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Glioblastoma-derived spheroid cultures as an experimental model for analysis of EGFR anomalies

Glioblastoma cell cultures in vitro are frequently used for investigations on the biology of tumors or new therapeutic approaches. Recent reports have emphasized the importance of cell culture type for maintenance of tumor original features. Nevertheless, the ability of GBM cells to preserve EGFR ov...

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Autores principales: Witusik-Perkowska, Monika, Rieske, Piotr, Hułas-Bigoszewska, Krystyna, Zakrzewska, Magdalena, Stawski, Robert, Kulczycka-Wojdala, Dominika, Bieńkowski, Michał, Stoczyńska-Fidelus, Ewelina, Grešner, Sylwia M., Piaskowski, Sylwester, Jaskólski, Dariusz J., Papierz, Wielisław, Zakrzewski, Krzysztof, Kolasa, Maciej, Ironside, James W., Liberski, Paweł P.
Formato: Texto
Lenguaje:English
Publicado: Springer US 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3089721/
https://www.ncbi.nlm.nih.gov/pubmed/20803305
http://dx.doi.org/10.1007/s11060-010-0352-0
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author Witusik-Perkowska, Monika
Rieske, Piotr
Hułas-Bigoszewska, Krystyna
Zakrzewska, Magdalena
Stawski, Robert
Kulczycka-Wojdala, Dominika
Bieńkowski, Michał
Stoczyńska-Fidelus, Ewelina
Grešner, Sylwia M.
Piaskowski, Sylwester
Jaskólski, Dariusz J.
Papierz, Wielisław
Zakrzewski, Krzysztof
Kolasa, Maciej
Ironside, James W.
Liberski, Paweł P.
author_facet Witusik-Perkowska, Monika
Rieske, Piotr
Hułas-Bigoszewska, Krystyna
Zakrzewska, Magdalena
Stawski, Robert
Kulczycka-Wojdala, Dominika
Bieńkowski, Michał
Stoczyńska-Fidelus, Ewelina
Grešner, Sylwia M.
Piaskowski, Sylwester
Jaskólski, Dariusz J.
Papierz, Wielisław
Zakrzewski, Krzysztof
Kolasa, Maciej
Ironside, James W.
Liberski, Paweł P.
author_sort Witusik-Perkowska, Monika
collection PubMed
description Glioblastoma cell cultures in vitro are frequently used for investigations on the biology of tumors or new therapeutic approaches. Recent reports have emphasized the importance of cell culture type for maintenance of tumor original features. Nevertheless, the ability of GBM cells to preserve EGFR overdosage in vitro remains controversial. Our experimental approach was based on quantitative analysis of EGFR gene dosage in vitro both at DNA and mRNA level. Real-time PCR data were verified with a FISH method allowing for a distinction between EGFR amplification and polysomy 7. We demonstrated that EGFR amplification accompanied by EGFRwt overexpression was maintained in spheroids, but these phenomena were gradually lost in adherent culture. We noticed a rapid decrease of EGFR overdosage already at the initial stage of cell culture establishment. In contrast to EGFR amplification, the maintenance of polysomy 7 resulted in EGFR locus gain and stabilization even in long-term adherent culture in serum presence. Surprisingly, the EGFRwt expression pattern did not reflect the latter phenomenon and we observed no overexpression of the tested gene. Moreover, quantitative analysis demonstrated that expression of the truncated variant of receptor—EGFRvIII was preserved in GBM-derived spheroids at a level comparable to the initial tumor tissue. Our findings are especially important in the light of research using glioblastoma culture as the experimental model for testing novel EGFR-targeted therapeutics in vitro, with special emphasis on the most common mutated form of receptor—EGFRvIII.
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spelling pubmed-30897212011-06-06 Glioblastoma-derived spheroid cultures as an experimental model for analysis of EGFR anomalies Witusik-Perkowska, Monika Rieske, Piotr Hułas-Bigoszewska, Krystyna Zakrzewska, Magdalena Stawski, Robert Kulczycka-Wojdala, Dominika Bieńkowski, Michał Stoczyńska-Fidelus, Ewelina Grešner, Sylwia M. Piaskowski, Sylwester Jaskólski, Dariusz J. Papierz, Wielisław Zakrzewski, Krzysztof Kolasa, Maciej Ironside, James W. Liberski, Paweł P. J Neurooncol Laboratory Investigation - Human/Animal Tissue Glioblastoma cell cultures in vitro are frequently used for investigations on the biology of tumors or new therapeutic approaches. Recent reports have emphasized the importance of cell culture type for maintenance of tumor original features. Nevertheless, the ability of GBM cells to preserve EGFR overdosage in vitro remains controversial. Our experimental approach was based on quantitative analysis of EGFR gene dosage in vitro both at DNA and mRNA level. Real-time PCR data were verified with a FISH method allowing for a distinction between EGFR amplification and polysomy 7. We demonstrated that EGFR amplification accompanied by EGFRwt overexpression was maintained in spheroids, but these phenomena were gradually lost in adherent culture. We noticed a rapid decrease of EGFR overdosage already at the initial stage of cell culture establishment. In contrast to EGFR amplification, the maintenance of polysomy 7 resulted in EGFR locus gain and stabilization even in long-term adherent culture in serum presence. Surprisingly, the EGFRwt expression pattern did not reflect the latter phenomenon and we observed no overexpression of the tested gene. Moreover, quantitative analysis demonstrated that expression of the truncated variant of receptor—EGFRvIII was preserved in GBM-derived spheroids at a level comparable to the initial tumor tissue. Our findings are especially important in the light of research using glioblastoma culture as the experimental model for testing novel EGFR-targeted therapeutics in vitro, with special emphasis on the most common mutated form of receptor—EGFRvIII. Springer US 2010-08-29 2011 /pmc/articles/PMC3089721/ /pubmed/20803305 http://dx.doi.org/10.1007/s11060-010-0352-0 Text en © The Author(s) 2010 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 Laboratory Investigation - Human/Animal Tissue
Witusik-Perkowska, Monika
Rieske, Piotr
Hułas-Bigoszewska, Krystyna
Zakrzewska, Magdalena
Stawski, Robert
Kulczycka-Wojdala, Dominika
Bieńkowski, Michał
Stoczyńska-Fidelus, Ewelina
Grešner, Sylwia M.
Piaskowski, Sylwester
Jaskólski, Dariusz J.
Papierz, Wielisław
Zakrzewski, Krzysztof
Kolasa, Maciej
Ironside, James W.
Liberski, Paweł P.
Glioblastoma-derived spheroid cultures as an experimental model for analysis of EGFR anomalies
title Glioblastoma-derived spheroid cultures as an experimental model for analysis of EGFR anomalies
title_full Glioblastoma-derived spheroid cultures as an experimental model for analysis of EGFR anomalies
title_fullStr Glioblastoma-derived spheroid cultures as an experimental model for analysis of EGFR anomalies
title_full_unstemmed Glioblastoma-derived spheroid cultures as an experimental model for analysis of EGFR anomalies
title_short Glioblastoma-derived spheroid cultures as an experimental model for analysis of EGFR anomalies
title_sort glioblastoma-derived spheroid cultures as an experimental model for analysis of egfr anomalies
topic Laboratory Investigation - Human/Animal Tissue
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3089721/
https://www.ncbi.nlm.nih.gov/pubmed/20803305
http://dx.doi.org/10.1007/s11060-010-0352-0
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