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Osteoclastogenesis accompanying early osteoblastic differentiation of BMSCs promoted by mechanical stretch

机译:机械牵张促进BMSCs早期成骨细胞分化为破骨细胞

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摘要

Mechanical stress plays a crucial role in bone formation and absorption. In previous studies, we verified the osteoblastogenesis of bone mesenchymal stem cells (BMSCs) affected by intermittent traction stretch. However, little is known about the osteoclastogenesis process under mechanical stimulation and its underlying association with osteoblastogenesis. In the present study, we investigated the osteoclastogenesis of BMSCs under this special mechanical stress. BMSCs were subjected to 10% elongation for 1–7 days using a Flexcell Strain Unit and then the mRNA levels of osteoclastic genes were examined. The results indicated time-dependent varying of mRNA levels of the receptor activator of nuclear factor-κB ligand (RANKL) and osteoprotegerin (OPG) in BMSCs at different stretching time points. The ratio of RANKL/OPG increased at the early stage of mechanical stimulation (5 days) and decreased to a low level at a later stage (7 days). Findings of this study may help to understand the correlations between osteoblastogenesis and osteoclasteogenesis when mechanical stretch induces the osteoblastic differentiation of BMSCs.
机译:机械应力在骨形成和吸收中起关键作用。在以前的研究中,我们验证了间歇性牵引拉伸对骨间充质干细胞(BMSCs)成骨的影响。然而,关于机械刺激下的破骨细胞形成过程及其与成骨细胞发生的潜在联系知之甚少。在本研究中,我们调查了在这种特殊的机械应力下骨髓间充质干细胞的破骨细胞生成。使用Flexcell应变单元对BMSC进行10%的延伸1–7天,然后检查破骨细胞基因的mRNA水平。结果表明,在不同的拉伸时间点,骨髓间充质干细胞中核因子-κB配体(RANKL)和骨保护素(OPG)受体激活子的mRNA水平随时间变化。 RANKL / OPG的比例在机械刺激的早期(5天)增加,而在后期(7天)降低到低水平。这项研究的发现可能有助于理解机械牵张诱导BMSCs成骨细胞分化时成骨细胞生成与骨赘形成之间的相关性。

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