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Exposure to 50 Hz electromagnetic field changes the efficiency of the scorpion alpha toxin

机译:暴露于50 Hz电磁场会改变蝎子α毒素的效率

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AbstractBackground Extremely low-frequency (50 Hz) electromagnetic field (ELF-EMF) is produced by electric power transmission lines and electronic devices of everyday use. Some phenomena are proposed as “first effects” of ELF-EMF: the discrete changes in the membrane potential and the increase of the calcium channel activity as well as the intracellular concentration of Ca 2+ . Interaction of the scorpion alpha toxin with the sodium channel depends on the orientation of the charges and may be perturbed by changes in the membrane polarization. The toxin induces overexcitability in the nervous system and an increase in the neurotransmitters released with different consequences, mainly the paralysis of muscles. We assumed that the exposure to ELF-EMF 0.7 mT will change the effects of the insect selective scorpion alpha toxin (recombinant LqhαIT from Leiurus quinquestriatus hebraeus) at the level of the cercal nerve function, the synaptic transmission and on the level of entire insect organism. Taking into account the compensatory mechanisms in organisms, we tested in addition ten times higher ELF-EMF on whole insects.Methods Experiments were performed in vivo on cockroaches (Periplaneta americana) and in vitro – on isolated cockroach abdominal nerve cord with cerci. In biotests, the effects of LqhαIT (10 −8 M) were estimated on the basis of the insect ability to turn back from dorsal to ventral side. Three groups were compared: the control one and the two exposed to ELF-EMF – 0.7 and 7 mT. Bioelectrical activity of the cercal nerve and of the connective nerve that leaves the terminal abdominal ganglion was recorded using extracellular electrodes. LqhαIT (5 × 10 −8 M) induced modifications of neuronal activity that were observed in the control cockroach preparations and in the ones exposed to ELF-EMF (0.7 mT). The exposure to ELF-EMF was carried out using coils with a size appropriate to the examined objects.Results The exposure to ELF-EMF (0.7 mT) modified the effects of LqhαIT (5 × 10−8 M) on activity of the cercal nerve and of the connective nerve. We observed a decrease of the toxin effect on the cercal nerve activity, but the toxic effect of LqhαIT on the connective nerve was increased. Biotests showed that toxicity of LqhαIT (10 −8 M) on cockroaches was reduced by the exposure to ELF-EMF (0.7 and 7 mT).Conclusions The exposure to 50 Hz ELF-EMF modified the mode of action of the anti-insect scorpion alpha toxin LqhαIT at cellular level of the cockroach nervous system and in biotests. Toxin appeared as a usefull tool in distinguishing between the primary and the secondary effects of ELF-EMF.
机译:摘要背景极低频率(50 Hz)的电磁场(ELF-EMF)是由电力传输线和日常使用的电子设备产生的。一些现象被认为是ELF-EMF的“第一个作用”:膜电位的离散变化和钙通道活性的增加以及细胞内Ca 2+的浓度增加。蝎子α毒素与钠通道的相互作用取决于电荷的方向,并可能受到膜极化变化的干扰。毒素在神经系统中引起过度兴奋,释放的神经递质增加,其后果不同,主要是肌肉麻痹。我们认为,暴露于0.7 mT的ELF-EMF会改变昆虫选择性蝎α毒素(来自Leiurus quinquestriatus hebraeus的重组LqhαIT)在脑神经功能,突触传递和整个昆虫生物体水平的影响。 。考虑到生物体的补偿机制,我们还对整个昆虫进行了10倍高的ELF-EMF测试。方法在体内对蟑螂(Periplaneta americana)进行体外实验,并在离体的腹腔蟑螂腹角神经上进行了实验。在生物测试中,LqhαIT(10 -8 M)的影响是根据昆虫从背侧转回腹侧的能力估算的。比较了三组:对照组1和两组暴露于ELF-EMF – 0.7和7 mT。使用细胞外电极记录离开末端腹神经节的脑神经和结缔神经的生物电活性。 LqhαIT(5×10 -8 M)引起神经元活性的改变,这在对照蟑螂制剂和暴露于ELF-EMF(0.7 mT)的蟑螂制剂中观察到。结果使用ELF-EMF(0.7 mT)暴露的线圈改变了LqhαIT(5×10-8 M)对脑神经活动的影响,对线圈进行ELF-EMF暴露。和结缔神经。我们观察到毒素对脑神经活动的减少,但LqhαIT对结缔神经的毒性增加。生物测试表明,暴露于ELF-EMF(0.7和7 mT)可降低LqhαIT(10 -8 M)对蟑螂的毒性。结论暴露于50 Hz ELF-EMF可以改变抗虫蝎的作用方式。蟑螂神经系统细胞水平和生物测试中的α毒素LqhαIT。毒素作为区分ELF-EMF的主要作用和次要作用的有用工具。

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