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Expression of the progenitor marker NG2/CSPG4 predicts poor survival and resistance to ionising radiation in glioblastoma

Glioblastoma (GBM) is a highly aggressive brain tumour, where patients respond poorly to radiotherapy and exhibit dismal survival outcomes. The mechanisms of radioresistance are not completely understood. However, cancer cells with an immature stem-like phenotype are hypothesised to play a role in r...

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Autores principales: Svendsen, Agnete, Verhoeff, Joost J. C., Immervoll, Heike, Brøgger, Jan C., Kmiecik, Justyna, Poli, Aurelie, Netland, Inger A., Prestegarden, Lars, Planagumà, Jesús, Torsvik, Anja, Kjersem, Anneli Bohne, Sakariassen, Per Ø., Heggdal, Jan I., Van Furth, Wouter R., Bjerkvig, Rolf, Lund-Johansen, Morten, Enger, Per Ø., Felsberg, Joerg, Brons, Nicolaas H. C., Tronstad, Karl J., Waha, Andreas, Chekenya, Martha
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Springer-Verlag 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3185228/
https://www.ncbi.nlm.nih.gov/pubmed/21863242
http://dx.doi.org/10.1007/s00401-011-0867-2
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author Svendsen, Agnete
Verhoeff, Joost J. C.
Immervoll, Heike
Brøgger, Jan C.
Kmiecik, Justyna
Poli, Aurelie
Netland, Inger A.
Prestegarden, Lars
Planagumà, Jesús
Torsvik, Anja
Kjersem, Anneli Bohne
Sakariassen, Per Ø.
Heggdal, Jan I.
Van Furth, Wouter R.
Bjerkvig, Rolf
Lund-Johansen, Morten
Enger, Per Ø.
Felsberg, Joerg
Brons, Nicolaas H. C.
Tronstad, Karl J.
Waha, Andreas
Chekenya, Martha
author_facet Svendsen, Agnete
Verhoeff, Joost J. C.
Immervoll, Heike
Brøgger, Jan C.
Kmiecik, Justyna
Poli, Aurelie
Netland, Inger A.
Prestegarden, Lars
Planagumà, Jesús
Torsvik, Anja
Kjersem, Anneli Bohne
Sakariassen, Per Ø.
Heggdal, Jan I.
Van Furth, Wouter R.
Bjerkvig, Rolf
Lund-Johansen, Morten
Enger, Per Ø.
Felsberg, Joerg
Brons, Nicolaas H. C.
Tronstad, Karl J.
Waha, Andreas
Chekenya, Martha
author_sort Svendsen, Agnete
collection PubMed
description Glioblastoma (GBM) is a highly aggressive brain tumour, where patients respond poorly to radiotherapy and exhibit dismal survival outcomes. The mechanisms of radioresistance are not completely understood. However, cancer cells with an immature stem-like phenotype are hypothesised to play a role in radioresistance. Since the progenitor marker neuron-glial-2 (NG2) has been shown to regulate several aspects of GBM progression in experimental systems, we hypothesised that its expression would influence the survival of GBM patients. Quantification of NG2 expression in 74 GBM biopsies from newly diagnosed and untreated patients revealed that 50% express high NG2 levels on tumour cells and associated vessels, being associated with significantly shorter survival. This effect was independent of age at diagnosis, treatment received and hypermethylation of the O(6)-methylguanine methyltransferase (MGMT) DNA repair gene promoter. NG2 was frequently co-expressed with nestin and vimentin but rarely with CD133 and the NG2 positive tumour cells harboured genetic aberrations typical for GBM. 2D proteomics of 11 randomly selected biopsies revealed upregulation of an antioxidant, peroxiredoxin-1 (PRDX-1), in the shortest surviving patients. Expression of PRDX-1 was associated with significantly reduced products of oxidative stress. Furthermore, NG2 expressing GBM cells showed resistance to ionising radiation (IR), rapidly recognised DNA damage and effectuated cell cycle checkpoint signalling. PRDX-1 knockdown transiently slowed tumour growth rates and sensitised them to IR in vivo. Our data establish NG2 as an important prognostic factor for GBM patient survival, by mediating resistance to radiotherapy through induction of ROS scavenging enzymes and preferential DNA damage signalling. ELECTRONIC SUPPLEMENTARY MATERIAL: The online version of this article (doi:10.1007/s00401-011-0867-2) contains supplementary material, which is available to authorized users.
