ORIGINAL_ARTICLE
Editorial
https://jbpe.sums.ac.ir/article_43194_e026c5ae83cb27a2fb1f8e7997150c93.pdf
2015-09-01
AR
Mehdizadeh
alireza.mehdizadeh@gmail.com
1
LEAD_AUTHOR
SMJ
Mortazavi
mortazavismj@gmail.com
2
AUTHOR
ORIGINAL_ARTICLE
Effect of 900 MHz Electromagnetic Radiation on the Induction of ROS in Human Peripheral Blood Mononuclear Cells
Background, Despite numerous studies over a decade, it still remains controversial about the biological effects of RF EMF emitted by mobile phone telephony. Objective, Here we investigated the effect of 900 MHz GSM on the induction of oxidative stress and the level of intracellular reactive oxygen species (ROS) in human mononuclear cells, monocytes and lymphocytes as defence system cells. Method, 6 ml Peripheral Blood samples were obtained from 13 healthy volunteers (21-30 year-old). Each sample was devided into 2 groups: one was exposed RF radiation emitted from a mobile phone simulator for 2 hour and the other used as control group which was not exposed to any fields. After that, mononuclear cells were isolated from peripheral blood by density gradient centrifugation in Ficoll-Paque. The intracellular ROS content in monocytes and lymphocytes was measured by the CM-H2DCFDA fluorescence probe using flowcytometry technique. Results, Our results showed significant increase in ROS production after exposure in population rich in monocytes. This effect was not significant in population rich in lymphocytes in comparison with non exposed cells. Conclusion, The results obtained in this study clearly showed the oxidative stress induction capability of RF electromagnetic field in the portion of PBMCs mostly in monocytes, like the case of exposure to micro organisms, although the advantages or disadvantages of this effect should be evaluated.
https://jbpe.sums.ac.ir/article_43192_be380eee104e971f5d7232c200dc8aff.pdf
2015-09-01
Electromagnetic Radiation
Radiofrequency (RF)
Mobile Phone
Reactive Oxygen Species (ROS)
Human Peripheral Blood Mononuclear Cells
E
Kazemi
kazemiel@yahoo.com
1
LEAD_AUTHOR
SMJ
Mortazavi
mmortazavi@sums.ac.ir
2
1. Medical Physics Department, School of Medicine, Shiraz University of Medical Sciences, Shiraz, Iran
AUTHOR
A
Ali-Ghanbari
3
AUTHOR
S
Sharifzadeh
4
AUTHOR
R
Ranjbaran
5
AUTHOR
Z
Mostafavi-pour
6
AUTHOR
F
Zal
7
AUTHOR
M
Haghani
8
AUTHOR
ORIGINAL_ARTICLE
Klebsiella pneumonia, a Microorganism that Approves the Non-linear Responses to Antibiotics and Window Theory after Exposure to Wi-Fi 2.4 GHz Electromagnetic Radiofrequency Radiation
Background: Drug resistance is widely believed to be an increasingly serious threat to global public health. We have previously reported that short term exposure of microorganisms to diagnostic ultrasound waves could significantly alter their sensitivity to antibiotics. In our previous studies, Klebsiella pneumoniae showed major differences in the sensitivity to antibiotics in exposed and non-exposed samples. This study was aimed at investigating the alteration of antibiotic resistance of Klebsiella pneumonia, after exposure to Wi-Fi 2.4 GHz electromagnetic radiofrequency radiation.Materials and Methods: In this in vitro study, three replicate agar plates were used for each test. The antibiotic susceptibility test was carried out using disc diffusion method on Muller Hinton agar plates and the inhibition zones in both control and exposed groups were measured. A common Wi-Fi router was used in this study as the radiofrequency exposure source. Irradiated samples were exposed to Wi-Fi radiofrequency radiation for 3, 4.5 and 8 hours. Results: Statistically significant variations of sensitivity to antibiotics were found for all studied antibiotics after 4.5 hours of RF exposure, compared to non-exposed bacteria. Interestingly, the mean diameters of the inhibition zones after 3 hours of exposure were less than those exposed for 4.5 hours. Following this rise in the sensitivity to antibiotics, a fall was observed in the bacteria exposed for 8 hours for all studied antibiotics. Conclusion: The findings of this study show a statistically significant rise in the sensitivity of Klebsiella pneumoniae to different antibiotics after 4.5 hours of exposure to 2.4 GHz Wi-Fi radiation, followed by a fall after 8 hours of exposure. These observations can be interpreted by the concept of non-linearity in the responses of Klebsiella pneumoniae to different antibiotics after exposure to electromagnetic radiofrequency radiation. As in this study a minimum level of effect was needed for the induction of adaptive response, these results also confirm the validity of the so-called “window theoryâ€.Â
https://jbpe.sums.ac.ir/article_43195_3d0eb562901103f37aa53350716d9182.pdf
2015-09-01
Klebsiella
Non-linearity
Dose Response
Adaptive response
Antibiogram
