Characterisation of weak magnetic field effects in an aqueous glutamic acid solution by nonlinear dielectric spectroscopy and voltammetry.

Alexander Pazur
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引用次数: 67

Abstract

BACKGROUND: Previous reports indicate altered metabolism and enzyme kinetics for various organisms, as well as changes of neuronal functions and behaviour of higher animals, when they were exposed to specific combinations of weak static and alternating low frequency electromagnetic fields. Field strengths and frequencies, as well as properties of involved ions were related by a linear equation, known as the formula of ion cyclotron resonance (ICR, abbreviation mentioned first by Liboff). Under certain conditions already a aqueous solution of the amino acid and neurotransmitter glutamate shows this effect. METHODS: An aqueous solution of glutamate was exposed to a combination of a static magnetic field of 40 muT and a sinusoidal electromagnetic magnetic field (EMF) with variable frequency (2-7 Hz) and an amplitude of 50 nT. The electric conductivity and dielectric properties of the solution were investigated by voltammetric techniques in combination with non linear dielectric spectroscopy (NLDS), which allow the examination of the dielectric properties of macromolecules and molecular aggregates in water. The experiments target to elucidate the biological relevance of the observed EMF effect on molecular level. RESULTS: An ion cyclotron resonance (ICR) effect of glutamate previously reported by the Fesenko laboratory 1998 could be confirmed. Frequency resolution of the sample currents was possible by NLDS techniques. The spectrum peaks when the conditions for ion cyclotron resonance (ICR) of glutamate are matched. Furthermore, the NLDS spectra are different under ICR- and non-ICR conditions: NLDS measurements with rising control voltages from 100-1100 mV show different courses of the intensities of the low order harmonics, which could possibly indicate "intensity windows". Furthermore, the observed magnetic field effects are pH dependent with a narrow optimum around pH 2.85. CONCLUSIONS: Data will be discussed in the context with recent published models for the interaction of weak EMF with biological matter including ICR. A medical and health relevant aspect of such sensitive effects might be given insofar, because electromagnetic conditions for it occur at many occasions in our electromagnetic all day environment, concerning ion involvement of different biochemical pathways.

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用非线性介电光谱和伏安法表征谷氨酸水溶液中的弱磁场效应。
背景:先前的报告表明,当高等动物暴露于弱静态和交变低频电磁场的特定组合时,各种生物体的代谢和酶动力学发生了改变,神经元功能和行为也发生了变化。场强和频率以及所涉及离子的性质通过一个线性方程联系起来,该方程被称为离子回旋共振公式(ICR,Liboff首先提到的缩写)。在某些条件下,氨基酸和神经递质谷氨酸的水溶液已经显示出这种效果。方法:将谷氨酸水溶液暴露于40muT的静态磁场和可变频率(2-7Hz)、振幅为50nT的正弦电磁场(EMF)的组合中。通过伏安技术结合非线性介电光谱(NLDS)研究溶液的电导率和介电性能,其允许检查大分子和分子聚集体在水中的介电性质。实验旨在阐明所观察到的EMF效应在分子水平上的生物学相关性。结果:1998年费森科实验室先前报道的谷氨酸离子回旋共振(ICR)效应可以得到证实。通过NLDS技术可以实现样本电流的频率分辨率。当谷氨酸离子回旋共振(ICR)的条件相匹配时,光谱达到峰值。此外,在ICR和非ICR条件下,NLDS光谱是不同的:控制电压从100-1100 mV上升的NLDS测量显示了低阶谐波强度的不同过程,这可能表明“强度窗口”。此外,观察到的磁场效应是pH依赖性的,在pH 2.85附近的最佳值很窄。结论:将在最近发表的弱EMF与包括ICR在内的生物物质相互作用模型的背景下讨论数据。这种敏感影响的医学和健康相关方面可能会给出,因为它的电磁条件在我们的电磁全天环境中多次发生,涉及不同生物化学途径的离子参与。
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