嗅鞘细胞骨架蛋白在射频电磁场作用下的动态变化。

Dynamic changes in cytoskeleton proteins of olfactory ensheathing cells induced by radiofrequency electromagnetic fields.

机构信息

Department of Physics and Astronomy 'Ettore Majorana', University of Catania, 95123 Catania, Italy

Laboratori Nazionali del Sud, National Institute for Nuclear Physics, 95123 Catania, Italy.

出版信息

J Exp Biol. 2020 Feb 28;223(Pt 5):jeb217190. doi: 10.1242/jeb.217190.

Abstract

Several evidences have suggested the ability of radiofrequency electromagnetic fields to influence biological systems, even if the action mechanisms are not well understood. There are few data on the effect of radiofrequency electromagnetic fields on self-renewal of neural progenitor cells. A particular glial type that shows characteristics of stem cells is olfactory ensheathing cells (OECs). Herein, we assessed the non-thermal effects induced on OECs through radiofrequency electromagnetic fields changing the envelope of the electromagnetic wave. Primary OEC cultures were exposed to continuous or amplitude-modulated 900 MHz electromagnetic fields, in the far-field condition and at different exposure times (10, 15, 20 min). The expression of OEC markers (S-100 and nestin), cytoskeletal proteins (GFAP and vimentin), apoptotic pathway activation by caspase-3 cleavage and cell viability were evaluated. Our results highlight that 20 min of exposure to continuous or amplitude-modulated 900 MHz electromagnetic fields induced a different and significant decrease in cell viability. In addition, according to the electromagnetic field waveform, diverse dynamic changes in the expression of the analysed markers in OECs and activation of the apoptotic pathway were observed. The data suggest that radiofrequency electromagnetic fields might play different and important roles in the self-renewal of OEC stem cells, which are involved in nervous system repair.

摘要

已有多项证据表明,射频电磁场能够影响生物系统,尽管其作用机制尚未得到充分理解。关于射频电磁场对神经祖细胞自我更新的影响,目前数据有限。一种具有干细胞特征的特殊神经胶质细胞是嗅鞘细胞(OECs)。在此,我们通过改变电磁波的包络来评估射频电磁场对 OECs 产生的非热效应。原代 OEC 培养物在远场条件下,分别接受连续或调幅 900MHz 电磁场照射,暴露时间为 10、15、20min。评估 OEC 标志物(S-100 和巢蛋白)、细胞骨架蛋白(GFAP 和波形蛋白)、半胱天冬酶-3 切割激活的凋亡途径和细胞活力的表达。我们的结果表明,连续或调幅 900MHz 电磁场暴露 20min 可显著降低细胞活力。此外,根据电磁场的波形,观察到 OEC 中分析标志物的表达和凋亡途径的激活出现不同的动态变化。这些数据表明,射频电磁场可能在参与神经系统修复的 OEC 干细胞自我更新中发挥不同且重要的作用。

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