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IF 1.9 3区 生物学 Q3 BIOLOGY Pub Date : 2023-04-24 DOI: 10.1002/bem.22448
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引用次数: 0
Evaluation of the Effects of Power-Frequency Magnetic Field Exposure on B-Cell Differentiation From Human Hematopoietic Stem/Progenitor Cells 工频磁场暴露对人造血干细胞/祖细胞b细胞分化影响的评价
IF 1.9 3区 生物学 Q3 BIOLOGY Pub Date : 2023-04-18 DOI: 10.1002/bem.22447
Masayuki Takahashi, Naoko Furuya
The causal relationship between exposure to power‐frequency magnetic fields (MFs) and childhood leukemia has long been controversial. The most common type of childhood leukemia is acute B‐lymphoblastic leukemia caused by abnormal proliferation of B cells in the early differentiation process. Here, we focused on B‐cell early differentiation and aimed to evaluate the effects of exposing cells to power‐frequency MF. First, we optimized an in vitro differentiation protocol of human hematopoietic stem/progenitor cells (HSPCs) to B‐cell lineages. Following validation of the responsiveness of the protocol to additional stimulations and the uniformity of the experimental conditions, human HSPCs were continuously exposed to 300 mT of 50 Hz MF for 35 days of the differentiation process. These experiments were performed in a blinded manner. The percentages of myeloid or lymphoid cells and their degree of differentiation from pro‐B to immature‐B cells in the MF‐exposed group showed no significant changes compared with those in the control group. Furthermore, the expression levels of recombination‐activating gene (RAG)1 and RAG2 in the B cells were also similar to those in the control group. These results indicate that exposure to 50 Hz MF at 300 mT does not affect the human B‐cell early differentiation from HSPCs. © 2023 The Authors. Bioelectromagnetics published by Wiley Periodicals LLC on behalf of Bioelectromagnetics Society.
长期以来,暴露于工频磁场(MFs)与儿童白血病之间的因果关系一直存在争议。儿童白血病最常见的类型是急性B淋巴细胞白血病,由B细胞在早期分化过程中异常增殖引起。在这里,我们专注于b细胞的早期分化,旨在评估将细胞暴露于工频MF的影响。首先,我们优化了人造血干细胞/祖细胞(HSPCs)向b细胞谱系的体外分化方案。在验证方案对额外刺激的响应性和实验条件的均匀性之后,人类HSPCs连续暴露于300 mT的50 Hz MF中35天的分化过程。这些实验是以盲法进行的。与对照组相比,暴露组骨髓细胞和淋巴细胞的百分比以及从前b细胞向未成熟b细胞分化的程度无明显变化。此外,重组激活基因(RAG)1和RAG2在B细胞中的表达水平也与对照组相似。这些结果表明,暴露于300 mT的50 Hz MF不影响人b细胞从HSPCs早期分化。©2023作者。《生物电磁学》由Wiley期刊有限责任公司代表生物电磁学学会出版。
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引用次数: 0
The Effects of Uniform and Nonuniform Magnetic Fields in Plant Growth: A Meta-Analysis Approach 均匀和非均匀磁场对植物生长的影响:一种荟萃分析方法
IF 1.9 3区 生物学 Q3 BIOLOGY Pub Date : 2023-04-18 DOI: 10.1002/bem.22445
Francisco Tapia-Belmonte, Andrés Concha, María J. Poupin

Magnetic field (MF) effects have been reported in plants' growth, seed germination, gene expression, and water consumption. Accordingly, magnetic treatments have been proposed as a sustainable alternative to improve yields. Nevertheless, a comprehensive quantitative assessment is needed to understand whether their effects are general, species-specific, or dependent on the experimental setting. We conducted a multilevel meta-analysis of 45 articles that studied 29 different plant species. A positive and neutral effect of a nonuniform MF was found on fresh weight and germination rate, respectively. A significant association was found between a uniform MF and germination. These results suggest that MFs improve plant growth. However, the effects are highly dependent on the experimental setting. This opens exciting questions about the biophysical mechanisms underlying the perception and transduction of this environmental cue and about the possible translation to agricultural practices. © 2023 Bioelectromagnetics Society.

