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首页> 外文期刊>Journal of Theoretical Biology >Do calcium fluxes within cortical bone affect osteocyte mechanosensitivity?
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Do calcium fluxes within cortical bone affect osteocyte mechanosensitivity?

机译:皮质骨内是否会影响骨细胞机械敏感性?

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摘要

Bone reacts to local mechanical environment by adapting its structure. Bone is also a key source of calcium for the body homeostasis. Osteocytes, cells located within the bone tissue, are thought to play a major role in sensing mechanical signals and regulating bone remodeling. Interestingly, osteocytes were also shown to directly participate in the calcium homeostasis by regulating dissolution and deposition of calcium in the perilacuno-pericanalicular space. However, it is not known if osteocyte's roles in mechanoregulation and calcium homeostasis have any significant crosstalk. Previously, a multi-scale mathematical model of the interstitial fluid flow through the canaliculus was developed, which took into account physicochemical phenomena including hydraulic effects, formation of electrical double layer, osmosis and electro-osmosis. We extended this model to include the directional movement of calcium from and into the bone tissue, and assessed the shear stress at the osteocyte membrane. We have found that in the bulk of the canalicular space the fluid flow due to chemical gradient generated by deposition or dissolution of calcium is negligible compared to the fluid flow due to hydraulic pressure. However, at the osteocyte proximity, the presence of calcium gradient generated sufficient fluid flow to induce significant changes in the shear stress on the osteocyte membrane. Calcium deposition and dissolution on the canalicular wall resulted in increased or decreased shear stress on the osteocyte membrane respectively. Thus, our data demonstrate that strong calcium fluxes due to whole body calcium homeostasis may affect mechanical forces experienced by osteocytes.
机译:通过调整其结构,骨骼反应到局部机械环境。骨骼也是身体稳态钙的关键来源。骨细胞,位于骨组织内的细胞,被认为在感测机械信号和调节骨质重塑方面发挥重要作用。有趣的是,骨细胞也显示出通过调节贫血性空间中钙的溶解和沉积来直接参与钙稳态。然而,如果骨细胞在机械手术和钙稳态上的作用,则不知道是不知道的任何显着的串扰。以前,开发了通过CANALICULUS的间质液体流动的多尺度数学模型,这考虑了包括液压效果,形成电双层,渗透和电渗透的物理化学现象。我们将该模型扩展以包括钙从骨组织和进入骨组织的定向运动,并评估骨细胞膜处的剪切应力。我们发现,与液压引起的流体流相比,在穴位空间的大部分空间中,由于钙产生的化学梯度而导致的流体流动可忽略不计,或者易忽略。然而,在骨细胞接近度下,钙梯度的存在产生足够的流体流动以诱导骨细胞膜上的剪切应力的显着变化。钙沉积和溶解在釜壁上,分别对骨细胞膜的剪切应力增加或降低。因此,我们的数据表明,由于全身钙稳态引起的强钙通量可能影响骨细胞所经历的机械力。

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