首页> 外文期刊>Biochemical and Biophysical Research Communications >Structural differences in the osteocyte network between the calvaria and long bone revealed by three-dimensional fluorescence morphometry, possibly reflecting distinct mechano-adaptations and sensitivities
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Structural differences in the osteocyte network between the calvaria and long bone revealed by three-dimensional fluorescence morphometry, possibly reflecting distinct mechano-adaptations and sensitivities

机译:三维荧光形态学揭示了颅骨和长骨之间骨细胞网络的结构差异,可能反映了不同的机械适应性和敏感性

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The structural features of osteocytes and their cellular process network are thought to allow for mechanotransduction from the bone tissue to these cells. This study applied three-dimensional fluorescence microscopy to fixed and decalcified bone specimens to quantitatively compare the osteocytes and their networks between mouse parietal bone and tibia that are physiologically enforced by distinct mechanical loads. The subsequent morphometric analysis by the surface rendering of osteocyte cell bodies revealed the tibia to have relatively enriched cytoplasm in the osteocyte cell body in comparison to the parietal bone. Furthermore, quantitative tracing of the cellular processes in silico demonstrated that the numbers of the cellular processes and their bifurcation points per osteocyte in the tibia were significantly higher than those in the parietal bone. Though the total length of the processes per osteocyte in the tibia was two times longer, its total surface area and total volume were smaller than those in the parietal bone, due to its thinner diameter. These architectural differences in the osteocytes and their networks are thus implicated in the adaptation to physiologically different loading, and may also induce distinct mechanosensitivities.
机译:骨细胞的结构特征及其细胞过程网络被认为允许从骨组织向这些细胞的机械转导。这项研究将三维荧光显微镜技术应用于固定和脱钙的骨标本,以定量比较小鼠顶骨和胫骨之间的骨细胞及其网络,这些骨细胞是由不同的机械负荷在生理上施加的。随后通过骨细胞细胞体的表面渲染进行的形态分析表明,与顶骨相比,胫骨在骨细胞细胞体内具有相对丰富的细胞质。此外,计算机对细胞过程的定量示踪表明,胫骨中每个骨细胞的细胞过程数量及其分叉点显着高于顶骨。尽管胫骨中每个骨细胞的过程总长度长了两倍,但由于其直径较细,其总表面积和总体积比顶骨小。因此,骨细胞及其网络中的这些结构差异与适应生理上不同的负荷有关,并且还可能引起不同的机械敏感性。

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