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Updated: Feb 3, 2026

Live-3D-Cell Immunocytochemistry Assays of Pediatric Diffuse Midline Glioma
Published on: November 11, 2021
Clinically Relevant and Minimally Invasive Tumor Surveillance of Pediatric Diffuse Midline Gliomas Using
Eshini Panditharatna1,2, Lindsay B Kilburn3,4, Mariam S Aboian5
1Rese arch Center for Genetic Medicine, Children's National Health System, Washington, D.C.
Purpose:
Pediatric diffuse midline glioma (DMG) are highly malignant tumors with poor clinical outcomes. Over 70% of patients with DMG harbor the histone 3 p.K27M (H3K27M) mutation, which correlates with a poorer clinical outcome, and is also used as a criterion for enrollment in clinical trials. Because complete surgical resection of DMG is not an option, biopsy at presentation is feasible, but rebiopsy at time of progression is rare. While imaging and clinical-based disease monitoring is the standard of care, molecular-based longitudinal characterization of these tumors is almost nonexistent. To overcome these hurdles, we examined whether liquid biopsy allows measurement of disease response to precision therapy.
Experimental Design:
We established a sensitive and specific methodology that detects major driver mutations associated with pediatric DMGs using droplet digital PCR (n = 48 subjects, n = 110 specimens). Quantification of circulating tumor DNA (ctDNA) for H3K27M was used for longitudinal assessment of disease response compared with centrally reviewed MRI data.
Results:
H3K27M was identified in cerebrospinal fluid (CSF) and plasma in 88% of patients with DMG, with CSF being the most enriched for ctDNA. We demonstrated the feasibility of multiplexing for detection of H3K27M, and additional driver mutations in patient's tumor and matched CSF, maximizing the utility of a single source of liquid biome. A significant decrease in H3K27M plasma ctDNA agreed with MRI assessment of tumor response to radiotherapy in 83% (10/12) of patients.
Conclusions:
Our liquid biopsy approach provides a molecularly based tool for tumor characterization, and is the first to indicate clinical utility of ctDNA for longitudinal surveillance of DMGs.
Insights
Liquid biopsy can track pediatric diffuse midline glioma (DMG) progression. This method detects H3K27M mutations in ctDNA, aiding in monitoring treatment response and tumor surveillance.
Area of Science:
- Oncology
- Molecular Diagnostics
- Genetics
Background:
- Pediatric diffuse midline glioma (DMG) is a highly malignant brain tumor with poor prognosis.
- The histone H3 p.K27M (H3K27M) mutation is present in over 70% of DMGs and is linked to worse outcomes.
- Current disease monitoring relies on imaging and clinical assessment, with limited molecular longitudinal characterization.
Purpose of the Study:
- To investigate the utility of liquid biopsy for monitoring pediatric diffuse midline glioma (DMG).
- To assess if circulating tumor DNA (ctDNA) can be used for longitudinal disease surveillance and response to precision therapy.
Main Methods:
- Developed a sensitive droplet digital PCR (ddPCR) method to detect driver mutations in pediatric DMGs (n=48 subjects, n=110 specimens).
- Quantified H3K27M ctDNA in plasma and cerebrospinal fluid (CSF) for longitudinal assessment.
- Correlated ctDNA levels with MRI data for tumor response evaluation.
Main Results:
- H3K27M mutations were detected in 88% of DMG patients' CSF and plasma, with CSF showing higher ctDNA enrichment.
- Multiplexing allowed detection of multiple driver mutations from a single liquid biopsy sample.
- A decrease in H3K27M plasma ctDNA correlated with MRI-assessed tumor response to radiotherapy in 83% of patients.
Conclusions:
- Liquid biopsy offers a molecularly-based tool for tumor characterization in pediatric DMGs.
- This study demonstrates the clinical utility of ctDNA for longitudinal surveillance of DMGs.
- Non-invasive monitoring of DMG through liquid biopsy can aid in treatment assessment.
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