The effects of extremely low-frequency magnetic field exposure on apoptosis, neurodegeneration and trace element levels in the rat brain

Mehmet Onat Çakit, G. Koca, A. Akbulut, O. Erdem, S. Çetinkaya, Gaye Umurhan, Nur Aydinbelge-Dizdar, M. Esmekaya, N. Yumuşak, Ayse Gulnihal Canseven Kursun, M. Korkmaz
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引用次数: 1

Abstract

Aim: The aim of this study was to investigate the effects of 1mT, 1.5 mT, and 2 mT extremely low-frequency magnetic fields, which were within the limits for public environmental and occupational magnetic field exposure guidelines, on apoptosis, neurodegeneration and trace elements in rat brain cells. Material and Method: A total of 35 adult male Wistar rats were allocated into four main groups: Group 1 (n=8) was healthy controls; Group 2 (n=9) was exposed to 1 mT extremely low-frequency magnetic field; Group 3 (n=9) was exposed to 1.5 mT extremely low-frequency magnetic field and Group 4 (n=9) was exposed to 2 mT extremely low-frequency magnetic field. All the rats in the exposure groups were exposed to 50 Hz extremely low-frequency magnetic field for 4 hours per day, 5 days per week for 30 days in the Helmholtz coils. After the exposure, rats were sacrificed and rat brains were evaluated for histopathological and immunohistochemical changes as well as about the trace element levels in the brain. Results: Different levels of exposure to extremely low-frequency magnetic field doses caused increases in Ca levels and increased apoptosis in the rat brain. As the applied extremely low-frequency magnetic field levels increased, so did the apoptosis and Ca levels in the brain tissues. Conclusion: Extremely low-frequency magnetic field exposure caused neurodegeneration in rat brain tissue, increased apoptosis, and increased Ca concentration. These changes may cause various biological damage, especially cancer in healthy tissues and measures should be taken to minimize extremely low-frequency magnetic field exposure in daily life in terms of protecting public health.
极低频磁场暴露对大鼠脑细胞凋亡、神经退行性变及微量元素水平的影响
目的:本研究旨在探讨在公共环境和职业磁场暴露指南限制范围内的1mT、1.5 mT和2mt极低频磁场对大鼠脑细胞凋亡、神经变性和微量元素的影响。材料与方法:将35只成年雄性Wistar大鼠分为4组:1组(n=8)为健康对照组;组2 (n=9)暴露于1 mT极低频磁场;第3组(n=9)暴露在1.5 mT极低频磁场下,第4组(n=9)暴露在2 mT极低频磁场下。所有暴露组大鼠在亥姆霍兹线圈中每天暴露于50 Hz极低频磁场4小时,每周5天,连续30天。暴露后处死大鼠,观察大鼠脑组织病理、免疫组化变化及脑内微量元素水平。结果:不同剂量的极低频磁场暴露导致大鼠脑内钙水平升高,细胞凋亡增加。随着施加极低频磁场强度的增加,脑组织中细胞凋亡和钙水平升高。结论:极低频磁场暴露引起大鼠脑组织神经退行性变,细胞凋亡增加,钙浓度升高。这些变化可能造成各种生物损伤,特别是健康组织的癌症,应采取措施尽量减少日常生活中极低频磁场的暴露,以保护公众健康。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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