首页> 外文期刊>Toxicology Letters: An International Journal Providing a Forum for Original and Pertinent Contributions in Toxicology Research >Hsp70 expression and free radical release after exposure to non-thermal radio-frequency electromagnetic fields and ultrafine particles in human Mono Mac 6 cells.
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Hsp70 expression and free radical release after exposure to non-thermal radio-frequency electromagnetic fields and ultrafine particles in human Mono Mac 6 cells.

机译:在人类Mono Mac 6细胞中暴露于非热射频电磁场和超细颗粒后,Hsp70表达和自由基释放。

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摘要

The contemporary urban environment has become increasingly complex in its composition, leading to discussions regarding possible novel health effects. Two factors that recently have received considerable attention are ultrafine particles (UFP; <0.1 microm) produced by combustion processes and emissions from wireless communication devices like mobile phones that emit in the radio-frequency (RF) part of the spectrum. Several studies have shown biological effects of both these exposures in various cell systems. Here we investigate if exposure to UFP (12-14 nm, 100 microg/ml) and RF-electromagnetic fields (EMF; 2 W/kg specific absorption rate (SAR); continuous wave (CW) or modulated (217Hz or GSM-nonDTX)), alone or in combination influences levels of the superoxide radical anion or the stress protein heat-shock protein (Hsp70) in the human monocyte cell line Mono Mac 6. Heat treatment (42-43 degrees C, 1h) was used as positive control for both stress reaction and for heat development in the RF exposure setup. Our results clearly show that Mono Mac 6 cells are capable to internalise UFP, and that this phagocytic activity is connected to an increased release of free radicals. This increase (40-45% above negative control) is stronger than the effect of heat treatment. On the other hand, none of the employed RF exposures showed any effects on free radical levels. Co-exposure of RF and UFP did not potentiate the UFP effect either. Our investigations showed a significantly increased Hsp70 expression level by heat treatment in a time-dependent manner, whereas UFP, RF, or UFP+RF were without any effect. Therefore, we conclude that in the investigated Mono Mac 6 cells, RF exposure alone or in combination with UFP cannot influence stress-related responses.
机译:当代城市环境的组成变得越来越复杂,导致人们对可能的新型健康影响进行了讨论。最近引起人们极大关注的两个因素是燃烧过程产生的超细颗粒(UFP; <0.1微米),以及来自无线通信设备(例如移动电话)的发射,它们在频谱的射频(RF)部分中发射。多项研究表明,这两种暴露在各种细胞系统中均具有生物学效应。在这里我们调查是否暴露于UFP(12-14 nm,100 microg / ml)和RF电磁场(EMF; 2 W / kg比吸收率(SAR);连续波(CW)或调制(217Hz或GSM-nonDTX) ))单独或组合影响人单核细胞系Mono Mac 6中超氧自由基阴离子或应激蛋白热休克蛋白(Hsp70)的水平。热处理(42-43°C,1h)被用作阳性在射频暴露设置中既控制应力反应又控制热量产生。我们的结果清楚地表明,Mono Mac 6细胞能够内化UFP,并且这种吞噬活性与自由基释放的增加有关。这种增加(高于阴性对照40-45%)比热处理效果更强。另一方面,所采用的RF暴露均未显示出对自由基水平的任何影响。共同暴露RF和UFP也不增强UFP效果。我们的研究表明,热处理以时间依赖性方式显着增加了Hsp70表达水平,而UFP,RF或UFP + RF没有任何作用。因此,我们得出结论,在所研究的Mono Mac 6细胞中,单独的RF暴露或与UFP组合的RF暴露均不会影响与压力相关的反应。

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