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Updated: Jul 12, 2026

Evaluation of Tumor-infiltrating Leukocyte Subsets in a Subcutaneous Tumor Model
Published on: April 13, 2015
Unsupervised clustering reveals noncanonical myeloid cell subsets in the brain tumor microenvironment
Ismaïl Hermelo1,2,3, Tuomo Virtanen4,5, Iida Salonen4,5
1Prostate Cancer Research Center, Faculty of Medicine and Health Technology, Tampere University and Tampere University Hospital, Tampere, Finland. ismail.hermelo@gmail.com.
Insights
This study reveals novel immune cell types within human brain tumors, including noncanonical myeloid and T cell subsets. These findings enhance our understanding of the tumor immune microenvironment (TiME) in CNS cancers.
Area of Science:
- Immunology
- Neuro-oncology
- Genomics
Background:
- The tumor immune microenvironment (TiME) in human central nervous system (CNS) tumors is not fully understood.
- Characterizing immune cell populations is crucial for developing effective cancer therapies.
Purpose of the Study:
- To perform a data-driven dissection of the diverse TiME in human CNS tumors.
- To identify and characterize noncanonical immune cell types within these tumors.
Main Methods:
- Utilized flow cytometry and RNA sequencing for comprehensive analysis.
- Examined seven tumors from five patients.
- Validated findings across three independent datasets from 73 patients.
Main Results:
- Identified classical myeloid subsets (microglia, macrophages, neutrophils) and two noncanonical myeloid subsets (CD3+, CD19+).
- Discovered double-negative (CD4- CD8-) T cells (DNTs), likely representing γδ T cells.
- Observed expected myeloid proportions but unexpectedly high lymphocyte frequencies in gliosarcoma, with a unique immune gene expression pattern.
Conclusions:
- Data-driven approaches can effectively resolve CNS TiME complexity.
- Highlighted the presence of nonclassical immune cell subsets in CNS tumors.
- Emphasized the need for further research into these novel immune cell populations.
Abstract:
The tumor immune microenvironment (TiME) of human central nervous system (CNS) tumors remains to be comprehensively deciphered. Here, we employed flow cytometry and RNA sequencing analysis for a deep data-driven dissection of a diverse TiME and to uncover noncanonical immune cell types in human CNS tumors by using seven tumors from five patients. Myeloid subsets comprised classical microglia, monocyte-derived macrophages, neutrophils, and two noncanonical myeloid subsets: CD3+ myeloids and CD19+ myeloids. T lymphocyte subsets included double-negative (CD4- CD8-) T cells (DNTs). Noncanonical myeloids and DNTs were explored on independent datasets, suggesting that our DNT phenotype represents γδ T cells. Noncanonical myeloids were validated using orthogonal methods across 73 patients from three independent datasets. While the proportions of classical myeloids agreed with reported malignancy type-associated TiMEs, unexpectedly high lymphocyte frequencies were detected in gliosarcoma, which also showed a unique expression pattern of immune-related genes. Our findings highlight the potential of data-driven approaches in resolving CNS TiME to reveal the mosaic of immune cell types constituting TiME, warranting the need for future studies on the nonclassical immune cell subsets.
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