Integrated Molecular Genetic Profiling of Pediatric High-Grade Gliomas Reveals Key Differences With the Adult Disease
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- 20 June 2010
- journal article
- research article
- Published by American Society of Clinical Oncology (ASCO) in Journal of Clinical Oncology
- Vol. 28 (18) , 3061-3068
- https://doi.org/10.1200/jco.2009.26.7252
Abstract
Purpose: To define copy number alterations and gene expression signatures underlying pediatric high-grade glioma (HGG). Patients and Methods: We conducted a high-resolution analysis of genomic imbalances in 78 de novo pediatric HGGs, including seven diffuse intrinsic pontine gliomas, and 10 HGGs arising in children who received cranial irradiation for a previous cancer using single nucleotide polymorphism microarray analysis. Gene expression was analyzed with gene expression microarrays for 53 tumors. Results were compared with publicly available data from adult tumors. Results: Significant differences in copy number alterations distinguish childhood and adult glioblastoma. PDGFRA was the predominant target of focal amplification in childhood HGG, including diffuse intrinsic pontine gliomas, and gene expression analyses supported an important role for deregulated PDGFRα signaling in pediatric HGG. No IDH1 hotspot mutations were found in pediatric tumors, highlighting molecular differences with adult secondary glioblastoma. Pediatric and adult glioblastomas were clearly distinguished by frequent gain of chromosome 1q (30% v 9%, respectively) and lower frequency of chromosome 7 gain (13% v 74%, respectively) and 10q loss (35% v 80%, respectively). PDGFRA amplification and 1q gain occurred at significantly higher frequency in irradiation-induced tumors, suggesting that these are initiating events in childhood gliomagenesis. A subset of pediatric HGGs showed minimal copy number changes. Conclusion: Integrated molecular profiling showed substantial differences in the molecular features underlying pediatric and adult HGG, indicating that findings in adult tumors cannot be simply extrapolated to younger patients. PDGFRα may be a useful target for pediatric HGG, including diffuse pontine gliomas.Keywords
This publication has 56 references indexed in Scilit:
- Frequent Amplification of a chr19q13.41 MicroRNA Polycistron in Aggressive Primitive Neuroectodermal Brain TumorsCancer Cell, 2009
- Genomic analysis reveals few genetic alterations in pediatric acute myeloid leukemiaProceedings of the National Academy of Sciences, 2009
- The tyrosine phosphatase PTPRD is a tumor suppressor that is frequently inactivated and mutated in glioblastoma and other human cancersProceedings of the National Academy of Sciences, 2009
- IDH1andIDH2Mutations in GliomasNew England Journal of Medicine, 2009
- An Integrated Genomic Analysis of Human Glioblastoma MultiformeScience, 2008
- Comprehensive genomic characterization defines human glioblastoma genes and core pathwaysNature, 2008
- Assessing the significance of chromosomal aberrations in cancer: Methodology and application to gliomaProceedings of the National Academy of Sciences, 2007
- EWS/FLI-1 Induces Rapid Onset of Myeloid/Erythroid Leukemia in MiceMolecular and Cellular Biology, 2007
- Array CGH and gene-expression profiling reveals distinct genomic instability patterns associated with DNA repair and cell-cycle checkpoint pathways in Ewing's sarcomaOncogene, 2007
- Loss of Arf causes tumor progression of PDGFB-induced oligodendrogliomaOncogene, 2007