Cargando…

Phosphatidylinositol 3-Kinase/AKT Pathway Inhibition by Doxazosin Promotes Glioblastoma Cells Death, Upregulation of p53 and Triggers Low Neurotoxicity

Glioblastoma is the most frequent and malignant brain tumor. Treatment includes chemotherapy with temozolomide concomitant with surgical resection and/or irradiation. However, a number of cases are resistant to temozolomide, as well as the human glioblastoma cell line U138-MG. We investigated doxazo...

Descripción completa

Detalles Bibliográficos
Autores principales: Gaelzer, Mariana Maier, Coelho, Bárbara Paranhos, de Quadros, Alice Hoffmann, Hoppe, Juliana Bender, Terra, Silvia Resende, Guerra, Maria Cristina Barea, Usach, Vanina, Guma, Fátima Costa Rodrigues, Gonçalves, Carlos Alberto Saraiva, Setton-Avruj, Patrícia, Battastini, Ana Maria Oliveira, Salbego, Christianne Gazzana
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4849739/
https://www.ncbi.nlm.nih.gov/pubmed/27123999
http://dx.doi.org/10.1371/journal.pone.0154612
_version_ 1782429590698852352
author Gaelzer, Mariana Maier
Coelho, Bárbara Paranhos
de Quadros, Alice Hoffmann
Hoppe, Juliana Bender
Terra, Silvia Resende
Guerra, Maria Cristina Barea
Usach, Vanina
Guma, Fátima Costa Rodrigues
Gonçalves, Carlos Alberto Saraiva
Setton-Avruj, Patrícia
Battastini, Ana Maria Oliveira
Salbego, Christianne Gazzana
author_facet Gaelzer, Mariana Maier
Coelho, Bárbara Paranhos
de Quadros, Alice Hoffmann
Hoppe, Juliana Bender
Terra, Silvia Resende
Guerra, Maria Cristina Barea
Usach, Vanina
Guma, Fátima Costa Rodrigues
Gonçalves, Carlos Alberto Saraiva
Setton-Avruj, Patrícia
Battastini, Ana Maria Oliveira
Salbego, Christianne Gazzana
author_sort Gaelzer, Mariana Maier
collection PubMed
description Glioblastoma is the most frequent and malignant brain tumor. Treatment includes chemotherapy with temozolomide concomitant with surgical resection and/or irradiation. However, a number of cases are resistant to temozolomide, as well as the human glioblastoma cell line U138-MG. We investigated doxazosin’s (an antihypertensive drug) activity against glioblastoma cells (C6 and U138-MG) and its neurotoxicity on primary astrocytes and organoptypic hippocampal cultures. For this study, the following methods were used: citotoxicity assays, flow cytometry, western-blotting and confocal microscopy. We showed that doxazosin induces cell death on C6 and U138-MG cells. We observed that doxazosin’s effects on the PI3K/Akt pathway were similar as LY294002 (PI3K specific inhibitor). In glioblastoma cells treated with doxasozin, Akt levels were greatly reduced. Upon examination of activities of proteins downstream of Akt we observed upregulation of GSK-3β and p53. This led to cell proliferation inhibition, cell death induction via caspase-3 activation and cell cycle arrest at G0/G1 phase in glioblastoma cells. We used in this study Lapatinib, a tyrosine kinase inhibitor, as a comparison with doxazosin because they present similar chemical structure. We also tested the neurocitotoxicity of doxazosin in primary astrocytes and organotypic cultures and observed that doxazosin induced cell death on a small percentage of non-tumor cells. Aggressiveness of glioblastoma tumors and dismal prognosis require development of new treatment agents. This includes less toxic drugs, more selective towards tumor cells, causing less damage to the patient. Therefore, our results confirm the potential of doxazosin as an attractive therapeutic antiglioma agent.
format Online
Article
Text
id pubmed-4849739
institution National Center for Biotechnology Information
language English
publishDate 2016
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-48497392016-05-07 Phosphatidylinositol 3-Kinase/AKT Pathway Inhibition by Doxazosin Promotes Glioblastoma Cells Death, Upregulation of p53 and Triggers Low Neurotoxicity Gaelzer, Mariana Maier Coelho, Bárbara Paranhos de Quadros, Alice Hoffmann Hoppe, Juliana Bender Terra, Silvia Resende Guerra, Maria Cristina Barea Usach, Vanina Guma, Fátima Costa Rodrigues Gonçalves, Carlos Alberto Saraiva Setton-Avruj, Patrícia Battastini, Ana Maria Oliveira Salbego, Christianne Gazzana PLoS One Research Article Glioblastoma is the most frequent and malignant brain tumor. Treatment includes chemotherapy with temozolomide concomitant with surgical resection and/or irradiation. However, a number of cases are resistant to temozolomide, as well as the human glioblastoma cell line U138-MG. We investigated doxazosin’s (an antihypertensive drug) activity against glioblastoma cells (C6 and U138-MG) and its neurotoxicity on primary astrocytes and organoptypic hippocampal cultures. For this study, the following methods were used: citotoxicity assays, flow cytometry, western-blotting and confocal microscopy. We showed that doxazosin induces cell death on C6 and U138-MG cells. We