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A Novel, Diffusely Infiltrative Xenograft Model of Human Anaplastic Oligodendroglioma with Mutations in FUBP1, CIC, and IDH1

Oligodendroglioma poses a biological conundrum for malignant adult human gliomas: it is a tumor type that is universally incurable for patients, and yet, only a few of the human tumors have been established as cell populations in vitro or as intracranial xenografts in vivo. Their survival, thus, may...

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Autores principales: Klink, Barbara, Miletic, Hrvoje, Stieber, Daniel, Huszthy, Peter C., Valenzuela, Jaime Alberto Campos, Balss, Jörg, Wang, Jian, Schubert, Manja, Sakariassen, Per Øystein, Sundstrøm, Terje, Torsvik, Anja, Aarhus, Mads, Mahesparan, Rupavathana, von Deimling, Andreas, Kaderali, Lars, Niclou, Simone P., Schröck, Evelin, Bjerkvig, Rolf, Nigro, Janice M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3602110/
https://www.ncbi.nlm.nih.gov/pubmed/23527265
http://dx.doi.org/10.1371/journal.pone.0059773
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author Klink, Barbara
Miletic, Hrvoje
Stieber, Daniel
Huszthy, Peter C.
Valenzuela, Jaime Alberto Campos
Balss, Jörg
Wang, Jian
Schubert, Manja
Sakariassen, Per Øystein
Sundstrøm, Terje
Torsvik, Anja
Aarhus, Mads
Mahesparan, Rupavathana
von Deimling, Andreas
Kaderali, Lars
Niclou, Simone P.
Schröck, Evelin
Bjerkvig, Rolf
Nigro, Janice M.
author_facet Klink, Barbara
Miletic, Hrvoje
Stieber, Daniel
Huszthy, Peter C.
Valenzuela, Jaime Alberto Campos
Balss, Jörg
Wang, Jian
Schubert, Manja
Sakariassen, Per Øystein
Sundstrøm, Terje
Torsvik, Anja
Aarhus, Mads
Mahesparan, Rupavathana
von Deimling, Andreas
Kaderali, Lars
Niclou, Simone P.
Schröck, Evelin
Bjerkvig, Rolf
Nigro, Janice M.
author_sort Klink, Barbara
collection PubMed
description Oligodendroglioma poses a biological conundrum for malignant adult human gliomas: it is a tumor type that is universally incurable for patients, and yet, only a few of the human tumors have been established as cell populations in vitro or as intracranial xenografts in vivo. Their survival, thus, may emerge only within a specific environmental context. To determine the fate of human oligodendroglioma in an experimental model, we studied the development of an anaplastic tumor after intracranial implantation into enhanced green fluorescent protein (eGFP) positive NOD/SCID mice. Remarkably after nearly nine months, the tumor not only engrafted, but it also retained classic histological and genetic features of human oligodendroglioma, in particular cells with a clear cytoplasm, showing an infiltrative growth pattern, and harboring mutations of IDH1 (R132H) and of the tumor suppressor genes, FUBP1 and CIC. The xenografts were highly invasive, exhibiting a distinct migration and growth pattern around neurons, especially in the hippocampus, and following white matter tracts of the corpus callosum with tumor cells accumulating around established vasculature. Although tumors exhibited a high growth fraction in vivo, neither cells from the original patient tumor nor the xenograft exhibited significant growth in vitro over a six-month period. This glioma xenograft is the first to display a pure oligodendroglioma histology and expression of R132H. The unexpected property, that the cells fail to grow in vitro even after passage through the mouse, allows us to uniquely investigate the relationship of this oligodendroglioma with the in vivo microenvironment.