M
Taheri
motaheri360@gmail.com
1
AUTHOR
SMJ
Mortazavi
mortazavismj@gmail.com
2
LEAD_AUTHOR
M
Moradi
3
AUTHOR
Sh
Mansour
4
AUTHOR
F
Nouri
5
AUTHOR
SAR
Mortazavi
6
AUTHOR
F
Bahmanzadegan
7
AUTHOR
ORIGINAL_ARTICLE
Survey of the Effects of Exposure to 900 MHz Radiofrequency Radiation Emitted by a GSM Mobile Phone on the Pattern of Muscle Contractions in an Animal Model
Introduction: The rapid development of wireless telecommunication technologies over the past decades, has led to significant changes in the exposure of the general public to electromagnetic fields. Nowadays, people are continuously exposed to different sources of electromagnetic fields such as mobile phones, mobile base stations, cordless phones, Wi-Fi routers, and power lines. Therefore, the last decade witnessed a rapidly growing concern about the possible health effects of exposure to electromagnetic fields emitted by these sources. Materials and Methods: In this study that was aimed at investigating the effects of exposure to radiofrequency (RF) radiation emitted by a GSM mobile phone on the pattern of contraction in frog’s isolated gastrocnemius muscle after stimulation with single square pulses of 1V (1 Hz), pulse height of contractions, the time interval between two subsequent contractions and the latency period were measured. Results: Our findings showed that the pulse height of contractions muscle could be affected by the exposure to electromagnetic fields. Especially, the latency period was effectively altered in RF-exposed samples. However, none of the experiments could show an alteration in the time interval between two subsequent contractions after exposure to electromagnetic fields. Conclusion: These findings support early reports which indicated a wide variety of non-thermal effects of electromagnetic radiation on amphibians including the effects on the pattern of muscle extractions.
https://jbpe.sums.ac.ir/article_43196_f08eba9393281ae381e277115f9ad03f.pdf
2015-09-01
Non-Ionizing Radiation
Radiofrequency (RF)
Electromagnetic Fields
GSM mobile phone
Muscle Contractions
Frog
SMJ
Mortazavi
mortazavismj@gmail.com
1
LEAD_AUTHOR
S
Rahimi
2
AUTHOR
A
Talebi
3
AUTHOR
A
Soleimani
aslami_epid@yahoo.com
4
AUTHOR
A
Rafati
5
AUTHOR
ORIGINAL_ARTICLE
Exposure to Radiofrequency Radiation Emitted from Common Mobile Phone Jammers Alters the Pattern of Muscle Contractions: an Animal Model Study
Introduction: The fast-growing telecommunication and wireless technologies has led to more dependence to these communication devices and higher levels of exposure to electromagnetic radiations propagated by cellular devices and their service towers. To disable signaling in places where silence is valued or where information quarantine measures are required, mobile phone jammers emit radiofrequency radiation in the same frequencies that mobile phones operate. On the other hand, the rapid growth of wireless communication technologies has caused public concerns regarding the biological effects of electromagnetic radiations on human health. Some early reports indicated a wide variety of non-thermal effects of electromagnetic radiation on amphibians such as the alterations of the pattern of muscle extractions. This study is aimed at investigating the effects of exposure to radiofrequency (RF) radiation emitted from mobile phone jammers on the pulse height of contractions, the time interval between two subsequent contractions and the latency period of frog’s isolated gastrocnemius muscle after stimulation with single square pulses of 1V (1 Hz). Materials and Methods: Frogs were kept in plastic containers in a cool room. Animals in the jammer group were exposed to radiofrequency (RF) radiation emitted from a common Jammer at a distance of 1m from the jammer’s antenna for 2 hours while the control frogs were only sham exposed. Then animals were sacrificed and isolated gastrocnemius muscles were exposed to on/off jammer radiation for 3 subsequent 10 minute intervals. Isolated gastrocnemius muscles were attached to the force transducer with a string. Using a PowerLab device (26-T), the pattern of muscular contractions was monitored after applying single square pulses of 1V (1 Hz) as stimuli. Results: The findings of this study showed that the pulse height of muscle contractions could not be affected by the exposure to electromagnetic fields. However, the latency period was effectively altered in RF-exposed samples. However, none of the experiments could show an alteration in the time interval between two subsequent contractions after exposure to electromagnetic fields.  Conclusion: These findings support early reports which indicated a wide variety of non-thermal effects of electromagnetic radiation on amphibians including the effects on the pattern of muscle extractions.
