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脉冲电磁场刺激成骨细胞分化过程中一氧化氮信号通路和初级纤毛的相互依存关系。

The interdependent relationship between the nitric oxide signaling pathway and primary cilia in pulse electromagnetic field-stimulated osteoblastic differentiation.

机构信息

Fundamental Medical Science Research Laboratories, The 940th Hospital of Joint Logistic Support Force, People's Liberation Army of China, Lanzhou, P. R. China.

Department of Bioengineering, School of Life Science and Engineering, Lanzhou University of Technology, Lanzhou, P. R. China.

出版信息

FASEB J. 2022 Jun;36(6):e22376. doi: 10.1096/fj.202101577RR.

Abstract

Pulsed electromagnetic fields (PEMFs) have long been recognized being safe and effective in treating bone fracture nonunion and osteoporosis. However, the mechanism of osteogenic action of PEMFs is still unclear. While primary cilia are reported to be a sensory organelle for PEMFs, and nitric oxide (NO) plays an indispensable role in osteogenic effect of PEMFs, the relationship between NO and primary cilia is unknown. In this study, effects of treatment with 50 Hz 0.6 mT PEMFs on osteogenic differentiation and mineralization, NO secretion, and ciliary location of specific proteins were examined in rat calvarial osteoblasts (ROBs) with normal or abrogated primary cilia. It was found that PEMFs stimulated the osteogenic differentiation by activating the NOS/NO/sGC/cGMP/PKG signaling pathway, which need the existence of primary cilia. All components of the signaling pathway including iNOS, eNOS, sGC, PKG-1, and PKG-2 were localized to primary cilia, and eNOS was phosphorylated inside the primary cilia. Besides, primary cilia were elongated significantly by PEMF treatment and changed dynamically with the activation NO/cGMP pathway. When the pathway was blocked by L-NAME, PEMFs could no longer elongate the primary cilia and stimulate the osteoblastic differentiation. Thus, this study for the first time observed activation of the NO/cGMP signaling pathway in ciliary compartment of osteoblasts, and PEMFs could not stimulate the osteoblastic differentiation if the NO signaling pathway was blocked or the ciliogenesis was inhibited. Our findings indicate the interdependent relationship between NO and primary cilia in the PEMF-promoted osteogenesis.

摘要

脉冲电磁场(PEMFs)长期以来被认为在治疗骨不连和骨质疏松症方面是安全有效的。然而,PEMFs 的成骨作用机制仍不清楚。虽然初级纤毛被报道为 PEMFs 的感觉器官,一氧化氮(NO)在 PEMFs 的成骨作用中起着不可或缺的作用,但 NO 和初级纤毛之间的关系尚不清楚。在这项研究中,在具有正常或缺失初级纤毛的大鼠颅骨成骨细胞(ROBs)中,检查了 50 Hz 0.6 mT PEMFs 对成骨分化和矿化、NO 分泌以及特定蛋白纤毛位置的影响。结果发现,PEMFs 通过激活 NOS/NO/sGC/cGMP/PKG 信号通路刺激成骨分化,该通路需要初级纤毛的存在。信号通路的所有组成部分,包括 iNOS、eNOS、sGC、PKG-1 和 PKG-2,都定位于初级纤毛,并且 eNOS 在初级纤毛内被磷酸化。此外,PEMF 处理使初级纤毛显著伸长,并随着 NO/cGMP 通路的激活而动态变化。当该通路被 L-NAME 阻断时,PEMFs 不能再延长初级纤毛并刺激成骨细胞分化。因此,本研究首次观察到成骨细胞纤毛腔内的 NO/cGMP 信号通路的激活,如果阻断 NO 信号通路或抑制纤毛发生,PEMFs 就不能刺激成骨细胞分化。我们的研究结果表明,NO 和初级纤毛在 PEMF 促进成骨过程中存在相互依存关系。

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