Abstract
Diffuse midline glioma (DMG) is an aggressive pediatric brain tumor with no curative treatment, and lacks a comprehensive understanding of immune-tumor cell interactions within their spatial context. Our multi-omics approach, integrating single-nuclei RNA sequencing, spatial transcriptomics, and high-dimensional imaging, utilizes patient samples and an experimental murine DMG model to unveil two spatially distinct regions. MES-patterns are defined by mesenchymal (MES) tumor cells and blood-derived immune cells, whereas AOO-patterns are enriched with astrocyte (AC)-, oligodendrocyte (OC)-, and oligodendrocyte precursor cell (OPC)-like cancer populations, alongside homeostatic-like microglia. The less-studied immune checkpoint, IGSF11, is primarily expressed by AOO-associated cancer cells, while its receptor VISTA is detected mainly in homeostatic microglia. Targeting IGSF11-VISTA results in tumor reduction and survival benefit, mediated by brain-resident microglia and independent of T cell infiltration. This positions IGSF11-VISTA as a promising immune checkpoint treatment axis to harness the local brain immune response against DMG.
| Original language | English |
|---|---|
| Pages (from-to) | 641-657.e9 |
| Journal | Cancer Cell |
| Volume | 44 |
| Issue number | 3 |
| DOIs | |
| Publication status | Published - 9 Mar 2026 |
Keywords
- IGSF11-VISTA immune checkpoint
- cancer-immune landscape
- diffuse midline glioma
- microglia-cancer interaction
- spatial multi-omics profiling
- Microglia/metabolism
- Immune Checkpoint Inhibitors/pharmacology
- Humans
- Brain Neoplasms/immunology
- Gene Expression Regulation, Neoplastic
- B7 Antigens/metabolism
- Animals
- Membrane Proteins/metabolism
- Glioma/immunology
- Mice
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