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在 GTEM 室内用 X 波段微波对人星形胶质细胞进行暴露的原始孵育箱设置的验证。

Validation of an original incubator set-up for the exposure of human astrocyte cells to X-band microwaves in a GTEM-chamber.

机构信息

Magnetobiology Laboratory, Department of Human Anatomy and Histology, School of Medicine, University of Zaragoza, Zaragoza, Spain.

出版信息

Histol Histopathol. 2011 Sep;26(9):1187-96. doi: 10.14670/HH-26.1187.

Abstract

A current concern about the biological effects of electromagnetic fields (EMF) is increasing with the wide spread use of X-band microwaves (MW, 8-10 GHz range). Gigahertz transverse electromagnetic (GTEM) field flat transmission lines are currently being used for experimental exposure of biological samples to high frequency EMF. Experiments carried out on human cells in culture require optimal growing temperature conditions, i.e. 37 °C, 5% CO2 in a humidified atmosphere. The aim of our work has been: i) to built up an original incubator set-up, the so called GTEM-incubator, for exposure of human cells in culture to MW inside a GTEM-chamber, under optimal growing physical conditions; ii) to make the validation of the GTEM-incubator by growing cell samples inside the non-energized GTEM-chamber (test sample) comparing the results with the ones obtained from cell samples grown inside a standard incubator (control samples). The features for comparison were: cell morphology, expression and distribution of cytoskeleton proteins, genotoxicity, viability and cell cycle progression. Any variation in any of the studied parameters would allow for detecting any possible failure or misconception in our GTEM-incubator working test. The results obtained in control and test incubators showed non-significant differences in the development of both cell populations for any of the studied parameters. Thereby our GTEM-incubator is considered valid for our purposes of human cell exposures to X-band MW.

摘要

目前人们越来越关注电磁场(EMF)的生物效应,而 X 波段微波(MW,8-10GHz 频段)的广泛应用则加剧了这一关注。千兆赫横电磁(GTEM)场传输线目前正被用于对生物样本进行高频 EMF 的实验暴露。在培养物中进行的人体细胞实验需要优化的生长温度条件,即 37°C,5%CO2 在加湿的大气中。我们的工作目标是:i)建立一个原始的孵育器装置,即所谓的 GTEM-孵育器,用于在 GTEM 腔室内对培养的人体细胞进行 MW 暴露,在最佳的生长物理条件下;ii)通过在非激励的 GTEM 腔室内(测试样本)生长细胞样本并将结果与在标准孵育器(对照样本)中生长的细胞样本进行比较,来验证 GTEM-孵育器。比较的特征包括:细胞形态、细胞骨架蛋白的表达和分布、遗传毒性、活力和细胞周期进程。任何研究参数的变化都可以检测到我们的 GTEM-孵育器工作测试中可能存在的任何故障或误解。在对照和测试孵育器中获得的结果表明,对于任何研究的参数,两种细胞群体的发育都没有显著差异。因此,我们的 GTEM-孵育器被认为适用于我们对人体细胞进行 X 波段 MW 暴露的目的。

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