Author(s):
Jorge-Mora T*, Alvarez-Folgueiras M, Leiro J, Jorge-Barreiro FJ, Ares-Pena FJ, Lopez-Martin E.
* Morphological Sciences Department, University of Santiago de Compostela, 15782 Santiago de Compostela.
Spain
Published in:
Prog Electromagn Res 2010; 100 : 351 – 379
Published: January 2010
on EMF:data since 04.06.2017
Further publications:
Keywords for this study:
Heat shock proteins (HSP)  |  Other effects on the brain
Medical/biological studies
Go to EMF:data assessment

Exposure to 2.45 GHz microwave radiation provokes cerebral changes in induction of HSP-90 a/ß.heat shock protein in rat.

Original Abstract

Exposure:

2450 MHz
SAR = 0,034±3.10(-3),0,069±5.10(-3), 0,27±21.10(-3) W/kg

EMF:data assessment

Summary

Auszug aus dem Original-Abstract: [...] The cellular distribution of protein HSP-90 in the brain increased with each corresponding SAR (0.034 ± 3.10(-3), 0.069 ± 5.10(-3), 0.27 ± 21.10(-3) W/kg), in hypothalamic nuclei, limbic cortex and somatosensorial cortex after exposure to the radiation. At twenty-four hours post-irradiation, levels of HSP-90 protein remained high in all hypothalamic nuclei for all SARs, and in the parietal cortex, except the limbic system, HSP-90 levels were lower than in non-irradiated rats, almost half the levels in rats exposed to the highest power radiation. Non-apoptotic cellular nuclei and some dark neurons were found ninety minutes and twenty-four hours after maximal SAR exposure. The results suggest that acute exposure to electromagnetic fields triggered an imbalance in anatomical HSP- 90 levels but the anti-apoptotic mechanism is probably sufficient to compensate the non-ionizing stimulus.

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