observed that doxazosin’s effects on the PI3K/Akt pathway were similar as LY294002 (PI3K specific inhibitor). In glioblastoma cells treated with doxasozin, Akt levels were greatly reduced. Upon examination of activities of proteins downstream of Akt we observed upregulation of GSK-3β and p53. This led to cell proliferation inhibition, cell death induction via caspase-3 activation and cell cycle arrest at G0/G1 phase in glioblastoma cells. We used in this study Lapatinib, a tyrosine kinase inhibitor, as a comparison with doxazosin because they present similar chemical structure. We also tested the neurocitotoxicity of doxazosin in primary astrocytes and organotypic cultures and observed that doxazosin induced cell death on a small percentage of non-tumor cells. Aggressiveness of glioblastoma tumors and dismal prognosis require development of new treatment agents. This includes less toxic drugs, more selective towards tumor cells, causing less damage to the patient. Therefore, our results confirm the potential of doxazosin as an attractive therapeutic antiglioma agent. Public Library of Science 2016-04-28 /pmc/articles/PMC4849739/ /pubmed/27123999 http://dx.doi.org/10.1371/journal.pone.0154612 Text en © 2016 Gaelzer 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 (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Gaelzer, Mariana Maier
Coelho, Bárbara Paranhos
de Quadros, Alice Hoffmann
Hoppe, Juliana Bender
Terra, Silvia Resende
Guerra, Maria Cristina Barea
Usach, Vanina
Guma, Fátima Costa Rodrigues
Gonçalves, Carlos Alberto Saraiva
Setton-Avruj, Patrícia
Battastini, Ana Maria Oliveira
Salbego, Christianne Gazzana
Phosphatidylinositol 3-Kinase/AKT Pathway Inhibition by Doxazosin Promotes Glioblastoma Cells Death, Upregulation of p53 and Triggers Low Neurotoxicity
title Phosphatidylinositol 3-Kinase/AKT Pathway Inhibition by Doxazosin Promotes Glioblastoma Cells Death, Upregulation of p53 and Triggers Low Neurotoxicity
title_full Phosphatidylinositol 3-Kinase/AKT Pathway Inhibition by Doxazosin Promotes Glioblastoma Cells Death, Upregulation of p53 and Triggers Low Neurotoxicity
title_fullStr Phosphatidylinositol 3-Kinase/AKT Pathway Inhibition by Doxazosin Promotes Glioblastoma Cells Death, Upregulation of p53 and Triggers Low Neurotoxicity
title_full_unstemmed Phosphatidylinositol 3-Kinase/AKT Pathway Inhibition by Doxazosin Promotes Glioblastoma Cells Death, Upregulation of p53 and Triggers Low Neurotoxicity
title_short Phosphatidylinositol 3-Kinase/AKT Pathway Inhibition by Doxazosin Promotes Glioblastoma Cells Death, Upregulation of p53 and Triggers Low Neurotoxicity
title_sort phosphatidylinositol 3-kinase/akt pathway inhibition by doxazosin promotes glioblastoma cells death, upregulation of p53 and triggers low neurotoxicity
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4849739/
https://www.ncbi.nlm.nih.gov/pubmed/27123999
http://dx.doi.org/10.1371/journal.pone.0154612
work_keys_str_mv AT gaelzermarianamaier phosphatidylinositol3kinaseaktpathwayinhibitionbydoxazosinpromotesglioblastomacellsdeathupregulationofp53andtriggerslowneurotoxicity
AT coelhobarbaraparanhos phosphatidylinositol3kinaseaktpathwayinhibitionbydoxazosinpromotesglioblastomacellsdeathupregulationofp53andtriggerslowneurotoxicity
AT dequadrosalicehoffmann phosphatidylinositol3kinaseaktpathwayinhibitionbydoxazosinpromotesglioblastomacellsdeathupregulationofp53andtriggerslowneurotoxicity
AT hoppejulianabender phosphatidylinositol3kinaseaktpathwayinhibitionbydoxazosinpromotesglioblastomacellsdeathupregulationofp53andtriggerslowneurotoxicity
AT terrasilviaresende phosphatidylinositol3kinaseaktpathwayinhibitionbydoxazosinpromotesglioblastomacellsdeathupregulationofp53andtriggerslowneurotoxicity
AT guerramariacristinabarea phosphatidylinositol3kinaseaktpathwayinhibitionbydoxazosinpromotesglioblastomacellsdeathupregulationofp53andtriggerslowneurotoxicity
AT usachvanina phosphatidylinositol3kinaseaktpathwayinhibitionbydoxazosinpromotesglioblastomacellsdeathupregulationofp53andtriggerslowneurotoxicity
AT gumafatimacostarodrigues phosphatidylinositol3kinaseaktpathwayinhibitionbydoxazosinpromotesglioblastomacellsdeathupregulationofp53andtriggerslowneurotoxicity
AT goncalvescarlosalbertosaraiva phosphatidylinositol3kinaseaktpathwayinhibitionbydoxazosinpromotesglioblastomacellsdeathupregulationofp53andtriggerslowneurotoxicity
AT settonavrujpatricia phosphatidylinositol3kinaseaktpathwayinhibitionbydoxazosinpromotesglioblastomacellsdeathupregulationofp53andtriggerslowneurotoxicity
AT battastinianamariaoliveira phosphatidylinositol3kinaseaktpathwayinhibitionbydoxazosinpromotesglioblastomacellsdeathupregulationofp53andtriggerslowneurotoxicity
AT salbegochristiannegazzana phosphatidylinositol3kinaseaktpathwayinhibitionbydoxazosinpromotesglioblastomacellsdeathupregulationofp53andtriggerslowneurotoxicity