Electromagnetic fields regulate iron metabolism in living organisms: A review of effects and mechanism

IF 3.2 3区 生物学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY Progress in Biophysics & Molecular Biology Pub Date : 2024-03-04 DOI:10.1016/j.pbiomolbio.2024.03.001
Chenxiao Zhen , Gejing Zhang , Shenghang Wang , Jianping Wang , Yanwen Fang , Peng Shang
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Abstract

The emergence, evolution, and spread of life on Earth have all occurred in the geomagnetic field, and its extensive biological effects on living organisms have been documented. The charged characteristics of metal ions in biological fluids determine that they are affected by electromagnetic field forces, thus affecting life activities. Iron metabolism, as one of the important metal metabolic pathways, keeps iron absorption and excretion in a relatively balanced state, and this process is precisely and completely controlled. It is worth paying attention to how the iron metabolism process of living organisms is changed when exposed to electromagnetic fields. In this paper, the processes of iron absorption, storage and excretion in animals (mammals, fish, arthropods), plants and microorganisms exposed to electromagnetic field were summarized in detail as far as possible, in order to discover the regulation of iron metabolism by electromagnetic field. Studies and data on the effects of electromagnetic field exposure on iron metabolism in organisms show that exposure profiles vary widely across species and cell lines. This process involves a variety of factors, and the complexity of the results is not only related to the magnetic flux density/operating frequency/exposure time and the heterogeneity of the observed object. A systematic review of the biological regulation of iron metabolism by electromagnetic field exposure will not only contributes to a more comprehensive understanding of its biological effects and mechanism, but also is necessary to improve human awareness of the health related risks of electromagnetic field exposure.

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电磁场调节生物体内的铁代谢:效应和机制综述
地球上生命的出现、进化和传播都是在地磁场中发生的,地磁场对生物体的广泛生物影响已被记录在案。生物体液中金属离子的带电特性决定了它们会受到电磁场力的影响,从而影响生命活动。铁代谢作为重要的金属代谢途径之一,使铁的吸收和排泄处于相对平衡的状态,而且这一过程受到精确、完全的控制。暴露在电磁场中,生物体的铁代谢过程会发生怎样的变化,值得关注。本文尽可能详细地总结了暴露在电磁场中的动物(哺乳动物、鱼类、节肢动物)、植物和微生物对铁的吸收、储存和排泄过程,以期发现电磁场对铁代谢的调控作用。有关暴露于电磁场对生物体铁代谢影响的研究和数据表明,不同物种和细胞系的暴露情况差异很大。这一过程涉及多种因素,结果的复杂性不仅与磁通密度/工作频率/暴露时间有关,还与观测对象的异质性有关。系统回顾电磁场暴露对铁代谢的生物调控,不仅有助于更全面地了解其生物效应和机制,而且对于提高人类对电磁场暴露的健康相关风险的认识也很有必要。
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来源期刊
Progress in Biophysics & Molecular Biology
Progress in Biophysics & Molecular Biology 生物-生化与分子生物学
CiteScore
8.60
自引率
7.90%
发文量
85
审稿时长
85 days
期刊介绍: Progress in Biophysics & Molecular Biology is an international review journal and covers the ground between the physical and biological sciences since its launch in 1950. It indicates to the physicist the great variety of unsolved problems awaiting attention in biology and medicine. The biologist and biochemist will find that this journal presents new and stimulating ideas and novel approaches to studying and influencing structural and functional properties of the living organism. This journal will be of particular interest to biophysicists, biologists, biochemists, cell physiologists, systems biologists, and molecular biologists.
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