Pasi Francesca, Sanna Samuele, Paolini Alessandro, Alquati Marco, Lascialfari Alessandro, Corti Maurizio Enrico, Liberto Riccardo Di, Cialdai Francesca, Monici Monica, Nano Rosanna
a Department of Biology and Biotechnologies "L. Spallanzani" , University of Pavia , Pavia , Italy.
b Department of Radiation Oncology , IRCCS Policlinico San Matteo Foundation , Pavia , Italy.
Electromagn Biol Med. 2016;35(4):343-52. doi: 10.3109/15368378.2016.1138123. Epub 2016 Jun 2.
Extremely low-frequency electromagnetic fields (ELF-EMFs) applied in magnetotherapy have frequency lower than 100 Hz and magnetic field intensity ranging from 0.1 to 20 mT. For many years, the use of magnetotherapy in clinics has been increasing because of its beneficial effects in many processes, e.g., skin diseases, inflammation and bone disorders. However, the understanding of the microscopic mechanisms governing such processes is still lacking and the results of the studies on the effects of ELF-EMFs are controversial because effects derive from different conditions and from intrinsic responsiveness of different cell types.In the present study, we studied the biological effects of 1.5 h exposure of human dermal fibroblasts to EMFs with frequencies of 5 and 50 Hz and intensity between 0.25 and 1.6 mT. Our data showed that the magnetic treatment did not produce changes in cell viability, but gave evidence of a sizeable decrease in proliferation at 24 h after treatment. In addition, immunofluorescence experiments displayed an increase in tubulin expression that could foreshadow changes in cell motility or morphology. The decrease in proliferation with unchanged viability and increase in tubulin expression could be consistent with the triggering of a transdifferentiation process after the exposure to ELF-EMFs.
磁疗中应用的极低频电磁场(ELF-EMFs)频率低于100Hz,磁场强度范围为0.1至20mT。多年来,磁疗在临床上的应用一直在增加,因为它在许多过程中都有有益作用,例如皮肤病、炎症和骨骼疾病。然而,对于控制这些过程的微观机制仍缺乏了解,并且关于ELF-EMFs效应的研究结果存在争议,因为这些效应源于不同的条件以及不同细胞类型的内在反应性。在本研究中,我们研究了人类皮肤成纤维细胞暴露于频率为5Hz和50Hz、强度在0.25至1.6mT之间的电磁场1.5小时后的生物学效应。我们的数据表明,磁处理并未导致细胞活力发生变化,但有证据表明处理后24小时细胞增殖显著下降。此外,免疫荧光实验显示微管蛋白表达增加,这可能预示着细胞运动或形态的变化。增殖减少而活力不变以及微管蛋白表达增加可能与暴露于ELF-EMFs后触发的转分化过程一致。