Department of Biomedical and Dental Sciences and Morpho-Functional Imaging, University of Messina, 98125 Messina, Italy.
Int J Mol Sci. 2024 Jul 18;25(14):7872. doi: 10.3390/ijms25147872.
Exposure to 2.45 GHz electromagnetic radiation (EMR) emitted from commonly used devices has been reported to induce oxidative stress in several experimental models. Our study aims to evaluate the efficacy of sulforaphane, a well-known natural product, in preventing radiation-induced toxic effects caused by a 24 h exposure of SH-SY5Y neuronal-like cells and peripheral blood mononuclear cells (PBMCs) to 2.45 GHz EMR. Cells were exposed to radiation for 24 h in the presence or absence of sulforaphane at different concentrations (5-10-25 µg/mL). Cell viability, mitochondrial activity alterations, the transcription and protein levels of redox markers, and apoptosis-related genes were investigated. Our data showed a reduction in cell viability of both neuronal-like cells and PBMCs caused by EMR exposure and a protective effect of 5 µg/mL sulforaphane. The lowest sulforaphane concentration decreased ROS production and increased the Mitochondrial Transmembrane Potential (Δ) and the NAD+/NADH ratio, which were altered by radiation exposure. Sulforaphane at higher concentrations displayed harmful effects. The hormetic behavior of sulforaphane was also evident after evaluating the expression of genes coding for Nrf2, SOD2, and changes in apoptosis markers. Our study underlined the vulnerability of neuronal-like cells to mitochondrial dysfunction and oxidative stress and the possibility of mitigating these effects by supplementation with sulforaphane. To our knowledge, there are no previous studies about the effects of SFN on these cells when exposed to 2.45 GHz electromagnetic radiation.
暴露于常用设备发出的 2.45GHz 电磁辐射(EMR)已被报道在几种实验模型中诱导氧化应激。我们的研究旨在评估萝卜硫素(一种众所周知的天然产物)在预防 2.45GHz EMR 暴露 24 小时对 SH-SY5Y 神经元样细胞和外周血单核细胞(PBMC)引起的辐射毒性作用的功效。细胞在存在或不存在不同浓度(5-10-25μg/ml)萝卜硫素的情况下暴露于辐射 24 小时。研究了细胞活力、线粒体活性改变、氧化还原标志物的转录和蛋白水平以及与凋亡相关的基因。我们的数据显示,EMR 暴露会降低神经元样细胞和 PBMC 的细胞活力,而 5μg/ml 萝卜硫素具有保护作用。最低浓度的萝卜硫素可减少 ROS 产生,并增加辐射暴露改变的线粒体跨膜电位(Δ)和 NAD+/NADH 比值。较高浓度的萝卜硫素则表现出有害作用。在用编码 Nrf2、SOD2 的基因表达和凋亡标志物的变化来评估后,萝卜硫素还表现出激素样行为。我们的研究强调了神经元样细胞对线粒体功能障碍和氧化应激的脆弱性,以及通过补充萝卜硫素来减轻这些影响的可能性。据我们所知,目前尚无关于 SFN 在这些细胞暴露于 2.45GHz 电磁辐射时的影响的研究。