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spelling pubmed-31852282011-10-12 Expression of the progenitor marker NG2/CSPG4 predicts poor survival and resistance to ionising radiation in glioblastoma Svendsen, Agnete Verhoeff, Joost J. C. Immervoll, Heike Brøgger, Jan C. Kmiecik, Justyna Poli, Aurelie Netland, Inger A. Prestegarden, Lars Planagumà, Jesús Torsvik, Anja Kjersem, Anneli Bohne Sakariassen, Per Ø. Heggdal, Jan I. Van Furth, Wouter R. Bjerkvig, Rolf Lund-Johansen, Morten Enger, Per Ø. Felsberg, Joerg Brons, Nicolaas H. C. Tronstad, Karl J. Waha, Andreas Chekenya, Martha Acta Neuropathol Original Paper Glioblastoma (GBM) is a highly aggressive brain tumour, where patients respond poorly to radiotherapy and exhibit dismal survival outcomes. The mechanisms of radioresistance are not completely understood. However, cancer cells with an immature stem-like phenotype are hypothesised to play a role in radioresistance. Since the progenitor marker neuron-glial-2 (NG2) has been shown to regulate several aspects of GBM progression in experimental systems, we hypothesised that its expression would influence the survival of GBM patients. Quantification of NG2 expression in 74 GBM biopsies from newly diagnosed and untreated patients revealed that 50% express high NG2 levels on tumour cells and associated vessels, being associated with significantly shorter survival. This effect was independent of age at diagnosis, treatment received and hypermethylation of the O(6)-methylguanine methyltransferase (MGMT) DNA repair gene promoter. NG2 was frequently co-expressed with nestin and vimentin but rarely with CD133 and the NG2 positive tumour cells harboured genetic aberrations typical for GBM. 2D proteomics of 11 randomly selected biopsies revealed upregulation of an antioxidant, peroxiredoxin-1 (PRDX-1), in the shortest surviving patients. Expression of PRDX-1 was associated with significantly reduced products of oxidative stress. Furthermore, NG2 expressing GBM cells showed resistance to ionising radiation (IR), rapidly recognised DNA damage and effectuated cell cycle checkpoint signalling. PRDX-1 knockdown transiently slowed tumour growth rates and sensitised them to IR in vivo. Our data establish NG2 as an important prognostic factor for GBM patient survival, by mediating resistance to radiotherapy through induction of ROS scavenging enzymes and preferential DNA damage signalling. ELECTRONIC SUPPLEMENTARY MATERIAL: The online version of this article (doi:10.1007/s00401-011-0867-2) contains supplementary material, which is available to authorized users. Springer-Verlag 2011-08-24 2011 /pmc/articles/PMC3185228/ /pubmed/21863242 http://dx.doi.org/10.1007/s00401-011-0867-2 Text en © The Author(s) 2011 https://creativecommons.org/licenses/by-nc/4.0/ This article is distributed under the terms of the Creative Commons Attribution Noncommercial License which permits any noncommercial use, distribution, and reproduction in any medium, provided the original author(s) and source are credited.
spellingShingle Original Paper
Svendsen, Agnete
Verhoeff, Joost J. C.
Immervoll, Heike
Brøgger, Jan C.
Kmiecik, Justyna
Poli, Aurelie
Netland, Inger A.
Prestegarden, Lars
Planagumà, Jesús
Torsvik, Anja
Kjersem, Anneli Bohne
Sakariassen, Per Ø.
Heggdal, Jan I.
Van Furth, Wouter R.
Bjerkvig, Rolf
Lund-Johansen, Morten
Enger, Per Ø.
Felsberg, Joerg
Brons, Nicolaas H. C.
Tronstad, Karl J.
Waha, Andreas
Chekenya, Martha
Expression of the progenitor marker NG2/CSPG4 predicts poor survival and resistance to ionising radiation in glioblastoma
title Expression of the progenitor marker NG2/CSPG4 predicts poor survival and resistance to ionising radiation in glioblastoma
title_full Expression of the progenitor marker NG2/CSPG4 predicts poor survival and resistance to ionising radiation in glioblastoma
title_fullStr Expression of the progenitor marker NG2/CSPG4 predicts poor survival and resistance to ionising radiation in glioblastoma
title_full_unstemmed Expression of the progenitor marker NG2/CSPG4 predicts poor survival and resistance to ionising radiation in glioblastoma
title_short Expression of the progenitor marker NG2/CSPG4 predicts poor survival and resistance to ionising radiation in glioblastoma
title_sort expression of the progenitor marker ng2/cspg4 predicts poor survival and resistance to ionising radiation in glioblastoma
topic Original Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3185228/
https://www.ncbi.nlm.nih.gov/pubmed/21863242
http://dx.doi.org/10.1007/s00401-011-0867-2
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