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The Human Glioblastoma Cell Culture Resource: Validated Cell Models Representing All Molecular Subtypes

Glioblastoma (GBM) is the most frequent and malignant form of primary brain tumor. GBM is essentially incurable and its resistance to therapy is attributed to a subpopulation of cells called glioma stem cells (GSCs). To meet the present shortage of relevant GBM cell (GC) lines we developed a library...

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Autores principales: Xie, Yuan, Bergström, Tobias, Jiang, Yiwen, Johansson, Patrik, Marinescu, Voichita Dana, Lindberg, Nanna, Segerman, Anna, Wicher, Grzegorz, Niklasson, Mia, Baskaran, Sathishkumar, Sreedharan, Smitha, Everlien, Isabelle, Kastemar, Marianne, Hermansson, Annika, Elfineh, Lioudmila, Libard, Sylwia, Holland, Eric Charles, Hesselager, Göran, Alafuzoff, Irina, Westermark, Bengt, Nelander, Sven, Forsberg-Nilsson, Karin, Uhrbom, Lene
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4634360/
https://www.ncbi.nlm.nih.gov/pubmed/26629530
http://dx.doi.org/10.1016/j.ebiom.2015.08.026
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author Xie, Yuan
Bergström, Tobias
Jiang, Yiwen
Johansson, Patrik
Marinescu, Voichita Dana
Lindberg, Nanna
Segerman, Anna
Wicher, Grzegorz
Niklasson, Mia
Baskaran, Sathishkumar
Sreedharan, Smitha
Everlien, Isabelle
Kastemar, Marianne
Hermansson, Annika
Elfineh, Lioudmila
Libard, Sylwia
Holland, Eric Charles
Hesselager, Göran
Alafuzoff, Irina
Westermark, Bengt
Nelander, Sven
Forsberg-Nilsson, Karin
Uhrbom, Lene
author_facet Xie, Yuan
Bergström, Tobias
Jiang, Yiwen
Johansson, Patrik
Marinescu, Voichita Dana
Lindberg, Nanna
Segerman, Anna
Wicher, Grzegorz
Niklasson, Mia
Baskaran, Sathishkumar
Sreedharan, Smitha
Everlien, Isabelle
Kastemar, Marianne
Hermansson, Annika
Elfineh, Lioudmila
Libard, Sylwia
Holland, Eric Charles
Hesselager, Göran
Alafuzoff, Irina
Westermark, Bengt
Nelander, Sven
Forsberg-Nilsson, Karin
Uhrbom, Lene
author_sort Xie, Yuan
collection PubMed
description Glioblastoma (GBM) is the most frequent and malignant form of primary brain tumor. GBM is essentially incurable and its resistance to therapy is attributed to a subpopulation of cells called glioma stem cells (GSCs). To meet the present shortage of relevant GBM cell (GC) lines we developed a library of annotated and validated cell lines derived from surgical samples of GBM patients, maintained under conditions to preserve GSC characteristics. This collection, which we call the Human Glioblastoma Cell Culture (HGCC) resource, consists of a biobank of 48 GC lines and an associated database containing high-resolution molecular data. We demonstrate that the HGCC lines are tumorigenic, harbor genomic lesions characteristic of GBMs, and represent all four transcriptional subtypes. The HGCC panel provides an open resource for in vitro and in vivo modeling of a large part of GBM diversity useful to both basic and translational GBM research.
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spelling pubmed-46343602015-12-01 The Human Glioblastoma Cell Culture Resource: Validated Cell Models Representing All Molecular Subtypes Xie, Yuan Bergström, Tobias Jiang, Yiwen Johansson, Patrik Marinescu, Voichita Dana Lindberg, Nanna Segerman, Anna Wicher, Grzegorz Niklasson, Mia Baskaran, Sathishkumar Sreedharan, Smitha Everlien, Isabelle Kastemar, Marianne Hermansson, Annika Elfineh, Lioudmila Libard, Sylwia Holland, Eric Charles Hesselager, Göran Alafuzoff, Irina Westermark, Bengt Nelander, Sven Forsberg-Nilsson, Karin Uhrbom, Lene EBioMedicine Research Article Glioblastoma (GBM) is the most frequent and malignant form of primary brain tumor. GBM is essentially incurable and its resistance to therapy is attributed to a subpopulation of cells called glioma stem cells (GSCs). To meet the present shortage of relevant GBM cell (GC) lines we developed a library of annotated and validated cell lines derived from surgical samples of GBM patients, maintained under conditions to preserve GSC characteristics. This collection, which we call the Human Glioblastoma Cell Culture (HGCC) resource, consists of a biobank of 48 GC lines and an associated database containing high-resolution molecular data. We demonstrate that the HGCC lines are tumorigenic, harbor genomic lesions characteristic of GBMs, and represent all four transcriptional subtypes. The HGCC panel provides an open resource for in vitro and in vivo modeling of a large part of GBM diversity useful to both basic and translational GBM research. Elsevier 2015-08-15 /pmc/articles/PMC4634360/ /pubmed/26629530 http://dx.doi.org/10.1016/j.ebiom.2015.08.026 Text en © 2015 The Authors. Published by Elsevier B.V. http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research Article
Xie, Yuan
Bergström, Tobias
Jiang, Yiwen
Johansson, Patrik
Marinescu, Voichita Dana
Lindberg, Nanna
Segerman, Anna
Wicher, Grzegorz
Niklasson, Mia
Baskaran, Sathishkumar
Sreedharan, Smitha
Everlien, Isabelle
Kastemar, Marianne
Hermansson, Annika
Elfineh, Lioudmila
Libard, Sylwia
Holland, Eric Charles
Hesselager, Göran
Alafuzoff, Irina
Westermark, Bengt
Nelander, Sven
Forsberg-Nilsson, Karin
Uhrbom, Lene
The Human Glioblastoma Cell Culture Resource: Validated Cell Models Representing All Molecular Subtypes
title The Human Glioblastoma Cell Culture Resource: Validated Cell Models Representing All Molecular Subtypes
title_full The Human Glioblastoma Cell Culture Resource: Validated Cell Models Representing All Molecular Subtypes
title_fullStr The Human Glioblastoma Cell Culture Resource: Validated Cell Models Representing All Molecular Subtypes
title_full_unstemmed The Human Glioblastoma Cell Culture Resource: Validated Cell Models Representing All Molecular Subtypes
title_short The Human Glioblastoma Cell Culture Resource: Validated Cell Models Representing All Molecular Subtypes
title_sort human glioblastoma cell culture resource: validated cell models representing all molecular subtypes
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4634360/
https://www.ncbi.nlm.nih.gov/pubmed/26629530
http://dx.doi.org/10.1016/j.ebiom.2015.08.026
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