https://jbpe.sums.ac.ir/article_43197_91abc32e00f2ff52f6f44d0f51cb0f18.pdf
2015-09-01
Non-Ionizing Radiation
Radiofrequency (RF)
Electromagnetic Fields
GSM mobile phone
Muscle Contractions
Frog
A
Rafati
1
LEAD_AUTHOR
S
Rahimi
2
AUTHOR
A
Talebi
3
AUTHOR
A
Soleimani
aslami_epid@yahoo.com
4
AUTHOR
M
Haghani
5
AUTHOR
S M J
Mortazavi
mortazavismj@gmail.com
6
AUTHOR
ORIGINAL_ARTICLE
Does Occupational Exposure of Shahid Dastghieb International Airport Workers to Radiofrequency Radiation Affect Their Short Term Memory and Reaction Time?
Background: Airport workers are continuously exposed to different levels of radiofrequency microwave (RF/MW) radiation emitted by radar equipments. Radars are extensively used in military and aviation industries. Over the past several years, our lab has focused on the health effects of exposure to different sources of electromagnetic fields such as cellular phones, mobile base stations, mobile phone jammers, laptop computers, radars, dentistry cavitrons and MRI. The main goal of this study was to investigate if occupational exposure of Shahid Dastghieb international airport workers to radiofrequency radiation affects their short term memory and reaction time.Methods: Thirty two airport workers involved in duties at control and approach tower (21 males and 11 females), with the age range of 27-67 years old (mean age of 37.38), participated voluntary in this study. On the other hand, 29 workers (13 males, and 16 females) whose offices were in the city with no exposure history to radar systems were also participated in this study as the control group. The employees’ reaction time and short term memory were analyzed using a standard visual reaction time (VRT) test software and the modified Wechsler memory scale test, respectively.Results: The mean± SD values for the reaction times of the airport employees (N=32) and the control group (N=29) were 0.45±0.12 sec and 0.46±0.17 sec, respectively.  Moreover, in the four subset tests; i.e. paired words, forward digit span, backward digit span and word recognition, the following points were obtained for the airport employees and the control group, respectively: (i) pair words test: 28.00±13.13 and 32.07±11.65, (ii) forward digit span: 8.38±1.40 and 9.03±1.32, (iii) backward digit span: 5.54±1.87 and 6.31±1.46, and (iv) word recognition: 5.73±2.36 and 6.50±1.93. These differences were not statistically significant.Conclusion: The occupational exposure of the employees to the RF radiation in Shahid Dastghieb international airport does not have any significant detrimental effect on their reaction time as well as short term memory.Â
https://jbpe.sums.ac.ir/article_43198_d71db08f1388e0de0cd14fcf2b15bda3.pdf
2015-09-01
Airport
Electromagnetic Fields
Occupational Exposure
Cognitive Functions
Short Term Memory
Reaction Time
S
Jarideh
sjarideh726@gmail.com
1
LEAD_AUTHOR
S
Taeb
2
AUTHOR
SM
Pishva
3
AUTHOR
M
Haghani
4
AUTHOR
S
Sina
samirasina@yahoo.com
5
AUTHOR
SAR
Mortazavi
6
AUTHOR
SMA
Hosseini
7
AUTHOR
S
Nematollahi
8
AUTHOR
N
Shokrpour
9
AUTHOR
M
Hassan Shahi
10
AUTHOR
SMJ
Mortazavi
mmortazavi@sums.ac.ir
11
AUTHOR
ORIGINAL_ARTICLE
A Challenging Issue in the Etiology of Speech Problems: The Effect of Maternal Exposure to Electromagnetic Fields on Speech Problems in the Offspring
