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Three-dimensional model of glioblastoma by co-culturing tumor stem cells with human brain organoids
Author(s) -
Roberta Azzarelli,
Michela Ori,
Anna Philpott,
Benjamin D. Simons
Publication year - 2021
Publication title -
biology open
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.936
H-Index - 41
ISSN - 2046-6390
DOI - 10.1242/bio.056416
Subject(s) - organoid , biology , stem cell , glioblastoma , induced pluripotent stem cell , cell culture , computational biology , brain tumor , cell fate determination , cell , u87 , microbiology and biotechnology , cancer research , neuroscience , embryonic stem cell , genetics , pathology , gene , medicine , transcription factor
Emerging three-dimensional (3D) cultures of glioblastoma are becoming powerful models to study glioblastoma stem cell behavior and the impact of cell–cell and cell–microenvironment interactions on tumor growth and invasion. Here we describe a method for culturing human glioblastoma stem cells (GSCs) in 3D by co-culturing them with pluripotent stem cell-derived brain organoids. This requires multiple coordinated steps, including the generation of cerebral organoids, and the growth and fluorescence tagging of GSCs. We highlight how to recognize optimal organoid generation and how to efficiently mark GSCs, before describing optimized co-culture conditions. We show that GSCs can efficiently integrate into brain organoids and maintain a significant degree of cell fate heterogeneity, paving the way for the analysis of GSC fate behavior and lineage progression. These results establish the 3D culture system as a viable and versatile GBM model for investigating tumor cell biology and GSC heterogeneity. This article has an associated First Person interview with the first author of the paper.

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