研究状況の概観

Experimental studies on mobile communications

1694研究
  1. 736研究
  2. 560研究
  3. 510研究
  4. 220研究
  5. 204研究
  6. 118研究

DNA, proteins, and oxidative stress

560研究
  1. 305研究
  2. 198研究
  3. 118研究
  4. 42研究

遺伝子/タンパク質の発現(HSP) 42研究

Authors Year Exposed system Endpoints Frequency range SAR Exposure duration Parameters
Ding GR et al. 2009 無傷細胞/細胞培養, A172 (human glioblastoma cells), MO54 cells (derived from a human malignant glioma) and T98 cell line expression of heat shock proteins 1,950 MHz 1–10 W/kg continuous for 1 h 携帯電話, 移動体通信システム, RF電磁界, CW 連続波
Cao Y et al. 2009 無傷細胞/細胞培養, SHG44 cells (human glioma cells) oxidative stress, cell proliferation, cell cycle distribution, apoptosis 900 MHz - continuous for 2 h/day on 3 days 携帯電話, 移動体通信システム, 共ばく露
Hirose H et al. 2007 無傷細胞/細胞培養, A172 (human glioblastoma cells) and IMR90 fibroblasts (from fetal lungs) cellular stress response (Hsp27 (heat-shock protein 27) content and hsp27 phosphorylation) 2.1425 GHz 80–800 mW/kg continuous for 2, 24, or 48 h for A172 cells 携帯電話基地局, CDMA, 移動体通信システム, マイクロ波
Miyakoshi J et al. 2005 無傷細胞/細胞培養, MO54 cells (derived from a human malignant glioma) activation of stress response genes 1,950 MHz 1–10 W/kg continuous for 1 or 2 h 移動体通信システム
Wang Y et al. 2021 無脊椎動物, 全身 - 3.5 GHz - - 移動体通信システム, 5G
Deshmukh PS et al. 2015 動物, rat/Fischer 344, 全身 cognitive function, Hsp70 protein expression and DNA damage in the rat brain 900 MHz 0.5853–0.6672 mW/kg continuous for 2 h/day, 5 days/week for 180 days 移動体通信システム, マイクロ波, 2.45 GHz
Bourdineaud JP et al. 2017 無脊椎動物 - 900 MHz - - 移動体通信システム, 携帯電話
Huang TQ et al. 2008 無傷細胞/細胞培養, HEI-OC1 cells (immortalized mouse auditory hair cells) cell cycle, DNA damage, stress response, and gene expression 1,763 MHz 20 W/kg continuous for 24 h and 48 h 移動体通信システム, 携帯電話, CDMA
Finnie JW et al. 2009 動物, mouse/BALB/c, 全身 stress response (induction of heat shock proteins) in fetal brain 900 MHz 4 W/kg 60 min/day from day 1 to day 19 of gestation 移動体通信システム, 携帯電話, GSM, PW パルス波
Migdal P et al. 2023 無脊椎動物 - 900 MHz - - 移動体通信システム, 携帯電話, RF電磁界