Univ Lyon, INSA Lyon, Universite Claude Bernard Lyon 1, UJM-Saint Etienne, CNRS UMR 5220, Inserm U1206, CREATIS, 69621 Lyon, France.
CNRS, INSA Lyon, Universite Claude Bernard Lyon 1 UCBL, MATEIS UMR CNRS 5510, Bât. Saint Exupéry, 23 Av. Jean Capelle, F-69621 Villeurbanne, France.
J Struct Biol. 2024 Sep;216(3):108111. doi: 10.1016/j.jsb.2024.108111. Epub 2024 Jul 24.
Osteocytes are the major actors in bone mechanobiology. Within bone matrix, they are trapped close together in a submicrometric interconnected network: the lacunocanalicular network (LCN). The interstitial fluid circulating within the LCN transmits the mechanical information to the osteocytes that convert it into a biochemical signal. Understanding the interstitial fluid dynamics is necessary to better understand the bone mechanobiology. Due to the submicrometric dimensions of the LCN, making it difficult to experimentally investigate fluid dynamics, numerical models appear as a relevant tool for such investigation. To develop such models, there is a need for geometrical and morphological data on the human LCN. This study aims at providing morphological data on the human LCN from measurement of 27 human femoral diaphysis bone samples using synchrotron radiation nano-computed tomography with an isotropic voxel size of 100 nm. Except from the canalicular diameter, the canalicular morphological parameters presented a high variability within one sample. Some differences in terms of both lacunar and canalicular morphology were observed between the male and female populations. But it has to be highlighted that all the canaliculi cannot be detected with a voxel size of 100 nm. Hence, in the current study, only a specific population of large canaliculi that could be characterize. Still, to the authors knowledge, this is the first time such a data set was introduced to the community. Further processing will be achieved in order to provide new insight on the LCN permeability.
成骨细胞是骨骼机械生物学的主要参与者。在骨基质内,它们紧密地困在亚微米相互连接的网络中:骨陷窝-骨小管网络(LCN)。在 LCN 内循环的间质液将机械信息传递到将其转化为生化信号的成骨细胞。了解间质液动力学对于更好地理解骨骼机械生物学是必要的。由于 LCN 的亚微米尺寸,使得难以通过实验研究流体动力学,数值模型似乎是此类研究的一种相关工具。为了开发这种模型,需要有关人类 LCN 的几何和形态学数据。本研究旨在提供通过对 27 个人类股骨骨干样本使用具有 100nm 各向同性体素尺寸的同步辐射纳米计算机断层扫描测量得到的关于人类 LCN 的形态学数据。除了管腔直径外,管腔形态参数在一个样本内具有高度可变性。在男性和女性群体之间观察到了在腔和管腔形态方面的一些差异。但必须强调的是,并非所有的小管都可以用 100nm 的体素尺寸检测到。因此,在当前研究中,只能对可以表征的特定大管腔群体进行研究。尽管如此,据作者所知,这是此类数据集首次被引入该领域。将进一步进行处理,以提供有关 LCN 渗透性的新见解。