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PDGFR and IGF-1R Inhibitors Induce a G2/M Arrest and Subsequent Cell Death in Human Glioblastoma Cell Lines

Glioblastomas are highly resistant to radiation and chemotherapy. Currently, there are no effective therapies for this type of tumor. Signaling mechanisms initiated by PDGFR and IGF-1R are important in glioblastoma, and inhibition of the signal transduction pathways initiated by these receptors coul...

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Autores principales: Carrasco-Garcia, Estefania, Martinez-Lacaci, Isabel, Mayor-López, Leticia, Tristante, Elena, Carballo-Santana, Mar, García-Morales, Pilar, Ventero Martin, Maria Paz, Fuentes-Baile, Maria, Rodriguez-Lescure, Álvaro, Saceda, Miguel
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6162497/
https://www.ncbi.nlm.nih.gov/pubmed/30200644
http://dx.doi.org/10.3390/cells7090131
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author Carrasco-Garcia, Estefania
Martinez-Lacaci, Isabel
Mayor-López, Leticia
Tristante, Elena
Carballo-Santana, Mar
García-Morales, Pilar
Ventero Martin, Maria Paz
Fuentes-Baile, Maria
Rodriguez-Lescure, Álvaro
Saceda, Miguel
author_facet Carrasco-Garcia, Estefania
Martinez-Lacaci, Isabel
Mayor-López, Leticia
Tristante, Elena
Carballo-Santana, Mar
García-Morales, Pilar
Ventero Martin, Maria Paz
Fuentes-Baile, Maria
Rodriguez-Lescure, Álvaro
Saceda, Miguel
author_sort Carrasco-Garcia, Estefania
collection PubMed
description Glioblastomas are highly resistant to radiation and chemotherapy. Currently, there are no effective therapies for this type of tumor. Signaling mechanisms initiated by PDGFR and IGF-1R are important in glioblastoma, and inhibition of the signal transduction pathways initiated by these receptors could be a useful alternative strategy for glioblastoma treatment. We have studied the effects of the PDGFR inhibitor JNJ-10198409 (JNJ) and the IGF-1R inhibitor picropodophyllin (PPP) in glioblastoma cell lines as well as in primary cultures derived from patients affected by this type of tumor. JNJ and PPP treatment blocked PDGFR and IGF-1R signaling respectively and reduced Akt and Erk 1/2 phosphorylation. Both inhibitors diminished cell proliferation, inducing a G2/M block of the cell cycle. Cell death induced by JNJ was caspase-dependent, Annexin-V positive and caused PARP cleavage, especially in T98 cells, suggesting an apoptotic mechanism. However, cell death induced by PPP was not completely inhibited by caspase inhibitors in all cell lines apart from LN-229 cells, indicating a caspase-independent mechanism. Several inhibitors targeted against different cell death pathways could not block this caspase-independent component, which may be a non-programmed necrotic mechanism. Apoptotic arrays performed in T98 and LN-229 cells upon JNJ and PPP treatment revealed that procaspase 3 levels were augmented by both drugs in T98 cells and only by JNJ in LN229-cells. Furthermore, XIAP and survivin levels were much higher in LN-229 cells than in T98 cells, revealing that LN-229 cells are more susceptible to undergo caspase-independent cell death mechanisms. JNJ and PPP combination was more effective than each treatment alone.
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spelling pubmed-61624972018-10-02 PDGFR and IGF-1R Inhibitors Induce a G2/M Arrest and Subsequent Cell Death in Human Glioblastoma Cell Lines Carrasco-Garcia, Estefania Martinez-Lacaci, Isabel Mayor-López, Leticia Tristante, Elena Carballo-Santana, Mar García-Morales, Pilar Ventero Martin, Maria Paz Fuentes-Baile, Maria Rodriguez-Lescure, Álvaro Saceda, Miguel Cells Article Glioblastomas are highly resistant to radiation and chemotherapy. Currently, there are no effective therapies for this type of tumor. Signaling mechanisms initiated by PDGFR and IGF-1R are important in glioblastoma, and inhibition of the signal transduction pathways initiated by these receptors could be a useful alternative strategy for glioblastoma treatment. We have studied the effects of the PDGFR inhibitor JNJ-10198409 (JNJ) and the IGF-1R inhibitor picropodophyllin (PPP) in glioblastoma cell lines as well as in primary cultures derived from patients affected by this type of tumor. JNJ and PPP treatment blocked PDGFR and IGF-1R signaling respectively and reduced Akt and Erk 1/2 phosphorylation. Both inhibitors diminished cell proliferation, inducing a G2/M block of the cell cycle. Cell death induced by JNJ was caspase-dependent, Annexin-V positive and caused PARP cleavage, especially in T98 cells, suggesting an apoptotic mechanism. However, cell death induced by PPP was not completely inhibited by caspase inhibitors in all cell lines apart from LN-229 cells, indicating a caspase-independent mechanism. Several inhibitors targeted against different cell death pathways could not block this caspase-independent component, which may be a non-programmed necrotic mechanism. Apoptotic arrays performed in T98 and LN-229 cells upon JNJ and PPP treatment revealed that procaspase 3 levels were augmented by both drugs in T98 cells and only by JNJ in LN229-cells. Furthermore, XIAP and survivin levels were much higher in LN-229 cells than in T98 cells, revealing that LN-229 cells are more susceptible to undergo caspase-independent cell death mechanisms. JNJ and PPP combination was more effective than each treatment alone. MDPI 2018-09-06 /pmc/articles/PMC6162497/ /pubmed/30200644 http://dx.doi.org/10.3390/cells7090131 Text en © 2018 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Carrasco-Garcia, Estefania
Martinez-Lacaci, Isabel
Mayor-López, Leticia
Tristante, Elena
Carballo-Santana, Mar
García-Morales, Pilar
Ventero Martin, Maria Paz
Fuentes-Baile, Maria
Rodriguez-Lescure, Álvaro
Saceda, Miguel
PDGFR and IGF-1R Inhibitors Induce a G2/M Arrest and Subsequent Cell Death in Human Glioblastoma Cell Lines
title PDGFR and IGF-1R Inhibitors Induce a G2/M Arrest and Subsequent Cell Death in Human Glioblastoma Cell Lines
title_full PDGFR and IGF-1R Inhibitors Induce a G2/M Arrest and Subsequent Cell Death in Human Glioblastoma Cell Lines
title_fullStr PDGFR and IGF-1R Inhibitors Induce a G2/M Arrest and Subsequent Cell Death in Human Glioblastoma Cell Lines
title_full_unstemmed PDGFR and IGF-1R Inhibitors Induce a G2/M Arrest and Subsequent Cell Death in Human Glioblastoma Cell Lines
title_short PDGFR and IGF-1R Inhibitors Induce a G2/M Arrest and Subsequent Cell Death in Human Glioblastoma Cell Lines
title_sort pdgfr and igf-1r inhibitors induce a g2/m arrest and subsequent cell death in human glioblastoma cell lines
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6162497/
https://www.ncbi.nlm.nih.gov/pubmed/30200644
http://dx.doi.org/10.3390/cells7090131
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