Patient-derived organoids recapitulate glioma-intrinsic immune program and progenitor populations of glioblastoma

Author:

Watanabe Fumihiro12ORCID,Hollingsworth Ethan W12,Bartley Jenna M3ORCID,Wisehart Lauren1,Desai Rahil1,Hartlaub Annalisa M4,Hester Mark E456ORCID,Schiapparelli Paula7ORCID,Quiñones-Hinojosa Alfredo7ORCID,Imitola Jaime12ORCID

Affiliation:

1. Laboratory of Neural Stem Cells and Functional Neurogenetics, Department of Neurology, UConn Health Brain and Spine Institute , 5 Munson Road, Farmington, CT 06030 , USA

2. Departments of Neuroscience, Neurology, Genetics and Genome Sciences, UConn Health , Farmington, CT 06030 , USA

3. Center on Aging UConn Health , Farmington, CT 06030 , USA

4. The Steve and Cindy Rasmussen Institute for Genomic Medicine, Nationwide Children's Hospital , Columbus, OH 43215 , USA

5. Department of Pediatrics, The Ohio State University College of Medicine , Columbus, OH 43210 , USA

6. Department of Neuroscience, The Ohio State University Wexner Medical Center , Columbus, OH 43210 , USA

7. Department of Neurosurgery, Brain Tumor Stem Cell Laboratory, Mayo Clinic , Jacksonville, FL 32224 , USA

Abstract

Abstract Glioblastoma multiforme (GBM) is a highly lethal human cancer thought to originate from a self-renewing and therapeutically-resistant population of glioblastoma stem cells (GSCs). The intrinsic mechanisms enacted by GSCs during 3D tumor formation, however, remain unclear, especially in the stages prior to angiogenic/immunological infiltration. In this study, we performed a deep characterization of the genetic, immune, and metabolic profiles of GBM organoids from several patient-derived GSCs (GBMO). Despite being devoid of immune cells, transcriptomic analysis across GBMO revealed a surprising immune-like molecular program, enriched in cytokine, antigen presentation and processing, T-cell receptor inhibitors, and interferon genes. We find two important cell populations thought to drive GBM progression, Special AT-rich sequence-binding protein 2 (SATB2+) and homeodomain-only protein homeobox (HOPX+) progenitors, contribute to this immune landscape in GBMO and GBM in vivo. These progenitors, but not other cell types in GBMO, are resistant to conventional GBM therapies, temozolomide and irradiation. Our work defines a novel intrinsic immune-like landscape in GBMO driven, in part, by SATB2+ and HOPX+ progenitors and deepens our understanding of the intrinsic mechanisms utilized by GSCs in early GBM formation.

Funder

NCI

NIH

Mayo Clinic

NRI

Biogen-UConn Collaboration

Publisher

Oxford University Press (OUP)

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