Literature DB >> 19650078

1950 MHz IMT-2000 field does not activate microglial cells in vitro.

Hideki Hirose1, Atsushi Sasaki, Nana Ishii, Masaru Sekijima, Takahiro Iyama, Toshio Nojima, Yoshikazu Ugawa.   

Abstract

Given the widespread use of the cellular phone today, investigation of potential biological effects of radiofrequency (RF) fields has become increasingly important. In particular, much research has been conducted on RF effects on brain function. To examine any biological effects on the central nervous system (CNS) induced by 1950 MHz modulation signals, which are controlled by the International Mobile Telecommunication-2000 (IMT-2000) cellular system, we investigated the effect of RF fields on microglial cells in the brain. We assessed functional changes in microglial cells by examining changes in immune reaction-related molecule expression and cytokine production after exposure to a 1950 MHz Wideband Code Division Multiple Access (W-CDMA) RF field, at specific absorption rates (SARs) of 0.2, 0.8, and 2.0 W/kg. Primary microglial cell cultures prepared from neonatal rats were subjected to an RF or sham field for 2 h. Assay samples obtained 24 and 72 h after exposure were processed in a blind manner. Results showed that the percentage of cells positive for major histocompatibility complex (MHC) class II, which is the most common marker for activated microglial cells, was similar between cells exposed to W-CDMA radiation and sham-exposed controls. No statistically significant differences were observed between any of the RF field exposure groups and the sham-exposed controls in percentage of MHC class II positive cells. Further, no remarkable differences in the production of tumor necrosis factor-alpha (TNF-alpha), interleukin-1beta (IL-1beta), and interleukin-6 (IL-6) were observed between the test groups exposed to W-CDMA signal and the sham-exposed negative controls. These findings suggest that exposure to RF fields up to 2 W/kg does not activate microglial cells in vitro. (c) 2009 Wiley-Liss, Inc.

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Year:  2010        PMID: 19650078     DOI: 10.1002/bem.20532

Source DB:  PubMed          Journal:  Bioelectromagnetics        ISSN: 0197-8462            Impact factor:   2.010


  7 in total

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Authors:  Aurélie Watilliaux; Jean-Marc Edeline; Philippe Lévêque; Thérèse M Jay; Michel Mallat
Journal:  Neurotox Res       Date:  2010-11-02       Impact factor: 3.911

2.  Acute Neuroinflammation Promotes Cell Responses to 1800 MHz GSM Electromagnetic Fields in the Rat Cerebral Cortex.

Authors:  Julie Lameth; Annie Gervais; Catherine Colin; Philippe Lévêque; Thérèse M Jay; Jean-Marc Edeline; Michel Mallat
Journal:  Neurotox Res       Date:  2017-06-03       Impact factor: 3.911

3.  Exposure to 1950-MHz TD-SCDMA electromagnetic fields affects the apoptosis of astrocytes via caspase-3-dependent pathway.

Authors:  Yu-xiao Liu; Jun-li Tai; Guo-qing Li; Zhi-wen Zhang; Jing-hui Xue; Hong-sheng Liu; Heng Zhu; Ji-de Cheng; Yuan-Ling Liu; An-ming Li; Yi Zhang
Journal:  PLoS One       Date:  2012-08-01       Impact factor: 3.240

4.  The role of the JAK2-STAT3 pathway in pro-inflammatory responses of EMF-stimulated N9 microglial cells.

Authors:  Xuesen Yang; Genlin He; Yutong Hao; Chunhai Chen; Maoquan Li; Yuan Wang; Guangbin Zhang; Zhengping Yu
Journal:  J Neuroinflammation       Date:  2010-09-09       Impact factor: 8.322

5.  Differential pro-inflammatory responses of astrocytes and microglia involve STAT3 activation in response to 1800 MHz radiofrequency fields.

Authors:  Yonghui Lu; Mindi He; Yang Zhang; Shangcheng Xu; Lei Zhang; Yue He; Chunhai Chen; Chuan Liu; Huifeng Pi; Zhengping Yu; Zhou Zhou
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6.  Exposure to 3G mobile phone signals does not affect the biological features of brain tumor cells.

Authors:  Yu-xiao Liu; Guo-qing Li; Xiang-ping Fu; Jing-hui Xue; Shou-ping Ji; Zhi-wen Zhang; Yi Zhang; An-ming Li
Journal:  BMC Public Health       Date:  2015-08-08       Impact factor: 3.295

7.  Effects of a Single Head Exposure to GSM-1800 MHz Signals on the Transcriptome Profile in the Rat Cerebral Cortex: Enhanced Gene Responses Under Proinflammatory Conditions.

Authors:  Julie Lameth; Delia Arnaud-Cormos; Philippe Lévêque; Séverine Boillée; Jean-Marc Edeline; Michel Mallat
Journal:  Neurotox Res       Date:  2020-03-21       Impact factor: 3.911

  7 in total

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