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首页> 外文期刊>The journal of microbiology >The response of human bacteria to static magnetic field and radiofrequency electromagnetic field
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The response of human bacteria to static magnetic field and radiofrequency electromagnetic field

机译:人体细菌对静态磁场和射频电磁场的响应

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摘要

Cell phones and electronic appliances and devices are inseparable from most people in modern society and the electromagnetic field (EMF) from the devices is a potential health threat. Although the direct health effect of a cell phone and its radiofrequency (RF) EMF to human is still elusive, the effect to unicellular organisms is rather apparent. Human microbiota, including skin microbiota, has been linked to a very significant role in the health of a host human body. It is important to understand the response of human skin microbiota to the RF-EMF from cell phones and personal electronic devices, since this may be one of the potential mechanisms of a human health threat brought about by the disruption of the intimate and balanced host-microbiota relationship. Here, we investigated the response of both laboratory culture strains and isolates of skin bacteria under static magnetic field (SMF) and RF-EMF. The growth patterns of laboratory cultures of Escherichia coli, Pseudomonas aeruginosa, and Staphylococcus epidermidis under SMF were variable per different species. The bacterial isolates of skin microbiota from 4 subjects with different cell phone usage history also showed inconsistent growth responses. These findings led us to hypothesize that cell phone level RF-EMF disrupts human skin microbiota. Thus, the results from the current study lay ground for more comprehensive research on the effect of RF-EMF on human health through the human-microbiota relationship.
机译:手机和电子设备和设备与现代社会中的大多数人密不可分,并且来自设备的电磁场(EMF)是潜在的健康威胁。虽然手机的直接健康效果及其射频(RF)EMF对人类仍然难以捉摸,但对单细胞生物的影响是显而易见的。人类微生物群,包括皮肤微生物群,与宿主人体健康中的具有非常重要的作用有关。重要的是要理解人体皮肤微生物群到来自手机和个人电子设备的RF-EMF的响应,因为这可能是人类健康威胁的潜在机制之一,由私密和平衡的主持人的破坏引起Microbiota关系。在这里,我们研究了静态磁场(SMF)和RF-EMF下的实验室培养菌株和皮肤细菌分离株的反应。在SMF下的大肠杆菌,假单胞菌铜绿假单胞菌,假单胞菌铜绿假单胞菌和葡萄球菌表皮的生长模式是各种不同物种的可变。来自4个受试者的皮肤微生物的细菌分离株具有不同的细胞手机使用历史,也表现出不一致的生长反应。这些发现导致我们假设手机级RF-EMF扰乱人体皮肤微生物群。因此,目前研究结果为通过人微生物群系的RF-EMF对人类健康影响的更全面的研究。

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