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射频场暴露对干细胞衍生神经元细胞钙动力学的非热效应:钙途径的阐明

Nonthermal effects of radiofrequency-field exposure on calcium dynamics in stem cell-derived neuronal cells: elucidation of calcium pathways.

作者信息

Rao V S, Titushkin I A, Moros E G, Pickard W F, Thatte H S, Cho M R

机构信息

Department of Bioengineering, University of Illinois at Chicago, Chicago, Illinois, USA.

出版信息

Radiat Res. 2008 Mar;169(3):319-29. doi: 10.1667/RR1118.1.

Abstract

Intracellular Ca(2+) spikes trigger cell proliferation, differentiation and cytoskeletal reorganization. In addition to Ca(2+) spiking that can be initiated by a ligand binding to its receptor, exposure to electromagnetic stimuli has also been shown to alter Ca(2+) dynamics. Using neuronal cells differentiated from a mouse embryonic stem cell line and a custom-built, frequency-tunable applicator, we examined in real time the altered Ca(2+) dynamics and observed increases in the cytosolic Ca(2+) in response to nonthermal radiofrequency (RF)-radiation exposure of cells from 700 to 1100 MHz. While about 60% of control cells (not exposed to RF radiation) were observed to exhibit about five spontaneous Ca(2+) spikes per cell in 60 min, exposure of cells to an 800 MHz, 0.5 W/kg RF radiation, for example, significantly increased the number of Ca(2+) spikes to 15.7+/-0.8 (P<0.05). The increase in the Ca(2+) spiking activities was dependent on the frequency but not on the SAR between 0.5 to 5 W/kg. Using pharmacological agents, it was found that both the N-type Ca(2+) channels and phospholipase C enzymes appear to be involved in mediating increased Ca(2+) spiking. Interestingly, microfilament disruption also prevented the Ca(2+) spikes. Regulation of Ca(2+) dynamics by external physical stimulation such as RF radiation may provide a noninvasive and useful tool for modulating the Ca(2+)-dependent cellular and molecular activities of cells seeded in a 3D environment for which only a few techniques are currently available to influence the cells.

摘要

细胞内钙离子峰触发细胞增殖、分化和细胞骨架重组。除了由配体与其受体结合引发的钙离子峰外,暴露于电磁刺激也已被证明会改变钙离子动力学。我们使用从小鼠胚胎干细胞系分化而来的神经元细胞和定制的频率可调施加器,实时检测了钙离子动力学的改变,并观察到细胞在700至1100兆赫兹的非热射频辐射暴露下,胞质钙离子增加。例如,虽然观察到约60%的对照细胞(未暴露于射频辐射)在60分钟内每个细胞表现出约5次自发钙离子峰,但将细胞暴露于800兆赫兹、0.5瓦/千克的射频辐射下,钙离子峰的数量显著增加至15.7±0.8(P<0.05)。钙离子峰活动的增加取决于频率,而不是0.5至5瓦/千克之间的比吸收率。使用药理学试剂发现,N型钙离子通道和磷脂酶C酶似乎都参与介导钙离子峰的增加。有趣的是,微丝破坏也阻止了钙离子峰。通过外部物理刺激如射频辐射对钙离子动力学的调节,可能为调节三维环境中细胞的钙离子依赖性细胞和分子活动提供一种非侵入性且有用的工具,目前仅有少数技术可用于影响这种环境中的细胞。

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