Sharifian Akbar, Gharavi Marjan, Pasalar Parvin, Aminian Omid
Department of Occupational Medicine, Tehran University of Medical Science, Poursina, Shanzdah Azar, Tehran, Islamic Republic of Iran.
Int Arch Occup Environ Health. 2009 Jan;82(2):259-66. doi: 10.1007/s00420-008-0332-2. Epub 2008 May 27.
The purpose of this study was to determine a possible relation between exposure to extremely low frequency magnetic field (ELF-MF) and the human antioxidant activity.
The total serum antioxidant status (TAS), red blood cells (RBCs) glutathione peroxidase (GPX) and superoxide dismutase (SOD) were measured in 46 spot welders who were occupationally exposed to ELF-MF (magnetic field strength = 8.8-84 microTesla (microT), frequency = 50 Hertz (Hz) and electric field strength = 20-133 V/m). The results were compared with a nonexposed ELF-MF control group. The correlation between magnetic field strength and antioxidant activity in RBCs and plasma was then assessed.
No significant differences in TAS levels were observed (P value = 0.065). However, in RBCs of exposed group, a significant decrease in SOD and GPX activities was observed (P value = 0.001 and 0.003, respectively). This decrease was measured as 22 and 12.3%, respectively. Furthermore, a significant negative correlation between SOD/GPX activities and magnetic field intensity was observed (coefficients of SOD: -0.625, significance: 0.0001 and coefficients of GPX: -0.348, significance: 0.018).
The results of this study indicate that ELF-MF could influence the RBC antioxidant activity and might act as an oxidative stressor. Intracellular antioxidant enzymes such as SOD and GPX were found to be the most important markers involving in this process. The influence of magnetic field on the antioxidant activity of RBCs might occur even at the recommended levels of exposure.
本研究旨在确定极低频磁场(ELF-MF)暴露与人体抗氧化活性之间的可能关系。
对46名职业性暴露于ELF-MF(磁场强度=8.8 - 84微特斯拉(μT),频率=50赫兹(Hz),电场强度=20 - 133伏/米)的点焊工人测量其血清总抗氧化状态(TAS)、红细胞(RBC)谷胱甘肽过氧化物酶(GPX)和超氧化物歧化酶(SOD)。将结果与未暴露于ELF-MF的对照组进行比较。然后评估磁场强度与红细胞和血浆中抗氧化活性之间的相关性。
未观察到TAS水平有显著差异(P值=0.065)。然而,在暴露组的红细胞中,观察到SOD和GPX活性显著降低(P值分别为0.001和0.003)。这种降低分别为22%和12.3%。此外,观察到SOD/GPX活性与磁场强度之间存在显著负相关(SOD系数:-0.625,显著性:0.0001;GPX系数:-0.348,显著性:0.018)。
本研究结果表明,ELF-MF可能影响红细胞抗氧化活性,并可能作为氧化应激源。发现细胞内抗氧化酶如SOD和GPX是参与此过程的最重要标志物。即使在推荐的暴露水平下,磁场对红细胞抗氧化活性的影响也可能发生。