Effects of PPARα inhibition in head and neck paraganglioma cells.

Head and neck paragangliomas (HNPGLs) are rare tumors that may cause important morbidity, because of their tendency to infiltrate the skull base. At present, surgery is the only therapeutic option, but radical removal may be difficult or impossible. Thus, effective targets and molecules for HNPGL tr...

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Main Authors: Rosalba Florio, Laura De Lellis, Viviana di Giacomo, Maria Carmela Di Marcantonio, Loredana Cristiano, Mariangela Basile, Fabio Verginelli, Delfina Verzilli, Alessandra Ammazzalorso, Sampath Chandra Prasad, Amelia Cataldi, Mario Sanna, Annamaria Cimini, Renato Mariani-Costantini, Gabriella Mincione, Alessandro Cama
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2017-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC5464765?pdf=render
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spelling doaj-161c92b607d44afa97c31b2a13c450b42020-11-24T20:50:02ZengPublic Library of Science (PLoS)PLoS ONE1932-62032017-01-01126e017899510.1371/journal.pone.0178995Effects of PPARα inhibition in head and neck paraganglioma cells.Rosalba FlorioLaura De LellisViviana di GiacomoMaria Carmela Di MarcantonioLoredana CristianoMariangela BasileFabio VerginelliDelfina VerzilliAlessandra AmmazzalorsoSampath Chandra PrasadAmelia CataldiMario SannaAnnamaria CiminiRenato Mariani-CostantiniGabriella MincioneAlessandro CamaHead and neck paragangliomas (HNPGLs) are rare tumors that may cause important morbidity, because of their tendency to infiltrate the skull base. At present, surgery is the only therapeutic option, but radical removal may be difficult or impossible. Thus, effective targets and molecules for HNPGL treatment need to be identified. However, the lack of cellular models for this rare tumor hampers this task. PPARα receptor activation was reported in several tumors and this receptor appears to be a promising therapeutic target in different malignancies. Considering that the role of PPARα in HNPGLs was never studied before, we analyzed the potential of modulating PPARα in a unique model of HNPGL cells. We observed an intense immunoreactivity for PPARα in HNPGL tumors, suggesting that this receptor has an important role in HNPGL. A pronounced nuclear expression of PPARα was also confirmed in HNPGL-derived cells. The specific PPARα agonist WY14643 had no effect on HNPGL cell viability, whereas the specific PPARα antagonist GW6471 reduced HNPGL cell viability and growth by inducing cell cycle arrest and caspase-dependent apoptosis. GW6471 treatment was associated with a marked decrease of CDK4, cyclin D3 and cyclin B1 protein expression, along with an increased expression of p21 in HNPGL cells. Moreover, GW6471 drastically impaired clonogenic activity of HNPGL cells, with a less marked effect on cell migration. Notably, the effects of GW6471 on HNPGL cells were associated with the inhibition of the PI3K/GSK3β/β-catenin signaling pathway. In conclusion, the PPARα antagonist GW6471 reduces HNPGL cell viability, interfering with cell cycle and inducing apoptosis. The mechanisms affecting HNPGL cell viability involve repression of the PI3K/GSK3β/β-catenin pathway. Therefore, PPARα could represent a novel therapeutic target for HNPGL.http://europepmc.org/articles/PMC5464765?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Rosalba Florio
Laura De Lellis
Viviana di Giacomo
Maria Carmela Di Marcantonio
Loredana Cristiano
Mariangela Basile
Fabio Verginelli
Delfina Verzilli
Alessandra Ammazzalorso
Sampath Chandra Prasad
Amelia Cataldi
Mario Sanna
Annamaria Cimini
Renato Mariani-Costantini
Gabriella Mincione
Alessandro Cama
spellingShingle Rosalba Florio
Laura De Lellis
Viviana di Giacomo
Maria Carmela Di Marcantonio
Loredana Cristiano
Mariangela Basile
Fabio Verginelli
Delfina Verzilli
Alessandra Ammazzalorso
Sampath Chandra Prasad
Amelia Cataldi
Mario Sanna
Annamaria Cimini
Renato Mariani-Costantini
Gabriella Mincione
Alessandro Cama
Effects of PPARα inhibition in head and neck paraganglioma cells.
PLoS ONE
author_facet Rosalba Florio
Laura De Lellis
Viviana di Giacomo
Maria Carmela Di Marcantonio
Loredana Cristiano
Mariangela Basile
Fabio Verginelli
Delfina Verzilli
Alessandra Ammazzalorso
Sampath Chandra Prasad
Amelia Cataldi
Mario Sanna
Annamaria Cimini
Renato Mariani-Costantini
Gabriella Mincione
Alessandro Cama
author_sort Rosalba Florio
title Effects of PPARα inhibition in head and neck paraganglioma cells.
title_short Effects of PPARα inhibition in head and neck paraganglioma cells.
title_full Effects of PPARα inhibition in head and neck paraganglioma cells.
title_fullStr Effects of PPARα inhibition in head and neck paraganglioma cells.
title_full_unstemmed Effects of PPARα inhibition in head and neck paraganglioma cells.
title_sort effects of pparα inhibition in head and neck paraganglioma cells.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2017-01-01
description Head and neck paragangliomas (HNPGLs) are rare tumors that may cause important morbidity, because of their tendency to infiltrate the skull base. At present, surgery is the only therapeutic option, but radical removal may be difficult or impossible. Thus, effective targets and molecules for HNPGL treatment need to be identified. However, the lack of cellular models for this rare tumor hampers this task. PPARα receptor activation was reported in several tumors and this receptor appears to be a promising therapeutic target in different malignancies. Considering that the role of PPARα in HNPGLs was never studied before, we analyzed the potential of modulating PPARα in a unique model of HNPGL cells. We observed an intense immunoreactivity for PPARα in HNPGL tumors, suggesting that this receptor has an important role in HNPGL. A pronounced nuclear expression of PPARα was also confirmed in HNPGL-derived cells. The specific PPARα agonist WY14643 had no effect on HNPGL cell viability, whereas the specific PPARα antagonist GW6471 reduced HNPGL cell viability and growth by inducing cell cycle arrest and caspase-dependent apoptosis. GW6471 treatment was associated with a marked decrease of CDK4, cyclin D3 and cyclin B1 protein expression, along with an increased expression of p21 in HNPGL cells. Moreover, GW6471 drastically impaired clonogenic activity of HNPGL cells, with a less marked effect on cell migration. Notably, the effects of GW6471 on HNPGL cells were associated with the inhibition of the PI3K/GSK3β/β-catenin signaling pathway. In conclusion, the PPARα antagonist GW6471 reduces HNPGL cell viability, interfering with cell cycle and inducing apoptosis. The mechanisms affecting HNPGL cell viability involve repression of the PI3K/GSK3β/β-catenin pathway. Therefore, PPARα could represent a novel therapeutic target for HNPGL.
url http://europepmc.org/articles/PMC5464765?pdf=render
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