A Set of Cell Lines Derived from a Genetic Murine Glioblastoma Model Recapitulates Molecular and Morphological Characteristics of Human Tumors

Costa, Barbara and Fletcher, Michael N. C. and Boskovic, Pavle and Ivanova, Ekaterina L. and Eisemann, Tanja and Lohr, Sabrina and Bunse, Lukas and Löwer, Martin and Burchard, Stefanie and Korshunov, Andrey and Coltella, Nadia and Cusimano, Melania and Naldini, Luigi and Liu, Hai-Kun and Platten, Michael and Radlwimmer, Bernhard and Angel, Peter and Peterziel, Heike (2021) A Set of Cell Lines Derived from a Genetic Murine Glioblastoma Model Recapitulates Molecular and Morphological Characteristics of Human Tumors. Cancers, 13 (2). p. 230. ISSN 2072-6694

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Abstract

Glioblastomas (GBM) are the most aggressive tumors affecting the central nervous system in adults, causing death within, on average, 15 months after diagnosis. Immunocompetent in-vivo models that closely mirror human GBM are urgently needed for deciphering glioma biology and for the development of effective treatment options. The murine GBM cell lines currently available for engraftment in immunocompetent mice are not only exiguous but also inadequate in representing prominent characteristics of human GBM such as infiltrative behavior, necrotic areas, and pronounced tumor heterogeneity. Therefore, we generated a set of glioblastoma cell lines by repeated in vivo passaging of cells isolated from a neural stem cell-specific Pten/p53 double-knockout genetic mouse brain tumor model. Transcriptome and genome analyses of the cell lines revealed molecular heterogeneity comparable to that observed in human glioblastoma. Upon orthotopic transplantation into syngeneic hosts, they formed high-grade gliomas that faithfully recapitulated the histopathological features, invasiveness and immune cell infiltration characteristic of human glioblastoma. These features make our cell lines unique and useful tools to study multiple aspects of glioblastoma pathomechanism and to test novel treatments in an intact immune microenvironment.

Item Type: Article
Subjects: STM Library > Medical Science
Depositing User: Managing Editor
Date Deposited: 21 Jan 2023 05:23
Last Modified: 05 Mar 2024 03:53
URI: http://open.journal4submit.com/id/eprint/1141

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