Cargando…

A Radial Glia Gene Marker, Fatty Acid Binding Protein 7 (FABP7), Is Involved in Proliferation and Invasion of Glioblastoma Cells

Glioblastoma multiforme (GBM) is among the most deadly cancers. A number of studies suggest that a fraction of tumor cells with stem cell features (Glioma Stem-like Cells, GSC) might be responsible for GBM recurrence and aggressiveness. GSC similarly to normal neural stem cells, can form neurosphere...

Descripción completa

Detalles Bibliográficos
Autores principales: De Rosa, Antonella, Pellegatta, Serena, Rossi, Marco, Tunici, Patrizia, Magnoni, Letizia, Speranza, Maria Carmela, Malusa, Federico, Miragliotta, Vincenzo, Mori, Elisa, Finocchiaro, Gaetano, Bakker, Annette
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3528762/
https://www.ncbi.nlm.nih.gov/pubmed/23284888
http://dx.doi.org/10.1371/journal.pone.0052113
_version_ 1782253865660317696
author De Rosa, Antonella
Pellegatta, Serena
Rossi, Marco
Tunici, Patrizia
Magnoni, Letizia
Speranza, Maria Carmela
Malusa, Federico
Miragliotta, Vincenzo
Mori, Elisa
Finocchiaro, Gaetano
Bakker, Annette
author_facet De Rosa, Antonella
Pellegatta, Serena
Rossi, Marco
Tunici, Patrizia
Magnoni, Letizia
Speranza, Maria Carmela
Malusa, Federico
Miragliotta, Vincenzo
Mori, Elisa
Finocchiaro, Gaetano
Bakker, Annette
author_sort De Rosa, Antonella
collection PubMed
description Glioblastoma multiforme (GBM) is among the most deadly cancers. A number of studies suggest that a fraction of tumor cells with stem cell features (Glioma Stem-like Cells, GSC) might be responsible for GBM recurrence and aggressiveness. GSC similarly to normal neural stem cells, can form neurospheres (NS) in vitro, and seem to mirror the genetic features of the original tumor better than glioma cells growing adherently in the presence of serum. Using cDNA microarray analysis we identified a number of relevant genes for glioma biology that are differentially expressed in adherent cells and neurospheres derived from the same tumor. Fatty acid-binding protein 7 (FABP7) was identified as one of the most highly expressed genes in NS compared to their adherent counterpart. We found that down-regulation of FABP7 expression in NS by small interfering RNAs significantly reduced cell proliferation and migration. We also evaluated the potential involvement of FABP7 in response to radiotherapy, as this treatment may cause increased tumor infiltration. Migration of irradiated NS was associated to increased expression of FABP7. In agreement with this, in vivo reduced tumorigenicity of GBM cells with down-regulated expression of FABP7 was associated to decreased expression of the migration marker doublecortin. Notably, we observed that PPAR antagonists affect FABP7 expression and decrease the migration capability of NS after irradiation. As a whole, the data emphasize the role of FABP7 expression in GBM migration and provide translational hints on the timing of treatment with anti-FABP7 agents like PPAR antagonists during GBM evolution.
format Online
Article
Text
id pubmed-3528762
institution National Center for Biotechnology Information
language English
publishDate 2012
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-35287622013-01-02 A Radial Glia Gene Marker, Fatty Acid Binding Protein 7 (FABP7), Is Involved in Proliferation and Invasion of Glioblastoma Cells De Rosa, Antonella Pellegatta, Serena Rossi, Marco Tunici, Patrizia Magnoni, Letizia Speranza, Maria Carmela Malusa, Federico Miragliotta, Vincenzo Mori, Elisa Finocchiaro, Gaetano Bakker, Annette PLoS One Research Article Glioblastoma multiforme (GBM) is among the most deadly cancers. A number of studies suggest that a fraction of tumor cells with stem cell features (Glioma Stem-like Cells, GSC) might be responsible for GBM recurrence and aggressiveness. GSC similarly to normal neural stem cells, can form neurospheres (NS) in vitro, and seem to mirror the genetic features of the original tumor better than glioma cells growing adherently in the presence of serum. Using cDNA microarray analysis we identified a number of relevant genes for glioma biology that are differentially expressed in adherent cells and neurospheres derived from the same tumor. Fatty acid-binding protein 7 (FABP7) was identified as one of the most highly expressed genes in NS compared to their adherent counterpart. We found that down-regulation of FABP7 expression in NS by small interfering RNAs significantly reduced cell proliferation and migration. We also evaluated the potential involvement of FABP7 in response to radiotherapy, as this treatment may cause increased tumor infiltration. Migration of irradiated NS was associated to increased expression of FABP7. In agreement with this, in vivo reduced tumorigenicity of GBM cells with down-regulated expression of FABP7 was associated to decreased expression of the migration marker doublecortin. Notably, we observed that PPAR antagonists affect FABP7 expression and decrease the migration capability of NS after irradiation. As a whole, the data emphasize the role of FABP7 expression in GBM migration and provide translational hints on the timing of treatment with anti-FABP7 agents like PPAR antagonists during GBM evolution. Public Library of Science 2012-12-21 /pmc/articles/PMC3528762/ /pubmed/23284888 http://dx.doi.org/10.1371/journal.pone.0052113 Text en © 2012 De Rosa 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
