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Updated: Sep 23, 2025

Digital Spatial Profiling for Characterization of the Microenvironment in Adult-Type Diffusely Infiltrating Glioma
Published on: September 13, 2022
Spatial organization of heterogeneous immunotherapy target antigen expression in high-grade glioma
Michael E Barish1, Lihong Weng2, Dina Awabdeh1
1Department of Stem Cell Biology & Regenerative Medicine, Beckman Research Institute, City of Hope, Duarte, CA 91010, United States.
Abstract:
High-grade (WHO grades III-IV) glioma remains one of the most lethal human cancers. Adoptive transfer of tumor-targeting chimeric antigen receptor (CAR)-redirected T cells for high-grade glioma has revealed promising indications of anti-tumor activity, but objective clinical responses remain elusive for most patients. A significant challenge to effective immunotherapy is the highly heterogeneous structure of these tumors, including large variations in the magnitudes and distributions of target antigen expression, observed both within individual tumors and between patients. To obtain a more detailed understanding of immunotherapy target antigens within patient tumors, we immunochemically mapped at single cell resolution three clinically-relevant targets, IL13Rα2, HER2 and EGFR, on tumor samples drawn from a 43-patient cohort. We observed that within individual tumor samples, expression of these antigens was neither random nor uniform, but rather that they mapped into local neighborhoods - phenotypically similar cells within regions of cellular tumor - reflecting not well understood properties of tumor cells and their milieu. Notably, tumor cell neighborhoods of high antigen expression were not arranged independently within regions. For example, in cellular tumor regions, neighborhoods of high IL13Rα2 and HER2 expression appeared to be reciprocal to those of EGFR, while in areas of pseudopalisading necrosis, expression of IL13Rα2 and HER2, but not EGFR, appeared to reflect the radial organization of tumor cells around hypoxic cores. Other structural features affecting expression of immunotherapy target antigens remain to be elucidated. This structured but heterogeneous organization of antigen expression in high grade glioma is highly permissive for antigen escape, and combinatorial antigen targeting is a commonly suggested potential mitigating strategy. Deeper understanding of antigen expression within and between patient tumors will enhance optimization of combination immunotherapies, the most immediate clinical application of the observations presented here being the importance of including (wild-type) EGFR as a target antigen.
Insights
High-grade glioma immunotherapy faces challenges from tumor heterogeneity. Mapping key antigens revealed structured, non-random expression patterns, informing combinatorial targeting strategies for better treatment outcomes.
Area of Science:
- Neuro-oncology
- Immunotherapy
- Cancer Biology
Background:
- High-grade glioma (WHO grades III-IV) is a lethal cancer with limited treatment options.
- Adoptive T cell therapy using chimeric antigen receptor (CAR)-redirected T cells shows promise but faces challenges due to tumor heterogeneity.
- Variations in target antigen expression within and between tumors limit the efficacy of current immunotherapies.
Purpose of the Study:
- To investigate the spatial distribution and co-expression patterns of immunotherapy target antigens (IL13Rα2, HER2, EGFR) at single-cell resolution in high-grade glioma.
- To understand how tumor microenvironment structures influence antigen expression.
- To inform the development of more effective combinatorial immunotherapy strategies.
Main Methods:
- Immunochemical mapping of IL13Rα2, HER2, and EGFR expression at single-cell resolution.
- Analysis of tumor samples from a 43-patient cohort.
- Correlation of antigen expression patterns with tumor structural features like cellular neighborhoods and pseudopalisading necrosis.
Main Results:
- Antigen expression was not random but organized into local neighborhoods within tumors.
- Expression of IL13Rα2, HER2, and EGFR showed distinct spatial relationships, with some targets being reciprocal or radially organized around necrotic cores.
- Tumor cell neighborhoods exhibited structured but heterogeneous antigen expression, creating opportunities for antigen escape.
Conclusions:
- The structured heterogeneity of antigen expression in high-grade glioma poses a significant challenge for effective immunotherapy.
- Understanding these spatial antigen patterns is crucial for optimizing combinatorial targeting strategies.
- Including wild-type EGFR as a target antigen is important for enhancing combination immunotherapies.
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