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首页> 外文期刊>Journal of bone and mineral research: the official journal of the American Society for Bone and Mineral Research >Sinusoidal Electromagnetic Fields Increase Peak Bone Mass in Rats by Activating Wnt10b/β‐Catenin in Primary Cilia of Osteoblasts
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Sinusoidal Electromagnetic Fields Increase Peak Bone Mass in Rats by Activating Wnt10b/β‐Catenin in Primary Cilia of Osteoblasts

机译:通过在成骨细胞原发性纤毛中激活Wnt10b /β-catenin来增加大鼠峰值骨质的峰值骨质

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ABSTRACT Extremely low‐frequency electromagnetic fields have been considered a potential candidate for the prevention and treatment of osteoporosis; however, their action mechanism and optimal magnetic flux density (intensity) parameter are still elusive. The present study found that 50‐Hz sinusoidal electromagnetic fields (SEMFs) at 1.8 mT increased the peak bone mass of young rats by increasing bone formation. Gene array expression studies with femoral bone samples showed that SEMFs increased the expression levels of collagen‐1α1 and Wnt10b, a critical ligand of the osteogenic Wnt/β‐catenin pathway. Consistently, SEMFs promoted osteogenic differentiation and maturation of rat calvarial osteoblasts (ROBs) in vitro through activating the Wnt10b/β‐catenin pathway. This osteogenesis‐promoting effect of SEMFs via Wnt10b/β‐catenin signaling was found to depend on the functional integrity of primary cilia in osteoblasts. When the primary cilia were abrogated by small interfering RNA (siRNA) targeting IFT88, the ability of SEMFs to promote the osteogenic differentiation of ROBs through activating Wnt10b/β‐catenin signaling was blocked. Although the knockdown of Wnt10b expression with RNA interference had no effect on primary cilia, it significantly suppressed the promoting effect of SEMFs on osteoblastic differentiation/maturation. Wnt10b was normally localized at the bases of primary cilia, but it disappeared (or was released) from the cilia upon SEMF treatment. Interestingly, primary cilia were elongated to different degrees by different intensities of 50‐Hz SEMFs, with the window effect observed at 1.8?mT, and the expression level of Wnt10b increased in accord with the lengths of primary cilia. These results indicate that 50‐Hz 1.8‐mT SEMFs increase the peak bone mass of growing rats by promoting osteogenic differentiation/maturation of osteoblasts, which is mediated, at least in part, by Wnt10b at the primary cilia and the subsequent activation of Wnt/β‐catenin signaling. ? 2019 American Society for Bone and Mineral Research.
机译:摘要摘要极低频率的电磁场被认为是骨质疏松症预防和治疗的潜在候选者;然而,它们的动作机制和最佳磁通密度(强度)参数仍然难以捉摸。本研究发现,通过增加骨形成,50-Hz正弦电磁场(Semfs)增加了1.8 mt的峰骨质量。基因阵列表达研究与股骨样品表明,SEMFS增加了胶原-1α1和WNT10B的表达水平,骨质发生Wnt /β-连环蛋白途径的关键配体。始终如一地,通过激活Wnt10b /β-catenin途径,Semfs在体外促进了大鼠颅骨成骨细胞(Robs)的成骨分化和成熟。发现这种促进Semfs通过Wnt10b /β-catenin信号传导的促进效果依赖于成骨细胞中原发性纤毛的功能完整性。当靶向IFT88的小干扰RNA(siRNA)废除初级纤毛菌,阻断了SEMFS通过激活Wnt10b /β-catenin信号传导来促进RObs的易腐蚀性分化的能力。虽然Wnt10b表达与RNA干扰的敲低对原发性纤毛没有影响,但显着抑制了SEMFS对骨细胞分化/成熟的促进作用。 Wnt10b通常在玉米菌的基础上定位,但在Semf治疗时它从纤毛中消失(或被释放)。有趣的是,通过50-Hz Semfs的不同强度伸长到不同程度的原发性纤毛,窗口效应在1.8℃下观察到,Wnt10b的表达水平随着原发性纤毛的长度而增加。这些结果表明,通过促进至少部分地,通过在原发性纤毛的Wnt10b和随后的Wnt /后,通过促进骨灰细胞的成骨分化/成熟和随后的Wnt / β-catenin信号传导。还2019年美国骨骼和矿物学研究。

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