磁场对植物生长、种子萌发、基因表达和水分消耗的影响已被报道。因此,磁处理被认为是一种可持续的提高产量的替代方法。然而,需要进行全面的定量评估,以了解它们的影响是普遍的,是物种特异性的,还是取决于实验环境。我们对45篇研究29种不同植物物种的文章进行了多层次的荟萃分析。不均匀MF对鲜重和发芽率的影响分别为正效应和中性效应。在均匀的MF和萌发之间发现了显著的关联。这些结果表明,MFs促进了植物的生长。然而,效果高度依赖于实验环境。这开启了关于这种环境线索感知和转导的生物物理机制以及可能转化为农业实践的令人兴奋的问题。©2023生物电磁学学会。
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引用次数: 1
Evaluation of Exposure to Radiofrequency Electromagnetic Fields from Smart Utility Meters operating at 868 MHz 868兆赫的智能电表对射频电磁场的暴露评估
IF 1.9 3区 生物学 Q3 BIOLOGY Pub Date : 2023-03-31 DOI: 10.1002/bem.22440
Darren Addison, Carolina Calderon, Azadeh Peyman

Power density and duty factor values were measured around smart utility meters operating at 868 MHz under laboratory-controlled conditions. The maximum 6-min averaged exposure recorded was 0.1 mWm−2, which is less than 0.0024% of the corresponding 1998 ICNIRP general public reference level. Duty factors measured were less than 2.8%. This study found that the exposure contribution from Zigbee smart meter devices operating at 868 MHz is generally lower than, if not similar to, those operating at 2.4 GHz. © 2023 Crown copyright. Bioelectromagnetics published by Wiley Periodicals LLC on behalf of Bioelectromagnetics Society.

在实验室控制条件下,在868 MHz工作频率的智能电能表周围测量功率密度和占空因数值。记录的最大6分钟平均暴露量为0.1 mWm−2,低于1998年ICNIRP一般公众参考水平的0.0024%。测量的占空系数小于2.8%。本研究发现,工作在868 MHz的Zigbee智能电表设备的暴露贡献通常低于工作在2.4 GHz的设备,如果不相似的话。©2023皇冠版权所有。《生物电磁学》由Wiley期刊有限责任公司代表生物电磁学学会出版。
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引用次数: 0
Analysis of global DNA methylation changes in human keratinocytes immediately following exposure to a 900 MHz radiofrequency field 暴露于900 MHz射频场后立即分析人角质形成细胞的整体DNA甲基化变化
IF 1.9 3区 生物学 Q3 BIOLOGY Pub Date : 2023-03-31 DOI: 10.1002/bem.22439
Jody C. Cantu, Joseph W. Butterworth, Xomalin G. Peralta, Jason A. Payne, Ibtissam Echchgadda

The increasing use of nonionizing radiofrequency electromagnetic fields (RF-EMFs) in a wide range of technologies necessitates studies to further understanding of biological effects from exposures to such forms of electromagnetic fields. While previous studies have described mechanisms for cellular changes occurring following exposure to low-intensity RF-EMFs, the role of molecular epigenetics has not been thoroughly investigated. Specifically unresolved is the effect of RF-EMFs on deoxyribonucleic acid (DNA) methylation, which is a powerful epigenetic process, used by cells to regulate gene expression. DNA methylation is dynamic and can be rapidly triggered in response to external stimuli such as exposure to RF-EMFs. In the present study, we performed a global analysis of DNA methylation patterns in human keratinocytes exposed to 900 MHz RF-EMFs for 1 h at a low dose rate (estimated mean specific absorption rate (SAR) < 10 mW/kg). We used a custom system to allow stable exposure of cell cultures to RF-EMFs under biologically relevant conditions (37 °C, 5% CO2, 95% humidity). We performed whole genome bisulfite sequencing directly following RF-EMF exposure to examine the immediate changes in DNA methylation patterns and identify early differentially methylated genes in RF-EMF-exposed keratinocytes. By correlating global gene expression to whole genome bisulfite sequencing, we identified six common targets that were both differentially methylated and differentially expressed in response to RF-EMF exposure. The results highlight a potential epigenetic role in the cellular response to RF-EMFs. Particularly, the six identified targets may potentially be developed as epigenetic biomarkers for immediate responses to RF-EMF exposure. Bioelectromagnetics. 1–13, © 2023 Bioelectromagnetics Society. This article has been contributed to by U.S. Government employees and their work is in the public domain in the USA.

