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Updated: May 24, 2026

A Protocol for Rapid Post-mortem Cell Culture of Diffuse Intrinsic Pontine Glioma (DIPG)
Published on: March 7, 2017
Mesenchymal transition and PDGFRA amplification/mutation are key distinct oncogenic events in pediatric diffuse
Stephanie Puget1, Cathy Philippe, Dorine A Bax
1Department of Neurosurgery, Necker-Sick Children Hospital, University Paris V Descartes, Paris, France.
Abstract:
Diffuse intrinsic pontine glioma (DIPG) is one of the most frequent malignant pediatric brain tumor and its prognosis is universaly fatal. No significant improvement has been made in last thirty years over the standard treatment with radiotherapy. To address the paucity of understanding of DIPGs, we have carried out integrated molecular profiling of a large series of samples obtained with stereotactic biopsy at diagnosis. While chromosomal imbalances did not distinguish DIPG and supratentorial tumors on CGHarrays, gene expression profiling revealed clear differences between them, with brainstem gliomas resembling midline/thalamic tumours, indicating a closely-related origin. Two distinct subgroups of DIPG were identified. The first subgroup displayed mesenchymal and pro-angiogenic characteristics, with stem cell markers enrichment consistent with the possibility to grow tumor stem cells from these biopsies. The other subgroup displayed oligodendroglial features, and appeared largely driven by PDGFRA, in particular through amplification and/or novel missense mutations in the extracellular domain. Patients in this later group had a significantly worse outcome with an hazard ratio for early deaths, ie before 10 months, 8 fold greater that the ones in the other subgroup (p = 0.041, Cox regression model). The worse outcome of patients with the oligodendroglial type of tumors was confirmed on a series of 55 paraffin-embedded biopsy samples at diagnosis (median OS of 7.73 versus 12.37 months, p = 0.045, log-rank test). Two distinct transcriptional subclasses of DIPG with specific genomic alterations can be defined at diagnosis by oligodendroglial differentiation or mesenchymal transition, respectively. Classifying these tumors by signal transduction pathway activation and by mutation in pathway member genes may be particularily valuable for the development of targeted therapies.
Insights
Diffuse intrinsic pontine glioma (DIPG), a fatal pediatric brain tumor, shows two distinct molecular subgroups. One subgroup has mesenchymal features, while the other exhibits oligodendroglial traits and a significantly worse prognosis, guiding targeted therapy development.
Area of Science:
- Pediatric neuro-oncology
- Cancer genomics
- Molecular pathology
Background:
- Diffuse intrinsic pontine glioma (DIPG) is a frequent and fatal pediatric brain tumor with stagnant treatment outcomes.
- Current understanding of DIPG molecular heterogeneity remains limited, hindering therapeutic advancements.
Purpose of the Study:
- To perform integrated molecular profiling of DIPG samples at diagnosis to identify distinct subgroups and potential therapeutic targets.
- To investigate the molecular basis of DIPG heterogeneity and its correlation with patient prognosis.
Main Methods:
- Stereotactic biopsy for integrated molecular profiling, including chromosomal analysis (CGHarrays) and gene expression profiling.
- Bioinformatic analysis of genomic alterations and transcriptional profiles to identify DIPG subgroups.
- Statistical analysis (Cox regression, log-rank test) to correlate molecular subtypes with patient survival.
Main Results:
- Gene expression profiling revealed DIPG brainstem gliomas are molecularly similar to midline/thalamic tumors.
- Two distinct DIPG subgroups were identified: one with mesenchymal/pro-angiogenic features and stem cell enrichment, the other with oligodendroglial features driven by PDGFRA alterations.
- The oligodendroglial subgroup, particularly those with PDGFRA amplification/mutations, showed a significantly worse prognosis (8-fold increased hazard for early death).
Conclusions:
- DIPG exhibits distinct transcriptional subclasses at diagnosis, characterized by oligodendroglial differentiation or mesenchymal transition.
- Specific genomic alterations, such as PDGFRA alterations in the oligodendroglial subtype, are associated with poor outcomes.
- Molecular classification based on pathway activation and gene mutations holds promise for developing targeted therapies for DIPG.
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