Seifirad Soroush, Farzampour Shahrokh, Nourbakhsh Mitra, Amoli Mahsa Mohammad, Razzaghy-Azar Maryam, Larijani Bagher
Endocrinology and Metabolism Research Center, Endocrinology and Metabolism Clinical Sciences Institute, Tehran University of Medical Sciences, Tehran, Iran.
Electromagnetic Waves Research Center, Artesh University of Medical Sciences, Tehran, Iran.
J Diabetes Metab Disord. 2014 Aug 13;13(1):85. doi: 10.1186/s40200-014-0085-2. eCollection 2014.
Atherogenic effects of ELF-MF exposure have not been studied well so far. Therefore we have hypothesized that ELF-MF exposure might have atherogenic effect by impairing antioxidant function and increasing lipid peroxidation. This study was therefore undertaken to examine the effects of ELF-MF on paraoxonase (PON) activity, antioxidant capacity and lipid peroxidation metabolites. Effects of time on remodeling of antioxidant system were also investigated in this study.
Seventy five Wistar rats were randomly allocated into five groups as follows: 1) Sham exposure, 2) Single exposure to 60 Hz, sacrificed immediately after exposure, 3) Single exposure to 60 Hz, sacrificed 72 hours after exposure, 4) Fourteen days of exposure to 60 Hz, sacrificed immediately after exposure, and 5) Fourteen days of exposure to 60 Hz, sacrificed 72 hours after exposure. Blood samples were collected and analyzed. The results were compared using ANOVA and post hoc Tukey HSD for multiple caparisons.
Single ELF-MF exposure significantly increased lipid peroxidation (CD and MDA) and increased antioxidant serum activity (HDL, paraoxonase activity, and serum total antioxidant capacity). Chronic ELF-MF exposure increased lipid peroxidation and affected antioxidant system. Free fatty acids levels were significantly increased after both single and two weeks exposure. Chronic exposure led to irreversible changes while acute exposure tended to reversible alterations on above mentioned parameters.
According to the results of this study, ELF-MF exposure could impair oxidant-antioxidant function and might increase oxidative stress and lipid peroxidation. Antioxidant capability was dependent on the duration and continuity of ELF-MF exposure.
迄今为止,极低频磁场(ELF-MF)暴露的致动脉粥样硬化作用尚未得到充分研究。因此,我们推测ELF-MF暴露可能通过损害抗氧化功能和增加脂质过氧化作用而产生致动脉粥样硬化效应。因此,本研究旨在探讨ELF-MF对对氧磷酶(PON)活性、抗氧化能力和脂质过氧化代谢产物的影响。本研究还调查了时间对抗氧化系统重塑的影响。
将75只Wistar大鼠随机分为五组,如下:1)假暴露组;2)单次暴露于60Hz,暴露后立即处死;3)单次暴露于60Hz,暴露后72小时处死;4)暴露于60Hz十四天,暴露后立即处死;5)暴露于60Hz十四天,暴露后72小时处死。采集血样并进行分析。使用方差分析和事后检验的Tukey HSD进行多重比较以比较结果。
单次ELF-MF暴露显著增加脂质过氧化(CD和丙二醛)并提高抗氧化血清活性(高密度脂蛋白、对氧磷酶活性和血清总抗氧化能力)。长期ELF-MF暴露增加脂质过氧化并影响抗氧化系统。单次暴露和两周暴露后游离脂肪酸水平均显著升高。长期暴露导致不可逆变化,而急性暴露上述参数倾向于可逆改变。
根据本研究结果,ELF-MF暴露可能损害氧化-抗氧化功能,并可能增加氧化应激和脂质过氧化。抗氧化能力取决于ELF-MF暴露的持续时间和连续性。