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Effects of cyclic hydraulic pressure on osteocytes.

机译:循环水压对骨细胞的影响。

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Bone is able to adapt its composition and structure in order to suit its mechanical environment. Osteocytes, bone cells embedded in the calcified matrix, are believed to be the mechanosensors and responsible for orchestrating the bone remodeling process. Recent in vitro studies have shown that osteocytes are able to sense and respond to substrate strain and fluid shear. However the capacity of osteocytes to sense cyclic hydraulic pressure (CHP) associated with physiological mechanical loading is not well understood. In this study, we subjected osteocyte-like MLO-Y4 cells to controlled CHP of 68 kPa at 0.5 Hz, and investigated the effects of CHP on intracellular calcium concentration, cytoskeleton organization, mRNA expression of genes related to bone remodeling, and osteocyte apoptosis. We found that osteocytes were able to sense CHP and respond by increased intracellular calcium concentration, altered microtubule organization, a time-dependent increase in COX-2 mRNA level and RANKL/OPG mRNA ratio, and decreased apoptosis. These findings support the hypothesis that loading induced cyclic hydraulic pressure in bone serves as a mechanical stimulus to osteocytes and may play a role in regulating bone remodeling in vivo.
机译:骨骼能够适应其组成和结构,以适应其机械环境。骨细胞是嵌入钙化基质中的骨细胞,被认为是机械传感器,负责协调骨重塑过程。最近的体外研究表明,骨细胞能够感知并响应基底应变和流体剪切。然而,人们对骨细胞感知与生理机械负荷相关的循环液压(CHP)的能力的了解还很少。在这项研究中,我们使骨细胞样MLO-Y4细胞在0.5 Hz时受控于CHP为68 kPa,并研究了CHP对细胞内钙浓度,细胞骨架组织,与骨重塑相关的基因的mRNA表达以及骨细胞凋亡的影响。我们发现骨细胞能够感知CHP,并通过增加细胞内钙浓度,改变微管组织,COX-2 mRNA水平和RANKL / OPG mRNA比值随时间增加以及凋亡减少而做出反应。这些发现支持这样的假说,即骨骼中的负载诱导的循环水压可作为对骨细胞的机械刺激,并可能在体内调节骨重塑中发挥作用。

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