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.

Plos One
|March 6, 2012
PubMed

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.