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A Toolkit for Profiling the Immune Landscape of Pediatric Central Nervous System Malignancies
Jacob S Rozowsky1, Joyce I Meesters-Ensing1, Julie A S Lammers1
1Princess Máxima Center for Pediatric Oncology, Utrecht, Netherlands.
Abstract:
The prognosis of pediatric central nervous system (CNS) malignancies remains dismal due to limited treatment options, resulting in high mortality rates and long-term morbidities. Immunotherapies, including checkpoint inhibition, cancer vaccines, engineered T cell therapies, and oncolytic viruses, have promising results in some hematological and solid malignancies, and are being investigated in clinical trials for various high-grade CNS malignancies. However, the role of the tumor immune microenvironment (TIME) in CNS malignancies is mostly unknown for pediatric cases. In order to successfully implement immunotherapies and to eventually predict which patients would benefit from such treatments, in-depth characterization of the TIME at diagnosis and throughout treatment is essential. In this review, we provide an overview of techniques for immune profiling of CNS malignancies, and detail how they can be utilized for different tissue types and studies. These techniques include immunohistochemistry and flow cytometry for quantifying and phenotyping the infiltrating immune cells, bulk and single-cell transcriptomics for describing the implicated immunological pathways, as well as functional assays. Finally, we aim to describe the potential benefits of evaluating other compartments of the immune system implicated by cancer therapies, such as cerebrospinal fluid and blood, and how such liquid biopsies are informative when designing immune monitoring studies. Understanding and uniformly evaluating the TIME and immune landscape of pediatric CNS malignancies will be essential to eventually integrate immunotherapy into clinical practice.
Insights
Pediatric central nervous system (CNS) tumors have poor prognoses. Understanding the tumor immune microenvironment (TIME) is crucial for developing effective immunotherapies for these challenging pediatric cancers.
Area of Science:
- Pediatric oncology
- Neuro-oncology
- Immunology
Background:
- Pediatric central nervous system (CNS) malignancies have a dismal prognosis due to limited therapeutic strategies.
- Immunotherapy offers promise but its application in pediatric CNS tumors is hindered by an incomplete understanding of the tumor immune microenvironment (TIME).
Purpose of the Study:
- To review current techniques for immune profiling of pediatric CNS malignancies.
- To highlight the importance of characterizing the TIME for successful immunotherapy implementation and patient stratification.
- To discuss the utility of liquid biopsies in monitoring immune responses.
Main Methods:
- Overview of established immune profiling techniques including immunohistochemistry, flow cytometry, bulk and single-cell transcriptomics, and functional assays.
- Discussion on applying these methods to various tissue types and study designs.
- Exploration of cerebrospinal fluid and blood analysis for immune monitoring.
Main Results:
- Current methods allow for quantification and phenotyping of immune cells, elucidation of immunological pathways, and functional assessment.
- Characterization of TIME components is feasible across different sample types.
- Liquid biopsies provide valuable insights for immune monitoring strategies.
Conclusions:
- Comprehensive characterization of the TIME in pediatric CNS malignancies is essential for advancing immunotherapy.
- Standardized evaluation of the immune landscape will facilitate the integration of immunotherapies into clinical practice.
- Further research into TIME and immune monitoring is critical for improving outcomes in pediatric neuro-oncology.

