Study overviews

Mobile phone related articles are

Experimental studies on mobile communications

1432 studies in total
  1. 588 studies
  2. 457 studies
  3. 439 studies
  4. 191 studies
  5. 163 studies
  6. 94 studies

DNA

457 studies in total
  1. 240 studies
  2. 169 studies
  3. 92 studies
  4. 39 studies

Gene/protein expression (in general) 92 studies in total

Authors Year Exposed system Endpoints Frequency range SAR Exposure duration Parameters
Akhavan-Sigari R et al. 2014 human, partial body: head relationship between <i>p53</i> expression, <i>p53</i> mutations, survival time and cell phone usage 800–1,900 MHz 0.66–1.53 W/kg repeated daily exposure of less than 3 hours mobile phone, mobile communications
Belyaev IY et al. 2006 animal, rat/Fischer 344, whole body DNA strand breaks, changes in chromatin conformation, gene expression 915 MHz 0.4 mW/g continuous for 2 h GSM, mobile communications, microwaves
Bodera P et al. 2017 - - 1,800 MHz - - mobile communications, mobile phone, GSM, RF field, co-exposure
Bourthoumieu S et al. 2013 intact cell/cell culture expression and activating of p53 protein 900 MHz 4–32 W/kg continuous for 24 h mobile phone, GSM, mobile communications, PW pulsed wave
Cervellati F et al. 2009 intact cell/cell culture, HTR-8/SVneo (human trophoblast cell line) connexin gene expression and protein expression, protein localization and cell ultrastructure 1,817 MHz 2 W/kg continuous for 1 h mobile communications, digital mobile phone, GSM, PW pulsed wave
Cervellati F et al. 2013 intact cell/cell culture, HTR-8/SVneo (human trophoblast cell line) connexin, integrin and estrogen receptor expression, cell ultrastructure, localization of estrogen receptor 1,800 MHz 2 W/kg continuous for 1 h mobile phone, GSM, mobile communications, co-exposure
Chauhan V et al. 2006 intact cell/cell culture, HL-60 (human acute myeloid leukaemia cells) and Mono Mac 6 cells (human monocytes) gene expression 1.9 GHz 1–10 W/kg intermittent, 5 min on/10 min off, for 6 h digital mobile phone, mobile communications
Chauhan V et al. 2007 intact cell/cell culture, U87MG (human glioblastoma cells); Mono Mac 6 cells (human monocytes) gene expression 1.9 GHz 0.1–10 W/kg continuous for 24 h digital mobile phone, mobile communications
Chen C et al. 2021 intact cell/cell culture, mouse embryonic stem cells, Neuro-2a (mouse neuroblastoma) cells - 1,800 MHz - - mobile communications, GSM, RF field
Chen G et al. 2012 intact cell/cell culture, yeast (<i>Saccharomyces cerevisiae</i>)/S288C gene expression in yeast 50 Hz 4.7 W/kg continuous for 6 h GSM, mobile communications, RF field, PW pulsed wave, magnetic field, low frequency, 50/60 Hz
Czyz J et al. 2004 intact cell/cell culture, pluripotent R1 embryonic stem cells, wild-type D3 and p53-deficient; embryonic carcinoma cells of line P19 gene expression, cell differentiation, cell cycle phase, and proliferation 1.71 GHz 0.4–16 W/kg intermittent, 5/30 min On/Off cycles for 6 or 48 hours GSM, mobile communications
Dasdag S et al. 2015 animal, rat/ Wistar albino, partial body: head microRNA expression in the brain 900 MHz 0.0369–2.023 W/kg continuous for 3 h/day on 7 days/week for 12 months GSM, mobile communications
Dogan M et al. 2012 animal, rat/Wistar, whole body brain metabolism, oxidative stress, histopathology and apoptosis in the brain 1.9 Hz–2.2 GHz - every day two times 20 min (1x talking, 1x listening mode) from day 2 to day 21 digital mobile phone, GSM, mobile communications
Duranti G et al. 2005 intact cell/cell culture, HaCaT cells (human keratinocytes cell line) cell proliferation, cytotoxicity 900 MHz 0.04–0.08 W/kg continuous for 18 h GSM, mobile communications
Eker ED et al. 2018 animal, rat/Wistar albino - 1,800 MHz - - mobile communications, mobile phone, GSM
Engelmann JC et al. 2008 plant, plant cell suspension cultures of <i>Arabidopsis thaliana</i> gene expression 1.9 GHz 0.75–2 W/g continuous for 24 h UMTS, CDMA, mobile communications, RF field, microwaves
Finnie JW 2005 animal, mouse/C57BL/6NTac, whole body <i>c-fos</i> expression in the brain (to assess neural injury) 900 MHz 4 W/kg continuous for 60 min GSM, mobile communications, microwaves
Fragopoulou AF et al. 2012 animal, mouse/BALB/c, whole body protein expression in the mouse brain 900 MHz 0.012–0.37 W/kg continuous for 3 h/day for 8 months mobile phone, digital mobile phone, GSM, mobile communications, PW pulsed wave, DECT, wireless transmitter
Fragopoulou AF et al. 2018 animal, mouse/C57BL/6, whole body - 1,800 MHz - - mobile phone, GSM, mobile communications, RF field
Gerner C et al. 2010 intact cell/cell culture, Jurkat cells (human lymphoblastoid T cells), cultured fibroblasts, quiescent and inflammatory stimulated (by PHA and LPS) primary human white blood cells protein expression (effects on proteome) 1,800 MHz 2 W/kg 5 min on - 10 min off for 8 hr mobile communications, digital mobile phone, GSM, PW pulsed wave
Ghatei N et al. 2017 animal, mouse/BALB/c (pregnant females and young animal) - 900–1,800 MHz - - mobile communications
Goswami PC et al. 1999 intact cell/cell culture, C3H 10T1/2 cells (derived from mouse embryo fibroblasts) stress response (proto-oncogene expression and DNA-binding activity of transcription factors) 835.62 MHz 0.6 W/kg continuous for 24 h or 4 days mobile communications, CDMA
Gurisik E et al. 2006 intact cell/cell culture, human neuroblastoma cell line (SK-N-SH) and monocytes cell line (U937) gene expression, cell viability 900 MHz 0.2 W/kg continuous for 1 or 2 h digital mobile phone, GSM, mobile communications
Gökçek-Saraç Ç et al. 2017 animal, rat/Wistar (adults and pubs), partial body - 900–2,100 MHz - - mobile communications, GSM, mobile phone, RF field
Gökçek-Saraç Ç et al. 2017 animal, rat/Wistar albino - 900 MHz - - mobile communications