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零频率和振荡磁场与生物结构及生物系统的相互作用。

Interactions of zero-frequency and oscillating magnetic fields with biostructures and biosystems.

作者信息

Volpe Pietro

机构信息

Department of Biology, University of Rome Tor Vergata, Rome, Italy.

出版信息

Photochem Photobiol Sci. 2003 Jun;2(6):637-48. doi: 10.1039/b212636b.

Abstract

This review points to the investigations concerning the effects of zero-frequency (DC) and oscillating (AC) magnetic fields (MFs) on living matter, and especially those exerted by weak DC and low-frequency/low-intensity AC MFs. Starting from the analysis of observations on the action of natural magnetic storms (MSs) or periodic geomagnetic field (GMF) variations on bacteria, plants and animals, which led to an increasing interest in MFs in general, this survey pays particular attention to the background knowledge regarding the action of artificial MFs not only at the ionic, molecular or macromolecular levels, but also at the levels of subcellular regions, in vitro cycling cells, in situ functioning tissues or organs and total bodies or entire populations. The significance of some crucial findings concerning, for instance, the MF-dependence of the nuclear or cellular volumes, rate of cell proliferation vs. that of cell death, extent of necrosis vs. that of apoptosis and cell membrane fluidity, is judged by comparing the results obtained in a solenoid (SLD), where an MF can be added to a GMF, with those obtained in a magnetically shielded room (MSR), where the MFs can be partially attenuated or null. This comparative criterion is required because the differences detected in the behaviour of the experimental samples against that of the controls are rather small per se and also because the evaluation of the data often depends upon the peculiarity of the methodologies used. Therefore, only very small differences are observed in estimating the MF-dependence of the expression of a single gene or of the rates of total DNA replication, RNA transcription and protein translation. The review considers the MF-dependence of the interactions between host eukaryotic cells and infecting bacteria, while documentation of the harmful effects of the MFs on specific life processes is reported; cases of favourable action of the MFs on a number of biological functions are also evidenced. In the framework of studies on the origin and adaptation of life on Earth or in the Universe, theoretical insights paving the way to elucidate the mechanisms of the MF interactions with biostructures and biosystems are considered.

摘要

本综述指出了关于零频率(直流)和振荡(交流)磁场(MFs)对生物物质影响的研究,特别是弱直流和低频/低强度交流磁场所产生的影响。从分析自然磁暴(MSs)或周期性地磁场(GMF)变化对细菌、植物和动物作用的观察结果开始,这些观察结果总体上引发了对磁场越来越多的关注,本综述特别关注关于人工磁场作用的背景知识,不仅涉及离子、分子或大分子水平,还包括亚细胞区域、体外循环细胞、原位功能组织或器官以及整体生物体或整个群体水平。通过比较在螺线管(SLD)中获得的结果(在其中可以将磁场添加到地磁场中)与在磁屏蔽室(MSR)中获得的结果(在其中磁场可以部分衰减或消除),来判断一些关键发现的重要性,例如核体积或细胞体积对磁场的依赖性、细胞增殖速率与细胞死亡速率、坏死程度与凋亡程度以及细胞膜流动性。之所以需要这种比较标准,是因为实验样品与对照样品行为上检测到的差异本身相当小,而且还因为数据评估往往取决于所使用方法的特殊性。因此,在估计单个基因表达对磁场的依赖性或总DNA复制、RNA转录和蛋白质翻译速率时,仅观察到非常小的差异。本综述考虑了宿主真核细胞与感染细菌之间相互作用对磁场的依赖性,同时报告了磁场对特定生命过程有害影响的文献记录;也证实了磁场对一些生物学功能有有利作用的情况。在关于地球或宇宙中生命起源和适应的研究框架内,考虑了为阐明磁场与生物结构和生物系统相互作用机制铺平道路的理论见解。

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