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PMID: 26957305 已发表 · aheadofprint 英语

Molecular Diagnostic and Prognostic Subtyping of Gliomas in Tunisian Population.

Molecular neurobiology ·0000-00-00

Trabelsi Saoussen, Chabchoub Imen, Ksira Iadh, Karmeni Nadhir, Mama Nadia, Kanoun Samia, Burford Anna, Jury Alexa, Mackay Alan, Popov Sergey, Bouaouina Noureddine, Ben Ahmed Slim, Mokni Moncef, Tlili Kalthoum, Krifa Hedi, Yacoubi Mohamed Tahar, Jones Chris, Saad Ali, H'mida Ben Brahim Dorra

摘要

It has become increasingly evident that morphologically similar gliomas may have distinct clinical phenotypes arising from diverse genetic signatures. To date, glial tumours from the Tunisian population have not been investigated. To address this, we correlated the clinico-pathology with molecular data of 110 gliomas by a combination of HM450K array, MLPA and TMA-IHC. PTEN loss and EGFR amplification were distributed in different glioma histological groups. However, 1p19q co-deletion and KIAA1549:BRAF fusion were, respectively, restricted to Oligodendroglioma and Pilocytic Astrocytoma. CDKN2A loss and EGFR overexpression were more common within high-grade gliomas. Furthermore, survival statistical correlations led us to identify Glioblastoma (GB) prognosis subtypes. In fact, significant lower overall survival (OS) was detected within GB that overexpressed EGFR and Cox2. In addition, IDH1R132H mutation seemed to provide a markedly survival advantage. Interestingly, the association of IDHR132H mutation and EGFR normal status, as well as the association of differentiation markers, defined GB subtypes with good prognosis. By contrast, poor survival GB subtypes were defined by the combination of PTEN loss with PDGFRa expression and/or EGFR amplification. Additionally, GB presenting p53-negative staining associated with CDKN2A loss or p21 positivity represented a subtype with short survival. Thus, distinct molecular subtypes with individualised prognosis were identified. Interestingly, we found a unique histone mutation in a poor survival young adult GB case. This tumour exceptionally associated the H3F3A G34R mutation and MYCN amplification as well as 1p36 loss and 10q loss. Furthermore, by exhibiting a remarkable methylation profile, it emphasised the oncogenic power of G34R mutation connecting gliomagenesis and chromatin regulation.

关键词
(Epi)genetic Glioma Molecular Subtypes Tunisia
文献信息
期刊
Molecular neurobiology
期刊简称
Mol Neurobiol
发表日期
0000-00-00
收录日期
2016-03-09
更新日期
2016-03-10
语言
英语
国家/地区
United States
NLM ID
8900963
分析服务
分析服务

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