Miyamoto Hironori, Sawaji Yasunobu, Iwaki Takahiro, Masaoka Toshinori, Fukada Eiichi, Date Munehiro, Yamamoto Kengo
Department of Orthopedic Surgery, Tokyo Medical University, Tokyo, Japan.
Laboratory of Piezoelectricity, Kobayasi Institute of Physical Research, Tokyo, Japan.
Bioelectromagnetics. 2019 Sep;40(6):412-421. doi: 10.1002/bem.22207. Epub 2019 Jul 23.
Pulsed electromagnetic fields (PEMFs) have been shown to be a noninvasive physical stimulant for bone fracture healing. However, PEMF stimulation requires a relatively long period of time and its mechanism of action has not yet been fully clarified. Recently, the mammalian target of rapamycin (mTOR) pathway has been shown to be involved in bone formation. This study aimed to investigate the effects of PEMFs on osteoblastic MC3T3-E1 cells by examining various cellular responses including changes in the mTOR pathway. Continuous PEMF stimulation induced a transient phosphorylation of the mTOR pathway, whereas intermittent PEMF stimulation (1 cycle of 10 min stimulation followed by 20 min of stimulation pause) revitalized the reduced phosphorylation. Moreover, PEMF stimulation stimulated cell proliferation (bromodeoxyuridine incorporation) rather than differentiation (alkaline phosphatase activity), with a more notable effect in the intermittently stimulated cells. These results suggest that intermittent PEMF stimulation may be effective in promoting bone fracture healing by accelerating cell proliferation, and in shortening stimulation time. Bioelectromagnetics. 2019;40:412-421. © 2019 Bioelectromagnetics Society.
脉冲电磁场(PEMFs)已被证明是一种用于促进骨折愈合的非侵入性物理刺激手段。然而,PEMF刺激需要较长时间,其作用机制尚未完全阐明。最近,雷帕霉素的哺乳动物靶点(mTOR)通路已被证明参与骨形成。本研究旨在通过检测包括mTOR通路变化在内的各种细胞反应,来研究PEMFs对成骨MC3T3-E1细胞的影响。连续PEMF刺激诱导mTOR通路的瞬时磷酸化,而间歇性PEMF刺激(10分钟刺激1个周期,随后暂停刺激20分钟)使降低的磷酸化恢复活力。此外,PEMF刺激促进细胞增殖(溴脱氧尿苷掺入)而非分化(碱性磷酸酶活性),在间歇性刺激的细胞中效果更显著。这些结果表明,间歇性PEMF刺激可能通过加速细胞增殖和缩短刺激时间,有效地促进骨折愈合。《生物电磁学》。2019年;40:412 - 421。© 2019生物电磁学协会。