De Rosa, Antonella
Pellegatta, Serena
Rossi, Marco
Tunici, Patrizia
Magnoni, Letizia
Speranza, Maria Carmela
Malusa, Federico
Miragliotta, Vincenzo
Mori, Elisa
Finocchiaro, Gaetano
Bakker, Annette
A Radial Glia Gene Marker, Fatty Acid Binding Protein 7 (FABP7), Is Involved in Proliferation and Invasion of Glioblastoma Cells
title A Radial Glia Gene Marker, Fatty Acid Binding Protein 7 (FABP7), Is Involved in Proliferation and Invasion of Glioblastoma Cells
title_full A Radial Glia Gene Marker, Fatty Acid Binding Protein 7 (FABP7), Is Involved in Proliferation and Invasion of Glioblastoma Cells
title_fullStr A Radial Glia Gene Marker, Fatty Acid Binding Protein 7 (FABP7), Is Involved in Proliferation and Invasion of Glioblastoma Cells
title_full_unstemmed A Radial Glia Gene Marker, Fatty Acid Binding Protein 7 (FABP7), Is Involved in Proliferation and Invasion of Glioblastoma Cells
title_short A Radial Glia Gene Marker, Fatty Acid Binding Protein 7 (FABP7), Is Involved in Proliferation and Invasion of Glioblastoma Cells
title_sort radial glia gene marker, fatty acid binding protein 7 (fabp7), is involved in proliferation and invasion of glioblastoma cells
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3528762/
https://www.ncbi.nlm.nih.gov/pubmed/23284888
http://dx.doi.org/10.1371/journal.pone.0052113
work_keys_str_mv AT derosaantonella aradialgliagenemarkerfattyacidbindingprotein7fabp7isinvolvedinproliferationandinvasionofglioblastomacells
AT pellegattaserena aradialgliagenemarkerfattyacidbindingprotein7fabp7isinvolvedinproliferationandinvasionofglioblastomacells
AT rossimarco aradialgliagenemarkerfattyacidbindingprotein7fabp7isinvolvedinproliferationandinvasionofglioblastomacells
AT tunicipatrizia aradialgliagenemarkerfattyacidbindingprotein7fabp7isinvolvedinproliferationandinvasionofglioblastomacells
AT magnoniletizia aradialgliagenemarkerfattyacidbindingprotein7fabp7isinvolvedinproliferationandinvasionofglioblastomacells
AT speranzamariacarmela aradialgliagenemarkerfattyacidbindingprotein7fabp7isinvolvedinproliferationandinvasionofglioblastomacells
AT malusafederico aradialgliagenemarkerfattyacidbindingprotein7fabp7isinvolvedinproliferationandinvasionofglioblastomacells
AT miragliottavincenzo aradialgliagenemarkerfattyacidbindingprotein7fabp7isinvolvedinproliferationandinvasionofglioblastomacells
AT morielisa aradialgliagenemarkerfattyacidbindingprotein7fabp7isinvolvedinproliferationandinvasionofglioblastomacells
AT finocchiarogaetano aradialgliagenemarkerfattyacidbindingprotein7fabp7isinvolvedinproliferationandinvasionofglioblastomacells
AT bakkerannette aradialgliagenemarkerfattyacidbindingprotein7fabp7isinvolvedinproliferationandinvasionofglioblastomacells
AT derosaantonella radialgliagenemarkerfattyacidbindingprotein7fabp7isinvolvedinproliferationandinvasionofglioblastomacells
AT pellegattaserena radialgliagenemarkerfattyacidbindingprotein7fabp7isinvolvedinproliferationandinvasionofglioblastomacells
AT rossimarco radialgliagenemarkerfattyacidbindingprotein7fabp7isinvolvedinproliferationandinvasionofglioblastomacells
AT tunicipatrizia radialgliagenemarkerfattyacidbindingprotein7fabp7isinvolvedinproliferationandinvasionofglioblastomacells
AT magnoniletizia radialgliagenemarkerfattyacidbindingprotein7fabp7isinvolvedinproliferationandinvasionofglioblastomacells
AT speranzamariacarmela radialgliagenemarkerfattyacidbindingprotein7fabp7isinvolvedinproliferationandinvasionofglioblastomacells
AT malusafederico radialgliagenemarkerfattyacidbindingprotein7fabp7isinvolvedinproliferationandinvasionofglioblastomacells
AT miragliottavincenzo radialgliagenemarkerfattyacidbindingprotein7fabp7isinvolvedinproliferationandinvasionofglioblastomacells
AT morielisa radialgliagenemarkerfattyacidbindingprotein7fabp7isinvolvedinproliferationandinvasionofglioblastomacells
AT finocchiarogaetano radialgliagenemarkerfattyacidbindingprotein7fabp7isinvolvedinproliferationandinvasionofglioblastomacells
AT bakkerannette radialgliagenemarkerfattyacidbindingprotein7fabp7isinvolvedinproliferationandinvasionofglioblastomacells