Molecular Study of Long-Term Survivors of Glioblastoma by Gene-Targeted Next-Generation Sequencing
Author(s) -
Diana Cantero,
Ángel Rodríguez de Lope,
Raquel Moreno de la Presa,
Juan Manuel Sepúlveda-Sánchez,
José M. Borrás,
Javier S. Castresana,
Nicky D’Haene,
Juan F. Garcı́a,
Isabelle Salmon,
Manuela Mollejo,
Juan A. Rey,
Aurelio HernándezLaín,
Bárbara Meléndez
Publication year - 2018
Publication title -
journal of neuropathology and experimental neurology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.441
H-Index - 164
eISSN - 1554-6578
pISSN - 0022-3069
DOI - 10.1093/jnen/nly048
Subject(s) - atrx , idh1 , pdgfra , idh2 , death associated protein 6 , pten , biology , cancer research , isocitrate dehydrogenase , glioma , gene , oncology , cdkn2a , mutation , medicine , pi3k/akt/mtor pathway , genetics , signal transduction , transcription factor , nuclear protein , biochemistry , enzyme , stromal cell , gist
Glioblastoma (GBM) is the most common malignant adult primary brain tumor. Despite its high lethality, a small proportion of patients have a relatively long overall survival (OS). Here we report a study of a series of 74 GBM samples from 29 long-term survivors ([LTS] OS ≥36 months) and 45 non-LTS. Using next-generation sequencing, we analyzed genetic alterations in the genes most frequently altered in gliomas. Approximately 20% of LTS had a mutation in the IDH1 or IDH2 (IDH) genes, denoting the relevance of this molecular prognostic factor. A new molecular group of GBMs harbored alterations in ATRX or DAXX genes in the absence of driver IDH or H3F3A mutations. These patients tended to have a slightly better prognosis, to be younger at diagnosis, and to present frontal or temporal tumors, and, morphologically, to present giant tumor cells. A significant fraction of LTS GBM patients had tumors with 1 or more alterations in the relevant GBM signaling pathways (RTK/PI3K, TP53 and RB1). In these patients, the PDGFRA alteration is suggested to be a favorable molecular factor. Our findings here are relevant for developing future targeted therapies and for identifying molecular prognostic factors in GBM patients.
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