for indents with the smaller radius tip. We conclude that the small tip effectively measured lacunar-canalicular permeability, while larger tip indents were influenced by vascular permeability. Exploring the age-related changes in permeability of bone measured by nanoindentation will lead to a better understanding of the role of fluid flow in mechano-transduction. This understanding may help indicate alterations in bone adaptation and remodeling.
空-腔连通渗透性的确定对于理解骨内局部流体流动至关重要,这可能表明骨如何感知机械环境的变化以调节机械适应。文献中空-腔连通渗透性的估计值差异高达八个数量级,并且在非骨小梁小鼠骨中尚未测量到与年龄相关的渗透性变化。本研究的目的是使用基于纳米压痕数据的多孔弹性方法来表征不同年龄小鼠骨中空-腔连通的渗透性。使用了不同年龄(2、7 和 12 个月)的 9 只野生型 C57BL/6 小鼠。每个年龄组的 3 根胫骨用环氧树脂包埋,沿长轴在中皮质处用两个球形流体压头(R=238 μm 和 500 μm)进行纵向切割和压痕。结果表明,小鼠骨的空-腔连通固有渗透性从 2 个月到 7 个月降低,从 7 个月到 12 个月没有明显变化。大压头施加的接触尺寸更大,采样的渗透性范围更大,尤其是对于老年骨。对于半径较小的压头压痕,没有看到这种与年龄相关的分布差异。我们得出的结论是,小压头有效地测量了空-腔连通渗透性,而较大压头的压痕受到血管通透性的影响。探索通过纳米压痕测量的骨渗透性与年龄相关的变化将有助于更好地理解流体流动在机械转导中的作用。这种理解可能有助于表明骨适应和重塑的改变。