Cargando…

Arsenic Trioxide and (−)-Gossypol Synergistically Target Glioma Stem-Like Cells via Inhibition of Hedgehog and Notch Signaling

Glioblastoma is one of the deadliest malignancies and is virtually incurable. Accumulating evidence indicates that a small population of cells with a stem-like phenotype is the major culprit of tumor recurrence. Enhanced DNA repair capacity and expression of stemness marker genes are the main charac...

Descripción completa

Detalles Bibliográficos
Autores principales: Linder, Benedikt, Wehle, Andrej, Hehlgans, Stephanie, Bonn, Florian, Dikic, Ivan, Rödel, Franz, Seifert, Volker, Kögel, Donat
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6468469/
https://www.ncbi.nlm.nih.gov/pubmed/30871073
http://dx.doi.org/10.3390/cancers11030350
_version_ 1783411441178509312
author Linder, Benedikt
Wehle, Andrej
Hehlgans, Stephanie
Bonn, Florian
Dikic, Ivan
Rödel, Franz
Seifert, Volker
Kögel, Donat
author_facet Linder, Benedikt
Wehle, Andrej
Hehlgans, Stephanie
Bonn, Florian
Dikic, Ivan
Rödel, Franz
Seifert, Volker
Kögel, Donat
author_sort Linder, Benedikt
collection PubMed
description Glioblastoma is one of the deadliest malignancies and is virtually incurable. Accumulating evidence indicates that a small population of cells with a stem-like phenotype is the major culprit of tumor recurrence. Enhanced DNA repair capacity and expression of stemness marker genes are the main characteristics of these cells. Elimination of this population might delay or prevent tumor recurrence following radiochemotherapy. The aim of this study was to analyze whether interference with the Hedgehog signaling (Hh) pathway or combined Hh/Notch blockade using small-molecule inhibitors can efficiently target these cancer stem cells and sensitize them to therapy. Using tumor sphere lines and primary patient-derived glioma cultures we demonstrate that the Hh pathway inhibitor GANT61 (GANT) and the arsenic trioxide (ATO)-mediated Hh/Notch inhibition are capable to synergistically induce cell death in combination with the natural anticancer agent (−)-Gossypol (Gos). Only ATO in combination with Gos also strongly decreased stemness marker expression and prevented sphere formation and recovery. These synergistic effects were associated with distinct proteomic changes indicating diminished DNA repair and markedly reduced stemness. Finally, using an organotypic brain slice transplantation model, we show that combined ATO/Gos treatment elicits strong growth inhibition or even complete elimination of tumors. Collectively, our data show for the first time that ATO and Gos, two drugs that can be used in the clinic, represent a promising targeted therapy approach for the synergistic elimination of glioma stem-like cells.
format Online
Article
Text
id pubmed-6468469
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-64684692019-04-24 Arsenic Trioxide and (−)-Gossypol Synergistically Target Glioma Stem-Like Cells via Inhibition of Hedgehog and Notch Signaling Linder, Benedikt Wehle, Andrej Hehlgans, Stephanie Bonn, Florian Dikic, Ivan Rödel, Franz Seifert, Volker Kögel, Donat Cancers (Basel) Article Glioblastoma is one of the deadliest malignancies and is virtually incurable. Accumulating evidence indicates that a small population of cells with a stem-like phenotype is the major culprit of tumor recurrence. Enhanced DNA repair capacity and expression of stemness marker genes are the main characteristics of these cells. Elimination of this population might delay or prevent tumor recurrence following radiochemotherapy. The aim of this study was to analyze whether interference with the Hedgehog signaling (Hh) pathway or combined Hh/Notch blockade using small-molecule inhibitors can efficiently target these cancer stem cells and sensitize them to therapy. Using tumor sphere lines and primary patient-derived glioma cultures we demonstrate that the Hh pathway inhibitor GANT61 (GANT) and the arsenic trioxide (ATO)-mediated Hh/Notch inhibition are capable to synergistically induce cell death in combination with the natural anticancer agent (−)-Gossypol (Gos). Only ATO in combination with Gos also strongly decreased stemness marker expression and prevented sphere formation and recovery. These synergistic effects were associated with distinct proteomic changes indicating diminished DNA repair and markedly reduced stemness. Finally, using an organotypic brain slice transplantation model, we show that combined ATO/Gos treatment elicits strong growth inhibition or even complete elimination of tumors. Collectively, our data show for the first time that ATO and Gos, two drugs that can be used in the clinic, represent a promising targeted therapy approach for the synergistic elimination of glioma stem-like cells. MDPI 2019-03-12 /pmc/articles/PMC6468469/ /pubmed/30871073 http://dx.doi.org/10.3390/cancers11030350 Text en © 2019 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
Linder, Benedikt
Wehle, Andrej
Hehlgans, Stephanie
Bonn, Florian
Dikic, Ivan
Rödel, Franz
Seifert, Volker
Kögel, Donat
Arsenic Trioxide and (−)-Gossypol Synergistically Target Glioma Stem-Like Cells via Inhibition of Hedgehog and Notch Signaling
title Arsenic Trioxide and (−)-Gossypol Synergistically Target Glioma Stem-Like Cells via Inhibition of Hedgehog and Notch Signaling
title_full Arsenic Trioxide and (−)-Gossypol Synergistically Target Glioma Stem-Like Cells via Inhibition of Hedgehog and Notch Signaling
title_fullStr Arsenic Trioxide and (−)-Gossypol Synergistically Target Glioma Stem-Like Cells via Inhibition of Hedgehog and Notch Signaling
title_full_unstemmed Arsenic Trioxide and (−)-Gossypol Synergistically Target Glioma Stem-Like Cells via Inhibition of Hedgehog and Notch Signaling
title_short Arsenic Trioxide and (−)-Gossypol Synergistically Target Glioma Stem-Like Cells via Inhibition of Hedgehog and Notch Signaling
title_sort arsenic trioxide and (−)-gossypol synergistically target glioma stem-like cells via inhibition of hedgehog and notch signaling
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6468469/
https://www.ncbi.nlm.nih.gov/pubmed/30871073
http://dx.doi.org/10.3390/cancers11030350
work_keys_str_mv AT linderbenedikt arsenictrioxideandgossypolsynergisticallytargetgliomastemlikecellsviainhibitionofhedgehogandnotchsignaling
AT wehleandrej arsenictrioxideandgossypolsynergisticallytargetgliomastemlikecellsviainhibitionofhedgehogandnotchsignaling
AT hehlgansstephanie arsenictrioxideandgossypolsynergisticallytargetgliomastemlikecellsviainhibitionofhedgehogandnotchsignaling
AT bonnflorian arsenictrioxideandgossypolsynergisticallytargetgliomastemlikecellsviainhibitionofhedgehogandnotchsignaling
AT dikicivan arsenictrioxideandgossypolsynergisticallytargetgliomastemlikecellsviainhibitionofhedgehogandnotchsignaling
AT rodelfranz arsenictrioxideandgossypolsynergisticallytargetgliomastemlikecellsviainhibitionofhedgehogandnotchsignaling
AT seifertvolker arsenictrioxideandgossypolsynergisticallytargetgliomastemlikecellsviainhibitionofhedgehogandnotchsignaling
AT kogeldonat arsenictrioxideandgossypolsynergisticallytargetgliomastemlikecellsviainhibitionofhedgehogandnotchsignaling