首页> 外文期刊>Journal of pineal research >Direct suppressive effects of weak magnetic fields (50 Hz and 16 2/3 Hz) on melatonin synthesis in the pineal gland of Djungarian hamsters (Phodopus sungorus).
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Direct suppressive effects of weak magnetic fields (50 Hz and 16 2/3 Hz) on melatonin synthesis in the pineal gland of Djungarian hamsters (Phodopus sungorus).

机译:弱磁场(50 Hz和16 2/3 Hz)对Djungarian仓鼠(Phodopus sungorus)松果体褪黑激素合成的直接抑制作用。

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摘要

In many investigations performed thus far on rodents, a suppression of melatonin synthesis was observed when animals were exposed to weak magnetic fields. However, among the several issues not yet resolved is the question of whether the observed changes are caused by direct effects on the pineal gland or by indirect effects, e.g., at the level of the eyes. We, therefore, performed a series of experiments in which direct effects of weak magnetic fields were studied in isolated pineal glands of Djungarian hamsters (Phodopus sungorus). After sacrifice of animals during morning hours, pineal glands were removed and placed individually into glass chambers that were perfused with oxygenated buffer. Experiments (n = 8) lasted for 8 hr. Magnetic fields (1,623 or 50 Hz at 86 microTesla) were generated by Helmholtz coils, and were present during the entire period. In each experiment, 12 exposed, and 12 sham-exposed, pineal glands were placed individually in glass chambers, which were surrounded by identical coils. Because of the design of the coils (bifilament), and the experimental setup (black box), the experimentator was not aware which coil was activated until the results were obtained. After 3.25 hr of adaptation, melatonin production was stimulated by isoproterenol (10(-7) M) for 30 min. Eluted fractions were collected, and melatonin concentrations were measured by radioimmunoassay. Maximum melatonin production was achieved after 5-7 hr. In all experiments, maximum melatonin concentrations were lower in the exposed groups compared with the sham-exposed controls. Statistical analyses for each frequency showed significant suppressive effects at 16(2/3) Hz (P < 0.01), and 50 Hz (P < 0.00). It is concluded that the suppressive effects of magnetic fields on the synthesis of melatonin are a result of primary mechanisms at the level of the pineal gland.
机译:迄今为止,在对啮齿动物进行的许多研究中,当动物暴露于弱磁场中时,均会发现褪黑激素合成受到抑制。但是,在尚待解决的几个问题中,有一个问题是观察到的变化是由对松果体的直接作用还是由例如眼睛水平的间接作用引起的。因此,我们进行了一系列实验,其中在Djungarian仓鼠(Phodopus sungorus)孤立的松果体中研究了弱磁场的直接影响。在早晨将动物处死后,将松果体移出并分别放入装有氧合缓冲液的玻璃室中。实验(n = 8)持续了8个小时。亥姆霍兹线圈产生磁场(在86 microTesla处为1,623或50 Hz),并且在整个期间都存在。在每个实验中,将12个裸露的和12个假暴露的松果体分别放置在玻璃室中,玻璃室被相同的线圈包围。由于线圈的设计(双线圈)和实验装置(黑匣子),实验人员直到获得结果后才知道哪个线圈被激活。适应3.25小时后,异丙肾上腺素(10(-7)M)刺激褪黑激素生成30分钟。收集洗脱的级分,并通过放射免疫测定法测定褪黑激素浓度。 5-7小时后达到最大的褪黑激素产量。在所有实验中,与假暴露对照组相比,暴露组的最大褪黑激素浓度较低。每个频率的统计分析表明在16(2/3)Hz(P <0.01)和50 Hz(P <0.00)时具有明显的抑制作用。结论是磁场对褪黑激素合成的抑制作用是松果体水平的主要机制的结果。

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