在广泛的技术中越来越多地使用非电离射频电磁场(RF-EMFs),需要进行研究,以进一步了解暴露于这种形式的电磁场的生物效应。虽然以前的研究已经描述了暴露于低强度rf - emf后发生的细胞变化的机制,但分子表观遗传学的作用尚未得到彻底研究。具体来说,尚未解决的是射频电磁场对脱氧核糖核酸(DNA)甲基化的影响,这是一个强大的表观遗传过程,被细胞用来调节基因表达。DNA甲基化是动态的,可以在外部刺激(如暴露于rf - emf)下迅速触发。在本研究中,我们对暴露于900 MHz rf - emf低剂量率(估计平均比吸收率(SAR) & 10 mW/kg)下1小时的人角质形成细胞的DNA甲基化模式进行了全面分析。我们使用定制系统,允许细胞培养物在生物学相关条件下(37°C, 5% CO2, 95%湿度)稳定暴露于rf - emf。我们在RF-EMF暴露后直接进行了全基因组亚硫酸盐测序,以检查DNA甲基化模式的直接变化,并确定RF-EMF暴露的角质形成细胞中早期差异甲基化基因。通过将全球基因表达与全基因组亚硫酸盐测序相关联,我们确定了六个共同的靶标,这些靶标在RF-EMF暴露下存在差异甲基化和差异表达。结果强调了细胞对射频电磁场反应的潜在表观遗传作用。特别是,六个确定的靶标可能被开发为对RF-EMF暴露的即时反应的表观遗传生物标志物。生物电磁学。1-13,©2023生物电磁学学会。这篇文章是由美国政府雇员贡献的,他们的工作在美国属于公有领域。
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引用次数: 0
Issue Information - Page 问题信息-页面
IF 1.9 3区 生物学 Q3 BIOLOGY Pub Date : 2023-03-27 DOI: 10.1002/bem.22441
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引用次数: 0
Effects of neodymium magneto-priming on seed germination and salinity tolerance in tomato 磁化钕对番茄种子萌发及耐盐性的影响
IF 1.9 3区 生物学 Q3 BIOLOGY Pub Date : 2023-02-17 DOI: 10.1002/bem.22438
Mohammad K. Abhary, Abdullah Akhkha

Earth's biosphere is surrounded by magnetic fields that affect all living organisms. A plant's response to magnetic fields is displayed in terms of its seed's vigor, growth, and yield. Examining seed germination in such magnetic fields is the first step in the investigation of how magnetic fields might be used to enhance plant growth and maximize crop performance. In this study, salinity-sensitive Super Strain-B tomato seeds were primed with the northern and southern poles of neodymium magnets of 150, 200, and 250 mT. The magneto-primed seeds showed a significant increase in germination rate and speed, where the orientation of the magnet was identified as being crucial for germination rate and the orientation of seeds towards the magnet was shown to affect the germination speed. The primed plants exhibited enhanced growth characteristics, including longer shoots and roots, larger leaf area, more root hairs, higher water content, and more tolerance to salinity levels, up to 200 mM NaCl. All magneto-primed plants showed a significant decrease in chlorophyll content, continuous chlorophyll fluorescence yield (Ft), and quantum yield (QY). The salinity treatments decreased all chlorophyll parameters in control plants, significantly, but did not lower such parameters in magneto-primed tomatoes. The results of this study illustrate the positive effects of neodymium magnet on the growth and development of tomato plants in terms of their germination, growth, and salinity tolerance, and negatively affected the chlorophyll content in tomato leaves. © 2023 Bioelectromagnetics Society.

地球生物圈被磁场包围,磁场影响着所有生物。植物对磁场的反应表现在种子的活力、生长和产量上。研究如何利用磁场促进植物生长和最大限度地提高作物性能,在这样的磁场中检测种子发芽是研究的第一步。本研究用150、200和250 mT的钕磁体对盐敏感的超级b系番茄种子进行了南北极的引物处理。磁化种子的萌发率和速度显著提高,其中磁铁的方向对萌发率至关重要,而种子对磁铁的方向影响萌发速度。处理后的植株表现出较强的生长特性,包括茎和根较长,叶面积较大,根毛较多,含水量较高,对盐分的耐受性更强,最高可达200 mM NaCl。所有磁化植株的叶绿素含量、连续叶绿素荧光产量(Ft)和量子产率(QY)均显著降低。盐度处理显著降低了对照植株的所有叶绿素参数,但磁化番茄的叶绿素参数没有降低。本研究结果表明,钕铁硼对番茄植株的萌发、生长和耐盐性有积极影响,对番茄叶片叶绿素含量有负面影响。©2023生物电磁学学会。
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引用次数: 2
The Importance of Subcellular Structures to the Modeling of Biological Cells in the Context of Computational Bioelectromagnetics Simulations 亚细胞结构对计算生物电磁学模拟背景下生物细胞建模的重要性
IF 1.9 3区 生物学 Q3 BIOLOGY Pub Date : 2023-02-16 DOI: 10.1002/bem.22436
Kevin Jerbic, Jan T. Svejda, Benedikt Sievert, Andreas Rennings, Jürg Fröhlich, Daniel Erni

