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The Role of Water in the Effect of Weak Combined Magnetic Fields on Production of Reactive Oxygen Species (ROS) by Neutrophils

机译:水在弱组合磁场对中性粒细胞对活性氧物种(ROS)产生影响的作用

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摘要

Various models have been used to demonstrate the pronounced effects of the microwave frequency range electromagnetic fields, as well as weak and very weak combined collinear magnetic fields (CMF) with static and variable components in the order of micro- and nano-tesla. One of such models, previously shown to be sensitive to variations in the parameters of applied magnetic fields, is the neutrophil respiratory burst. Using luminol-enhanced cell chemiluminescence assay, we studied the effects of the CMF exerted directly on neutrophil suspensions and, indirectly, through aqueous solutions. To experimentally create a uniform standard weak CMF with 60 µT static and 100 nT alternating magnetic field components, we engineered a shielded magnetic field induction device. CMF applied directly to neutrophils enhanced reactive oxygen species (ROS) production by more than 36%. The pronounced stimulating effect was observed only when using the signals that included the frequency of 12.6 Hz that corresponds to the ion cyclotron resonance (ICR) frequency of the hydrated hydronium ion. Similarly, to direct exposure, CMF pre-treatment of a water sample subsequently added to the neutrophil suspension increased ROS production by 66%. The effect of CMF pre-treatment was retained after a series of dilutions and mechanical treatment but disappeared in “magnetic vacuum” or without mechanical influence. Therefore, weak and super weak magnetic fields may indirectly, via water, activate ROS production by neutrophils, provided that modulation of super weak component of collinear field corresponds to the ICR frequency of the hydrated hydronium ion.
机译:已经使用各种模型来展示微波频率范围电磁场的发音效果,以及诸如微型和纳米Tesla的顺序中具有静态和可变分量的弱和非常弱的共线磁场(CMF)。此类模型之一,以前显示对应用磁场参数的变化敏感,是中性粒细胞呼吸爆发。使用升增强的细胞化学发光测定,我们研究了CMF直接在中性粒细胞悬浮液上施加的影响,并间接地通过水溶液。为了通过60μT静态和100nt交替磁场分量进行实验地创建均匀标准弱CMF,我们设计了一种屏蔽磁场感应装置。 CMF直接施用于中性粒细胞增强的活性氧物质(ROS)生产超过36%。仅当使用包括12.6Hz的频率的信号时,仅观察到明显的刺激效果,其对应于水合氢鎓离子的离子回旋谐振(ICR)频率。类似地,直接曝光,随后加入中性粒细胞悬浮液的水样的CMF预处理增加了RO的产量66%。在一系列稀释液和机械处理之后,CMF预处理的效果保留,但在“磁性真空”中消失或没有机械影响。因此,通过水通过水间接弱磁场可以间接地通过中性粒细胞激活ROS产生,只要对应于水合氢离子的ICR频率的超弱分量对应于ICR频率。

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