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The Anti-Tumor Effect of A(3) Adenosine Receptors Is Potentiated by Pulsed Electromagnetic Fields in Cultured Neural Cancer Cells

A(3) adenosine receptors (ARs) play a pivotal role in the development of cancer and their activation is involved in the inhibition of tumor growth. The effects of pulsed electromagnetic fields (PEMFs) on cancer have been controversially discussed and the detailed mechanisms are not yet fully underst...

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Autores principales: Vincenzi, Fabrizio, Targa, Martina, Corciulo, Carmen, Gessi, Stefania, Merighi, Stefania, Setti, Stefania, Cadossi, Ruggero, Borea, Pier Andrea, Varani, Katia
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3382599/
https://www.ncbi.nlm.nih.gov/pubmed/22761760
http://dx.doi.org/10.1371/journal.pone.0039317
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author Vincenzi, Fabrizio
Targa, Martina
Corciulo, Carmen
Gessi, Stefania
Merighi, Stefania
Setti, Stefania
Cadossi, Ruggero
Borea, Pier Andrea
Varani, Katia
author_facet Vincenzi, Fabrizio
Targa, Martina
Corciulo, Carmen
Gessi, Stefania
Merighi, Stefania
Setti, Stefania
Cadossi, Ruggero
Borea, Pier Andrea
Varani, Katia
author_sort Vincenzi, Fabrizio
collection PubMed
description A(3) adenosine receptors (ARs) play a pivotal role in the development of cancer and their activation is involved in the inhibition of tumor growth. The effects of pulsed electromagnetic fields (PEMFs) on cancer have been controversially discussed and the detailed mechanisms are not yet fully understood. In the past we have demonstrated that PEMFs increased A(2A) and A(3)AR density and functionality in human neutrophils, human and bovine synoviocytes, and bovine chondrocytes. In the same cells, PEMF exposure increased the anti-inflammatory effect mediated by A(2A) and/or A(3)ARs. The primary aim of the present study was to evaluate if PEMF exposure potentiated the anti-tumor effect of A(3)ARs in PC12 rat adrenal pheochromocytoma and U87MG human glioblastoma cell lines in comparison with rat cortical neurons. Saturation binding assays and mRNA analysis revealed that PEMF exposure up-regulated A(2A) and A(3)ARs that are well coupled to adenylate cyclase activity and cAMP production. The activation of A(2A) and A(3)ARs resulted in the decrease of nuclear factor-kappa B (NF-kB) levels in tumor cells, whilst only A(3)ARs are involved in the increase of p53 expression. A(3)AR stimulation mediated an inhibition of tumor cell proliferation evaluated by thymidine incorporation. An increase of cytotoxicity by lactate dehydrogenase (LDH) release and apoptosis by caspase-3 activation in PC12 and U87MG cells, but not in cortical neurons, was observed following A(3)AR activation. The effect of the A(3)AR agonist in tumor cells was enhanced in the presence of PEMFs and blocked by using a well-known selective antagonist. Together these results demonstrated that PEMF exposure significantly increases the anti-tumor effect modulated by A(3)ARs.
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spelling pubmed-33825992012-07-03 The Anti-Tumor Effect of A(3) Adenosine Receptors Is Potentiated by Pulsed Electromagnetic Fields in Cultured Neural Cancer Cells Vincenzi, Fabrizio Targa, Martina Corciulo, Carmen Gessi, Stefania Merighi, Stefania Setti, Stefania Cadossi, Ruggero Borea, Pier Andrea Varani, Katia PLoS One Research Article A(3) adenosine receptors (ARs) play a pivotal role in the development of cancer and their activation is involved in the inhibition of tumor growth. The effects of pulsed electromagnetic fields (PEMFs) on cancer have been controversially discussed and the detailed mechanisms are not yet fully understood. In the past we have demonstrated that PEMFs increased A(2A) and A(3)AR density and functionality in human neutrophils, human and bovine synoviocytes, and bovine chondrocytes. In the same cells, PEMF exposure increased the anti-inflammatory effect mediated by A(2A) and/or A(3)ARs. The primary aim of the present study was to evaluate if PEMF exposure potentiated the anti-tumor effect of A(3)ARs in PC12 rat adrenal pheochromocytoma and U87MG human glioblastoma cell lines in comparison with rat cortical neurons. Saturation binding assays and mRNA analysis revealed that PEMF exposure up-regulated A(2A) and A(3)ARs that are well coupled to adenylate cyclase activity and cAMP production. The activation of A(2A) and A(3)ARs resulted in the decrease of nuclear factor-kappa B (NF-kB) levels in tumor cells, whilst only A(3)ARs are involved in the increase of p53 expression. A(3)AR stimulation mediated an inhibition of tumor cell proliferation evaluated by thymidine incorporation. An increase of cytotoxicity by lactate dehydrogenase (LDH) release and apoptosis by caspase-3 activation in PC12 and U87MG cells, but not in cortical neurons, was observed following A(3)AR activation. The effect of the A(3)AR agonist in tumor cells was enhanced in the presence of PEMFs and blocked by using a well-known selective antagonist. Together these results demonstrated that PEMF exposure significantly increases the anti-tumor effect modulated by A(3)ARs. Public Library of Science 2012-06-25 /pmc/articles/PMC3382599/ /pubmed/22761760 http://dx.doi.org/10.1371/journal.pone.0039317 Text en Vincenzi et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Vincenzi, Fabrizio
Targa, Martina
Corciulo, Carmen
Gessi, Stefania
Merighi, Stefania
Setti, Stefania
Cadossi, Ruggero
Borea, Pier Andrea
Varani, Katia
The Anti-Tumor Effect of A(3) Adenosine Receptors Is Potentiated by Pulsed Electromagnetic Fields in Cultured Neural Cancer Cells
title The Anti-Tumor Effect of A(3) Adenosine Receptors Is Potentiated by Pulsed Electromagnetic Fields in Cultured Neural Cancer Cells
title_full The Anti-Tumor Effect of A(3) Adenosine Receptors Is Potentiated by Pulsed Electromagnetic Fields in Cultured Neural Cancer Cells
title_fullStr The Anti-Tumor Effect of A(3) Adenosine Receptors Is Potentiated by Pulsed Electromagnetic Fields in Cultured Neural Cancer Cells
title_full_unstemmed The Anti-Tumor Effect of A(3) Adenosine Receptors Is Potentiated by Pulsed Electromagnetic Fields in Cultured Neural Cancer Cells
title_short The Anti-Tumor Effect of A(3) Adenosine Receptors Is Potentiated by Pulsed Electromagnetic Fields in Cultured Neural Cancer Cells
title_sort anti-tumor effect of a(3) adenosine receptors is potentiated by pulsed electromagnetic fields in cultured neural cancer cells
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3382599/
https://www.ncbi.nlm.nih.gov/pubmed/22761760
http://dx.doi.org/10.1371/journal.pone.0039317
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