Numerical investigation of the interaction of electromagnetic fields with eukaryotic cells requires specifically adapted computer models. Virtual microdosimetry, used to investigate exposure, requires volumetric cell models, which are numerically challenging. For this reason, a method is presented here to determine the current and volumetric loss densities occurring in single cells and their distinct compartments in a spatially accurate manner as a first step toward multicellular models within the microstructure of tissue layers. To achieve this, 3D models of the electromagnetic exposure of generic eukaryotic cells of different shape (i.e. spherical and ellipsoidal) and internal complexity (i.e. different organelles) are performed in a virtual, finite element method-based capacitor experiment in the frequency range from 10 Hz to 100 GHz. In this context, the spectral response of the current and loss distribution within the cell compartments is investigated and any effects that occur are attributed either to the dispersive material properties of these compartments or to the geometric characteristics of the cell model investigated in each case. In these investigations, the cell is represented as an anisotropic body with an internal distributed membrane system of low conductivity that mimics the endoplasmic reticulum in a simplified manner. This will be used to determine which details of the cell interior need to be modeled, how the electric field and the current density will be distributed in this region, and where the electromagnetic energy is absorbed in the microstructure regarding electromagnetic microdosimetry. Results show that for 5 G frequencies, membranes make a significant contribution to the absorption losses. © 2023 The Authors. Bioelectromagnetics published by Wiley Periodicals LLC on behalf of Bioelectromagnetics Society.

电磁场与真核细胞相互作用的数值研究需要专门适应的计算机模型。用于研究暴露的虚拟微剂量测量需要体积细胞模型,这在数值上具有挑战性。因此,本文提出了一种方法,以空间精确的方式确定单细胞及其不同隔间中发生的电流和体积损失密度,作为在组织层的微观结构内建立多细胞模型的第一步。为了实现这一点,在频率范围为10 Hz至100 GHz。在这种情况下,研究了电池隔室内电流和损耗分布的光谱响应,发生的任何影响都归因于这些隔室的色散材料特性或在每种情况下研究的电池模型的几何特性。在这些研究中,细胞被表示为具有低电导率的内部分布膜系统的各向异性体,该系统以简化的方式模拟内质网。这将用于确定需要对电池内部的哪些细节进行建模,电场和电流密度将如何在该区域中分布,以及关于电磁微剂量测量,电磁能量在微结构中的吸收位置。结果显示,对于5 G频率下,膜对吸收损失有很大贡献。©2023作者。Wiley Periodicals LLC代表生物电磁学协会出版的生物电磁学。
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引用次数: 0
Radiofrequency Exposure Levels in Greece 希腊的射频暴露水平
IF 1.9 3区 生物学 Q3 BIOLOGY Pub Date : 2023-02-14 DOI: 10.1002/bem.22434
Charilaos Tyrakis, Kiki Theodorou, Yiannis Kiouvrekis, Aris Alexias, Constantin Kappas

Medical Physics Department (Medical School, University of Thessaly) participated in a Greek National EMF research program (EDBM34) with the scope to measure and evaluate radiofrequency (RF) exposure (27–3000 MHz) in areas of sensitive land use. A thousand (1000) measurements were carried out at two “metropolitan locations” (Athens and Thessaloniki: 624 points) and several rest urban/rural locations (376 points). SRM 3006 spectrum analyzer manufactured by Narda Safety Test Solutions was used. The broadband mean electric field in metropolitan areas was 0.41 V/m, while in the rest of Greece was 0.36 V/m. In metropolitan areas, the predominant RF source was the TV and Radio FM signals (36.2% mean contribution to the total RF exposure level). In the rest areas, the predominant source was the systems of the meteorological and military/defensive service (31.1%). The mobile sector contributed 14.9% in metropolitan areas versus 12.2% in the rest of Greece. The predominant mobile source was 900 MHz in both cases (4.5% in metropolitan areas vs. 3.3% in the rest of Greece). The total exposure from all RF sources complied with the International Commission on Non-Ionizing Radiation Protection (ICNIRP) 2020 safety guidelines [ICNIRP, 2020]. The maximum exposure level was 0.129% of the limit for the metropolitan areas vs. 0.110% for the rest of Greece. Nonremarkable differences between metropolitan areas' exposure and the rest of Greece. In most cases, new 5 G antennas will be added to the existing base stations. Thus, the total exposure may be increased, leading to higher safety distances. © 2023 Bioelectromagnetics Society.

