M M El Bakry’s research while affiliated with Cairo University and other places

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Publications (1)


Figure 1. The effect of electromagnetic radiation on monoamine concentrations in the hippocampus of adult rats. DA: dopamine; NE: norepinephrine; 5HT: serotonin; M: month: MS: month of stopping. 
Figure 2. The effect of electromagnetic radiation on monoamine concentrations in the hypothalamus of adult rats. DA: dopamine; NE: norepinephrine; 5HT: serotonin; M: month: MS: month of stopping. 
Figure 3. The effect of electromagnetic radiation on monoamine concentrations in the midbrain of adult rats. DA: dopamine; NE: norepinephrine; 5HT: serotonin; M: month: MS: month of stopping. 
Figure 4. The effect of electromagnetic radiation on monoamine concentrations in the medulla of adult rats. DA: dopamine; NE: norepinephrine; 5HT: serotonin; M: month: MS: month of stopping. 
The effect of pulsed electromagnetic radiation from mobile phone on the levels of monoamine neurotransmitters in four different areas of rat brain
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July 2013

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1,644 Reads

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49 Citations

European Review for Medical and Pharmacological Sciences

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N.A. Ahmed

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M M El Bakry

The use of mobile phones is rapidly increasing all over the world. Few studies deal with the effect of electromagnetic radiation (EMR) on monoamine neurotransmitters in the different brain areas of adult rat. The aim of the present study was to investigate the effect of EMR on the concentrations of dopamine (DA), norepinephrine (NE) and serotonin (5-HT) in the hippocampus, hypothalamus, midbrain and medulla oblongata of adult rats. Adult rats were exposed daily to EMR (frequency 1800 MHz, specific absorption rate 0.843 W/kg, power density 0.02 mW/cm2, modulated at 217 Hz) and sacrificed after 1, 2 and 4 months of daily EMR exposure as well as after stopping EMR for 1 month (after 4 months of daily EMR exposure). Monoamines were determined by high performance liquid chromatography coupled with fluorescence detection (HPLC-FD) using their native properties. The exposure to EMR resulted in significant changes in DA, NE and 5-HT in the four selected areas of adult rat brain. The exposure of adult rats to EMR may cause disturbances in monoamine neurotransmitters and this may underlie many of the adverse effects reported after EMR including memory, learning, and stress.

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Citations (1)


... Mobile EM exposure may influence tissues and cells, resulting in an effect on the release of neurotransmitters in the brain. Given the critical role of neurotransmitters in neural signalling, any modifications in their functionality could lead to changes in CSE [131,132]. Exposure to mobile EM exposure may also have been associated with alterations in gene expression within the brain. Changes in patterns of gene expression may lead to modifications in neural function, potentially influencing CSE [108,111,[133][134][135][136][137][138][139][140]. ...

Reference:

Effects of Mobile Electromagnetic Exposure on Brain Oscillations and Cortical Excitability: Scoping Review
The effect of pulsed electromagnetic radiation from mobile phone on the levels of monoamine neurotransmitters in four different areas of rat brain

European Review for Medical and Pharmacological Sciences