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March 14, 2026Neuro-Oncology Pediatrics0 citationsOpen Access

BIOM-06. Improving the Detection of Circulating Tumor DNA in Blood and CSF of Pediatric CNS Tumor Patients

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SGShea GallusTranslational Genomics Research InstituteSMSharvari MankameTranslational Genomics Research InstituteAMAdriana MarshallTranslational Genomics Research Institute

Key Points

  • This research aims to enhance the detection of circulating tumor DNA in pediatric patients with CNS tumors for better diagnostics and monitoring.
  • Collected longitudinal blood and CSF samples from pediatric CNS tumor patients from 2021-2024.
  • Tracked demographic information, histologic diagnoses, molecular features, and treatment responses.
  • Extracted DNA from plasma, CSF, tumor, and whole blood samples and analyzed it using a classification algorithm.
  • Successfully detected cell-free DNA in 100% of plasma samples and 66% of CSF samples.
  • Cohort included 45 patients, with various CNS tumor types identified, including diffuse midline glioma and medulloblastoma.
  • Analysis ongoing to confirm the tumor origin of isolated cfDNA.

Abstract

Abstract Background Detection of circulating tumor DNA (ctDNA) in the blood and cerebrospinal fluid (CSF) of pediatric patients with central nervous system (CNS) tumors may improve diagnostic and disease monitoring capabilities. However, factors such as the blood brain barrier complicate the ability to reliably detect ctDNA in the blood. Accurately distinguishing tumor-derived DNA from germline DNA carries unique challenges. Methods From 2021–2024, longitudinal blood and/or CSF samples were collected from pediatric CNS tumor patients throughout the course of their treatment. Demographic information, histologic diagnoses, molecular features, and treatment responses were tracked. DNA was extracted from plasma, CSF, tumor, and whole blood samples. Using a novel classification algorithm combining whole genome and targeted genomic sequencing, DNA was analyzed for tissue of origin. Results Forty-five patients were enrolled with 181 total plasma samples and 41 CSF samples. Sixteen patients were selected to undergo proof-of-principle analysis consisting of six (37%) patients with diffuse midline glioma, five (31%) with high-grade glioma, four (25%) with medulloblastoma, and one (6%) with ependymoma. Five (31%) patients had metastatic disease at diagnosis. All patients in the cohort underwent radiation and 12 (75%) received chemotherapy or immunotherapy. The average number of plasma samples per patient was 4.37 (range 1-8) and CSF samples was 0.9 (range 0-3). Cell-free DNA (cfDNA) was successfully detected in 70/70 (100%) plasma samples and 10/15 (66%) CSF samples, including some patients without radiographic evidence of disease. Further analysis to confirm whether this isolated cfDNA is tumor derived is ongoing and will be presented. Conclusion Early data demonstrate our classification algorithm is highly successful at detecting cfDNA from the blood and CSF of pediatric CNS tumor patients. Further analysis is needed to validate the tissue of origin of this circulating DNA and to determine the clinical applicability of our novel classification algorithm.

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Cite This Study

Gallus et al. (2025) studied this question.

synapsesocial.com/papers/69b4ba0818185d8a39802898https://doi.org/10.1093/neuped/wuaf001.018
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1ID #736 Ultra-sensitive plasma ctDNA assay enables detection of brain tumour DNA in peripheral blood and is prognostic in childhood brain cancer2026
  2. 2ID #717 Cerebrospinal fluid circulating tumor DNA as marker of measurable residual disease for CNS germ cell tumors – an international pediatric brain tumor liquid biopsy collaborative2026
  3. 3BMRK-11 REAL-WORLD EXPERIENCE WITH CIRCULATING TUMOR DNA IN CEREBROSPINAL FLUID IN PATIENTS WITH CENTRAL NERVOUS SYSTEM TUMORS2024
  4. 4Monitoring pediatric CNS non‐germinomatous germ cell tumors via cerebrospinal fluid circulating tumor DNA2024 · 3 citations
  5. 5Tumor-derived cell-free DNA detected in cerebrospinal fluid enables minimally invasive profiling of pediatric brain tumors2026