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spelling pubmed-36021102013-03-22 A Novel, Diffusely Infiltrative Xenograft Model of Human Anaplastic Oligodendroglioma with Mutations in FUBP1, CIC, and IDH1 Klink, Barbara Miletic, Hrvoje Stieber, Daniel Huszthy, Peter C. Valenzuela, Jaime Alberto Campos Balss, Jörg Wang, Jian Schubert, Manja Sakariassen, Per Øystein Sundstrøm, Terje Torsvik, Anja Aarhus, Mads Mahesparan, Rupavathana von Deimling, Andreas Kaderali, Lars Niclou, Simone P. Schröck, Evelin Bjerkvig, Rolf Nigro, Janice M. PLoS One Research Article Oligodendroglioma poses a biological conundrum for malignant adult human gliomas: it is a tumor type that is universally incurable for patients, and yet, only a few of the human tumors have been established as cell populations in vitro or as intracranial xenografts in vivo. Their survival, thus, may emerge only within a specific environmental context. To determine the fate of human oligodendroglioma in an experimental model, we studied the development of an anaplastic tumor after intracranial implantation into enhanced green fluorescent protein (eGFP) positive NOD/SCID mice. Remarkably after nearly nine months, the tumor not only engrafted, but it also retained classic histological and genetic features of human oligodendroglioma, in particular cells with a clear cytoplasm, showing an infiltrative growth pattern, and harboring mutations of IDH1 (R132H) and of the tumor suppressor genes, FUBP1 and CIC. The xenografts were highly invasive, exhibiting a distinct migration and growth pattern around neurons, especially in the hippocampus, and following white matter tracts of the corpus callosum with tumor cells accumulating around established vasculature. Although tumors exhibited a high growth fraction in vivo, neither cells from the original patient tumor nor the xenograft exhibited significant growth in vitro over a six-month period. This glioma xenograft is the first to display a pure oligodendroglioma histology and expression of R132H. The unexpected property, that the cells fail to grow in vitro even after passage through the mouse, allows us to uniquely investigate the relationship of this oligodendroglioma with the in vivo microenvironment. Public Library of Science 2013-03-19 /pmc/articles/PMC3602110/ /pubmed/23527265 http://dx.doi.org/10.1371/journal.pone.0059773 Text en © 2013 Klink et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Klink, Barbara
Miletic, Hrvoje
Stieber, Daniel
Huszthy, Peter C.
Valenzuela, Jaime Alberto Campos
Balss, Jörg
Wang, Jian
Schubert, Manja
Sakariassen, Per Øystein
Sundstrøm, Terje
Torsvik, Anja
Aarhus, Mads
Mahesparan, Rupavathana
von Deimling, Andreas
Kaderali, Lars
Niclou, Simone P.
Schröck, Evelin
Bjerkvig, Rolf
Nigro, Janice M.
A Novel, Diffusely Infiltrative Xenograft Model of Human Anaplastic Oligodendroglioma with Mutations in FUBP1, CIC, and IDH1
title A Novel, Diffusely Infiltrative Xenograft Model of Human Anaplastic Oligodendroglioma with Mutations in FUBP1, CIC, and IDH1
title_full A Novel, Diffusely Infiltrative Xenograft Model of Human Anaplastic Oligodendroglioma with Mutations in FUBP1, CIC, and IDH1
title_fullStr A Novel, Diffusely Infiltrative Xenograft Model of Human Anaplastic Oligodendroglioma with Mutations in FUBP1, CIC, and IDH1
title_full_unstemmed A Novel, Diffusely Infiltrative Xenograft Model of Human Anaplastic Oligodendroglioma with Mutations in FUBP1, CIC, and IDH1
title_short A Novel, Diffusely Infiltrative Xenograft Model of Human Anaplastic Oligodendroglioma with Mutations in FUBP1, CIC, and IDH1
title_sort novel, diffusely infiltrative xenograft model of human anaplastic oligodendroglioma with mutations in fubp1, cic, and idh1
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3602110/
https://www.ncbi.nlm.nih.gov/pubmed/23527265
http://dx.doi.org/10.1371/journal.pone.0059773
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