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Study of p53 expression and post-transcriptional modifications after GSM-900 radiofrequency exposure of human amniotic cells

Identifieur interne : 001808 ( Main/Exploration ); précédent : 001807; suivant : 001809

Study of p53 expression and post-transcriptional modifications after GSM-900 radiofrequency exposure of human amniotic cells

Auteurs : Sylvie Bourthoumieu [France] ; Amandine Magnaudeix [France] ; Faraj Terro [France] ; Philippe Lévêque [France] ; Alice Collin ; Catherine Yardin [France]

Source :

RBID : Hal:hal-00760670

Abstract

The potential effects of radiofrequency (RF) exposure on the genetic material of cells are very important to determine since genome instability of somatic cells may be linked to cancer development. In response to genetic damage, the p53 protein is activated and can induce cell cycle arrest allowing more time for DNA repair or elimination of damaged cells through apoptosis. The objective of this study was to investigate whether the exposure to RF electromagnetic fields, similar to those emitted by mobile phones of the second generation standard, Global System for Mobile Communications (GSM), may induce expression of the p53 protein and its activation by post-translational modifications in cultured human cells. The potential induction of p53 expression and activation by GSM-900 was investigated after in vitro exposure of human amniotic cells for 24 h to average specific absorption rates (SARs) of 0.25, 1, 2, and 4 W/kg in the temperature range of 36.3-39.7 °C. The exposures were carried out using a wire-patch cell (WPC) under strictly controlled conditions of temperature. Expression and activation of p53 by phosphorylation at serine 15 and 37 were studied using Western blot assay immediately after three independent exposures of cell cultures provided from three different donors. Bleomycin-exposed cells were used as a positive control. According to our results, no significant changes in the expression and activation of the p53 protein by phosphorylation at serine 15 and 37 were found following exposure to GSM-900 for 24 h at average SARs up to 4 W/kg in human embryonic cells. Bioelectromagnetics. © 2012 Wiley Periodicals, Inc.


Url:
DOI: 10.1002/bem.21744


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<addrLine>33 rue François Mitterrand BP23204 87032 Limoges</addrLine>
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<orgName>Centre National de la Recherche Scientifique</orgName>
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<date type="start">1939-10-19</date>
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<country>France</country>
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<settlement type="city">Limoges</settlement>
<region type="region" nuts="2">Limousin</region>
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<orgName type="university">Université de Limoges</orgName>
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<author>
<name sortKey="Collin, Alice" sort="Collin, Alice" uniqKey="Collin A" first="Alice" last="Collin">Alice Collin</name>
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<author>
<name sortKey="Yardin, Catherine" sort="Yardin, Catherine" uniqKey="Yardin C" first="Catherine" last="Yardin">Catherine Yardin</name>
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<idno type="IdRef">188556516</idno>
<orgName>Equipe de Recherche Médicale Appliquée</orgName>
<orgName type="acronym">ERMA</orgName>
<date type="start">2012-01-01</date>
<date type="end">2016-12-31</date>
<desc>
<address>
<addrLine>Université de Limoges Faculté de Médecine 2 rue du Dr Marcland 87025 LIMOGES CEDEX</addrLine>
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<ref type="url">http://www.avrul.fr/-Constellation-de-recherche-.html</ref>
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<idno type="ISNI">0000000121654861</idno>
<orgName>Université de Limoges</orgName>
<orgName type="acronym">UNILIM</orgName>
<date type="start">1968-10-01</date>
<desc>
<address>
<addrLine>33 rue François Mitterrand BP23204 87032 Limoges</addrLine>
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</address>
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<addrLine>Centre Hospitalier Universitaire Dupuytren - 2 avenue Martin Luther King 87042 LIMOGES </addrLine>
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</address>
<ref type="url">http://www.chu-limoges.fr/</ref>
</desc>
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<org type="institution" xml:id="struct-302082" status="OLD">
<idno type="RNSR">201220465X</idno>
<idno type="IdRef">188832599</idno>
<orgName>Génomique, Environnement, Immunité, Santé, Thérapeutique</orgName>
<orgName type="acronym">GEIST FR CNRS 3503</orgName>
<date type="start">2007-01-01</date>
<date type="end">2018-01-01</date>
<desc>
<address>
<addrLine>Université de Limoges - Faculté de Médecine - 2 rue du Dr Marcland 87025 Limoges cedex</addrLine>
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<country>France</country>
<placeName>
<settlement type="city">Limoges</settlement>
<region type="region" nuts="2">Limousin</region>
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<orgName type="university">Université de Limoges</orgName>
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<idno type="DOI">10.1002/bem.21744</idno>
<series>
<title level="j">Bioelectromagnetics</title>
<idno type="ISSN">0197-8462</idno>
<imprint>
<date type="datePub">2013</date>
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<div type="abstract" xml:lang="en">
<p>The potential effects of radiofrequency (RF) exposure on the genetic material of cells are very important to determine since genome instability of somatic cells may be linked to cancer development. In response to genetic damage, the p53 protein is activated and can induce cell cycle arrest allowing more time for DNA repair or elimination of damaged cells through apoptosis. The objective of this study was to investigate whether the exposure to RF electromagnetic fields, similar to those emitted by mobile phones of the second generation standard, Global System for Mobile Communications (GSM), may induce expression of the p53 protein and its activation by post-translational modifications in cultured human cells. The potential induction of p53 expression and activation by GSM-900 was investigated after in vitro exposure of human amniotic cells for 24 h to average specific absorption rates (SARs) of 0.25, 1, 2, and 4 W/kg in the temperature range of 36.3-39.7 °C. The exposures were carried out using a wire-patch cell (WPC) under strictly controlled conditions of temperature. Expression and activation of p53 by phosphorylation at serine 15 and 37 were studied using Western blot assay immediately after three independent exposures of cell cultures provided from three different donors. Bleomycin-exposed cells were used as a positive control. According to our results, no significant changes in the expression and activation of the p53 protein by phosphorylation at serine 15 and 37 were found following exposure to GSM-900 for 24 h at average SARs up to 4 W/kg in human embryonic cells. Bioelectromagnetics. © 2012 Wiley Periodicals, Inc.</p>
</div>
</front>
</TEI>
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<list>
<country>
<li>France</li>
</country>
<region>
<li>Limousin</li>
</region>
<settlement>
<li>Limoges</li>
</settlement>
<orgName>
<li>Université de Limoges</li>
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<noRegion>
<name sortKey="Bourthoumieu, Sylvie" sort="Bourthoumieu, Sylvie" uniqKey="Bourthoumieu S" first="Sylvie" last="Bourthoumieu">Sylvie Bourthoumieu</name>
</noRegion>
<name sortKey="Leveque, Philippe" sort="Leveque, Philippe" uniqKey="Leveque P" first="Philippe" last="Lévêque">Philippe Lévêque</name>
<name sortKey="Magnaudeix, Amandine" sort="Magnaudeix, Amandine" uniqKey="Magnaudeix A" first="Amandine" last="Magnaudeix">Amandine Magnaudeix</name>
<name sortKey="Terro, Faraj" sort="Terro, Faraj" uniqKey="Terro F" first="Faraj" last="Terro">Faraj Terro</name>
<name sortKey="Yardin, Catherine" sort="Yardin, Catherine" uniqKey="Yardin C" first="Catherine" last="Yardin">Catherine Yardin</name>
</country>
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