医学物理系(色萨利大学医学院)参加了希腊国家电磁场研究方案(EDBM34),其范围是测量和评估敏感土地使用地区的射频(27-3000兆赫)暴露。在两个“大都市”(雅典和塞萨洛尼基:624点)和其他几个城市/农村地区(376点)进行了1000次测量。使用Narda Safety Test Solutions公司生产的SRM 3006频谱分析仪。大都市地区的宽带平均电场为0.41 V/m,而希腊其他地区为0.36 V/m。在大城市地区,主要的射频源是电视和广播调频信号(平均占总射频暴露水平的36.2%)。其余地区的主要来源为气象和军事/防御服务系统(31.1%)。在希腊的大都市地区,移动部门占14.9%,而希腊其他地区占12.2%。在这两种情况下,主要的移动源都是900 MHz(在大都市地区为4.5%,在希腊其他地区为3.3%)。所有射频源的总暴露量符合国际非电离辐射防护委员会(ICNIRP) 2020年安全指南[ICNIRP, 2020]。大都市地区的最大暴露水平为限值的0.129%,而希腊其他地区为0.110%。大都市地区与希腊其他地区的风险敞口差异不大。在大多数情况下,新的5g天线将被添加到现有的基站。因此,总暴露量可能会增加,从而导致更高的安全距离。©2023生物电磁学学会。
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引用次数: 0
A Review of Aspects of Synaptic Plasticity in Hippocampus via mT Extremely Low-Frequency Magnetic Fields 极低频磁场对海马突触可塑性的研究进展
IF 1.9 3区 生物学 Q3 BIOLOGY Pub Date : 2023-02-14 DOI: 10.1002/bem.22437
Lei Dong, Pei Xia, Lei Tian, Chunxiao Tian, Wenjun Zhao, Ling Zhao, Jiakang Duan, Yuhan Zhao, Yu Zheng

The subthreshold magnetic modulation technique stimulates cells with mT extremely low-frequency magnetic fields (ELF-MFs), which are insufficient to induce neuronal action potentials. Although they cannot directly induce resting neurons to discharge, mT magnetic stimulation can regulate the excitability of the nervous system, which regulates learning and memory by some unknown mechanisms. Herein, we describe the regulation of mT ELF-MFs with different parameters on synaptic plasticity in hippocampal neurons. Additionally, we summarize the latest research on the possible mechanism of the effect of ELF-MFs on synaptic plasticity. Some studies have shown that ELF-MFs are able to inhibit long-term potentiation (LTP) by increasing concentration of intracellular Ca2+ concentration ([Ca2+]i), as well as concentration of reactive oxygen species. The research in this paper has significance for the comprehensive understanding of relevant neurological mechanisms of learning and memory by mT ELF-MFs stimulation. However, more high-quality research is necessary to determine the regulatory mechanism of mT ELF-MFs on synaptic plasticity in order to optimize this technique as a treatment for neurological diseases. © 2023 Bioelectromagnetics Society.

阈下磁调制技术用不足以诱导神经元动作电位的极低频磁场(ELF-MFs)刺激细胞。虽然它们不能直接诱导静息神经元放电,但mT磁刺激可以调节神经系统的兴奋性,通过一些未知的机制调节学习和记忆。本文描述了不同参数的mT - ELF-MFs对海马神经元突触可塑性的调节作用。此外,本文还对ELF-MFs影响突触可塑性的可能机制进行了综述。一些研究表明,elf - mf能够通过增加细胞内Ca2+浓度([Ca2+]i)和活性氧浓度来抑制长期增强(LTP)。本文的研究对于全面认识mT - ELF-MFs刺激学习记忆的相关神经机制具有重要意义。然而,mT - ELF-MFs对突触可塑性的调控机制尚需更多高质量的研究,以优化该技术在神经系统疾病治疗中的应用。©2023生物电磁学学会。
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引用次数: 2
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