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Upfront Biology-Guided Therapy in Diffuse Intrinsic Pontine Glioma: Therapeutic, Molecular, and Biomarker Outcomes
Cassie Kline1, Payal Jain2, Lindsay Kilburn3
1Division of Oncology, Department of Pediatrics, Children's Hospital of Philadelphia, University of Pennsylvania Perelman School of Medicine, Philadelphia, Pennsylvania.
Purpose:
PNOC003 is a multicenter precision medicine trial for children and young adults with newly diagnosed diffuse intrinsic pontine glioma (DIPG).
Patients And Methods:
Patients (3-25 years) were enrolled on the basis of imaging consistent with DIPG. Biopsy tissue was collected for whole-exome and mRNA sequencing. After radiotherapy (RT), patients were assigned up to four FDA-approved drugs based on molecular tumor board recommendations. H3K27M-mutant circulating tumor DNA (ctDNA) was longitudinally measured. Tumor tissue and matched primary cell lines were characterized using whole-genome sequencing and DNA methylation profiling. When applicable, results were verified in an independent cohort from the Children's Brain Tumor Network (CBTN).
Results:
Of 38 patients enrolled, 28 patients (median 6 years, 10 females) were reviewed by the molecular tumor board. Of those, 19 followed treatment recommendations. Median overall survival (OS) was 13.1 months [95% confidence interval (CI), 11.2-18.4] with no difference between patients who followed recommendations and those who did not. H3K27M-mutant ctDNA was detected at baseline in 60% of cases tested and associated with response to RT and survival. Eleven cell lines were established, showing 100% fidelity of key somatic driver gene alterations in the primary tumor. In H3K27-altered DIPGs, TP53 mutations were associated with worse OS (TP53mut 11.1 mo; 95% CI, 8.7-14; TP53wt 13.3 mo; 95% CI, 11.8-NA; P = 3.4e-2), genome instability (P = 3.1e-3), and RT resistance (P = 6.4e-4). The CBTN cohort confirmed an association between TP53 mutation status, genome instability, and clinical outcome.
Conclusions:
Upfront treatment-naïve biopsy provides insight into clinically relevant molecular alterations and prognostic biomarkers for H3K27-altered DIPGs.
Insights
This study on diffuse intrinsic pontine glioma (DIPG) found that TP53 mutations are linked to worse survival and radiation resistance in H3K27-altered DIPGs. Upfront biopsies reveal key molecular insights for this pediatric brain cancer.
Area of Science:
- Pediatric Oncology
- Neuro-oncology
- Precision Medicine
Background:
- Diffuse intrinsic pontine glioma (DIPG) is an aggressive pediatric brain tumor with limited treatment options.
- Precision medicine approaches are crucial for identifying targeted therapies for DIPG.
Purpose of the Study:
- To evaluate the efficacy of a precision medicine trial (PNOC003) for newly diagnosed DIPG in children and young adults.
- To identify molecular alterations and prognostic biomarkers in H3K27-altered DIPG.
Main Methods:
- Multi-center trial enrolling patients aged 3-25 years with DIPG.
- Whole-exome and mRNA sequencing of tumor biopsies.
- Longitudinal measurement of H3K27M-mutant circulating tumor DNA (ctDNA).
- Treatment assignment based on molecular tumor board recommendations after radiotherapy (RT).
- Verification in an independent Children's Brain Tumor Network (CBTN) cohort.
Main Results:
- Median overall survival (OS) was 13.1 months, irrespective of adherence to treatment recommendations.
- H3K27M-mutant ctDNA detected at baseline in 60% of cases, associated with RT response and survival.
- TP53 mutations in H3K27-altered DIPGs correlated with worse OS, increased genome instability, and RT resistance.
- Eleven cell lines established with high fidelity to primary tumor alterations.
Conclusions:
- Upfront, treatment-naïve biopsies provide critical insights into molecular drivers of DIPG.
- TP53 mutation status and genome instability are significant prognostic biomarkers for H3K27-altered DIPG.
- Precision medicine strategies informed by molecular profiling hold promise for improving outcomes in DIPG.
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