Background: Nowadays, mothers are continuously exposed to different sources of electromagnetic fields before and even during pregnancy. It has recently been shown that exposure to mobile phone radiation during pregnancy may lead to adverse effects on the brain development in offspring and cause hyperactivity. Researchers have shown that behavioral problems in laboratory animals which have a similar appearance to ADHD are caused by intrauterine exposure to mobile phones Objective: The purpose of this study was to investigate whether the maternal exposure to different sources of electromagnetic fields affect on the rate and severity of speech problems in their offspring. Methods: In this study, mothers of 35 healthy 3-5 year old children (control group) and 77 children and diagnosed with speech problems who had been referred to a speech treatment center in Shiraz, Iran were interviewed. These mothers were asked whether they had exposure to different sources of electromagnetic fields such as mobile phones, mobile base stations, Wi-Fi, cordless phones, laptops and power lines. Results: We found a significant association between either the call time (P=0.002) or history of mobile phone use (months used) and speech problems in the offspring (P=0.003). However, other exposures had no effect on the occurrence of speech problems. To the best of our knowledge, this is the first study to investigate a possible association between maternal exposure to electromagnetic field and speech problems in the offspring. Although a major limitation in our study is the relatively small sample size, this study indicates that the maternal exposure to common sources of electromagnetic fields such as mobile phones can affect the occurrence of speech problems in the offspring.
https://jbpe.sums.ac.ir/article_43199_13e8b04499ff81ba0935ca9135742fb8.pdf
2015-09-01
Speech Problem
Maternal Exposure
Pregnancy
Electromagnetic Fields
Mobile Phones
S
Zarei
1
LEAD_AUTHOR
SMJ
Mortazavi
mmortazavi@sums.ac.ir
2
AUTHOR
AR
Mehdizadeh
alireza.mehdizadeh@gmail.com
3
AUTHOR
M
Jalalipour
4
AUTHOR
S
Borzou
5
AUTHOR
S
Taeb
6
AUTHOR
M
Haghani
7
AUTHOR
SAR
Mortazavi
8
AUTHOR
MB
Shojaei-fard
9
AUTHOR
S
Nematollahi
10
AUTHOR
N
Alighanbari
11
AUTHOR
S
Jarideh
sjarideh726@gmail.com
12
AUTHOR
ORIGINAL_ARTICLE
New Horizons in Enhancing the Proliferation and Differentiation of Neural Stem Cells Using Stimulatory Effects of the Short Time Exposure to Radiofrequency Radiation
Mobile phone use and wireless communication technology have grown explosively over the past decades. This rapid growth has caused widespread global concern about the potential detrimental effects of this technology on human health. Stem cells generate specialized cell types of the tissue in which they reside through normal differentiation pathways. Considering the undeniable importance of stem cells in modern medicine, numerous studies have been performed on the effects of ionizing and non-ionizing radiation on cellular processes such as: proliferation, differentiation, cell cycle and DNA repair processes. We have conducted extensive studies on beneficial (stimulatory) or detrimental biological effects of exposure to different sources of electromagnetic fields such as mobile phones, mobile phone base stations, mobile phone jammers, radar systems, magnetic resonance imaging (MRI) systems and dentistry cavitrons over the past years. In this article, recent studies on the biological effects of non-ionizing electromagnetic radiation in the range of radiofrequency (RF) on some important features of stem cells such as their proliferation and differentiation are reviewed. Studies reviewed in this paper indicate that the stimulatory or inhibitory effects of RF radiation on the proliferation and differentiation of stem cells depend on various factors such as the biological systems, experiment conditions, the frequency and intensity of RF and the duration of exposure.
https://jbpe.sums.ac.ir/article_43193_fab109dcd0589d6ab176836580080bcf.pdf
2015-09-01
Stem Cell
Proliferation
Differentiation
Radiofrequency (RF)
Diseases
M
Eghlidospour
mahsa2412@gmail.com
1
LEAD_AUTHOR
SMJ
Mortazavi
mmortazavi@sums.ac.ir
2
AUTHOR
F
Yousefi
3
AUTHOR
SAR
Mortazavi
4
AUTHOR