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The Effect on Rat Thymocytes of the Simultaneous In Vivo Exposure to 50-Hz Electric and Magnetic Field and to Continuous Light

机译:体内同时暴露于50 Hz电磁场和连续光对大鼠胸腺细胞的影响

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摘要

Thymus plays an important role in the immune system and can be modulated by numerous environmental factors, including electromagnetic fields (EMF). The present study has been undertaken with the aim to investigate the role of long-term exposure to extremely low frequency electric and magnetic fields (ELF-EMF) on thymocytes of rats housed in a regular dark/light cycle or under continuous light. Male Sprague-Dawley rats, 2 months old, were exposed or sham exposed for 8 months to 50-Hz sinusoidal EMF at two levels of field strength (1 kV/m, 5 μT and 5 kV/m, 100 μT, respectively). Thymus from adult animals exhibits signs of gradual atrophy mainly due to collagen deposition and fat substitution. This physiological involution may be accelerated by continuous light exposure that induces a massive death of thymocytes. The concurrent exposure to continuous light and to ELF-EMF did not change significantly the rate of mitoses compared to sham-exposed rats, whereas the amount of cell death was significantly increased, also in comparison with animals exposed to EMF in a 12-h dark-light cycle. In conclusion, long-term exposure to ELF-EMF, in animals housed under continuous light, may reinforce the alterations due to a photic stress, suggesting that, in vivo, stress and ELF-EMF exposure can act in synergy determining a more rapid involution of the thymus and might be responsible for an increased susceptibility to the potentially hazardous effects of ELF-EMF.
机译:胸腺在免疫系统中起着重要的作用,并且可以通过许多环境因素进行调节,包括电磁场(EMF)。进行本研究的目的是研究长期暴露在规则的黑暗/光周期或连续光照下的大鼠胸腺细胞长期暴露于极低频电场和磁场(ELF-EMF)中的作用。将2个月大的雄性Sprague-Dawley大鼠以两种水平的场强(分别为1 kV / m,5μT和5 kV / m,100μT)暴露或假暴露于50Hz正弦电动势中8个月。成年动物的胸腺表现出逐渐萎缩的迹象,这主要是由于胶原蛋白沉积和脂肪替代引起的。持续的光照会引起胸腺细胞大量死亡,可能会加速这种生理退化。与假暴露的大鼠相比,同时暴露于连续光和ELF-EMF中并没有显着改变有丝分裂的发生率,而与在12小时黑暗中暴露于EMF的动物相比,细胞死亡的数量也显着增加了。 -光周期。总之,长期处于连续光照下的动物中长期暴露于ELF-EMF可能会增强由于光胁迫引起的变化,这表明,在体内,压力和ELF-EMF暴露可以协同作用,从而决定了更快速的对合可能会导致对ELF-EMF潜在危险作用的敏感性增加。

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