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极高频调制电磁辐射影响下中性粒细胞钙稳态非线性改变的模型分析

Model analysis of nonlinear modification of neutrophil calcium homeostasis under the influence of modulated electromagnetic radiation of extremely high frequencies.

作者信息

Gapeyev A B, Chemeris N K

机构信息

Institute of Cell Biophysics of Russian Academy of Sciences, Pushchino, Moscow region, 142292 Russian Federation.

出版信息

J Biol Phys. 1999 Jun;25(2-3):193-209. doi: 10.1023/A:1005165926739.

Abstract

The problem of resonance effects of electromagnetic radiation (EMR) on biological objects remained unsolved till now. Previously we demonstrated that low-intensity amplitude-modulated EMR of extremely high frequencies (EHF) modified the activity of mouse neutrophils in the synergistic reaction of calcium ionophore A23187 and phorbol ester PMA. The EHF EMR influence on the neutrophils was significant at the carrier frequencies of radiation within a narrow range of 41.8-42.05 GHz and at the modulation frequency of 1 Hz. The purpose of the work was the analysis of frequency-dependent modification of intracellular free calcium concentration (Ca(2+)) by modulated EHF EMR on the basis of a special model for Ca(2+) oscillations in the neutrophils. The calcium channels of plasma membrane were chosen as the action target of external modulation in the model. The computer simulation demonstrated the rise in Ca(2+) at the influence of the external field with a threshold dependence on the modulation amplitude. The effect depended heavily on a sequence of delivery of the chemical and electromagnetic stimuli. The narrow-band rise in Ca(2+) had a phase-frequency dependence. With the modulation amplitudes exceeding the threshold value, the rise in Ca(2+) of more than 50% of the initial level was observed at the frequency of about 1 Hz and in the phase range of 0.3-2.5 radians. The results of the model analysis are in good correspondence with the experimental data obtained before, namely, with the resonance modification of the neutrophil activity at the modulation frequency of 1 Hz and with the presence of the effect only at high concentrations of calcium ionophore.

摘要

电磁辐射(EMR)对生物物体的共振效应问题至今仍未解决。此前我们证明,极高频(EHF)的低强度调幅EMR在钙离子载体A23187和佛波酯PMA的协同反应中改变了小鼠中性粒细胞的活性。在41.8 - 42.05 GHz的窄频率范围内的辐射载波频率以及1 Hz的调制频率下,EHF EMR对中性粒细胞的影响显著。这项工作的目的是基于中性粒细胞中细胞内游离钙浓度(Ca(2 +))振荡的特殊模型,分析调制EHF EMR对Ca(2 +)的频率依赖性改变。质膜的钙通道被选为模型中外部调制的作用靶点。计算机模拟表明,外部场的影响会使Ca(2 +)升高,且对调制幅度具有阈值依赖性。该效应在很大程度上取决于化学和电磁刺激的施加顺序。Ca(2 +)的窄带升高具有相频依赖性。当调制幅度超过阈值时,在约1 Hz的频率和0.3 - 2.5弧度的相位范围内,观察到Ca(2 +)升高超过初始水平的50%。模型分析结果与之前获得的实验数据高度吻合,即在1 Hz调制频率下中性粒细胞活性的共振改变以及仅在高浓度钙离子载体存在时才出现该效应。

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