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Comprehensive molecular characterization of long-term glioblastoma survivors.

Authors :
Xu, Hao
Chen, Xinyu
Sun, Ying
Hu, Xiaomu
Zhang, Xuan
Wang, Ye
Tang, Qisheng
Zhu, Qiongji
Song, Kun
Chen, Hong
Sheng, Xiaofang
Yao, Yu
Zhuang, Dongxiao
Chen, Lingchao
Mao, Ying
Qin, Zhiyong
Source :
Cancer Letters. Jul2024, Vol. 593, pN.PAG-N.PAG. 1p.
Publication Year :
2024

Abstract

Fewer than 5 % glioblastoma (GBM) patients survive over five years and are termed long-term survivors (LTS), yet their molecular background is unclear. The present cohort included 72 isocitrate dehydrogenase (IDH)-wildtype GBM patients, consisting of 35 LTS and 37 short-term survivors (STS), and we employed whole exome sequencing, RNA-seq and DNA methylation array to delineate this largest LTS cohort to date. Although LTS and STS demonstrated analogous clinical characters and classical GBM biomarkers, CASC5 (P = 0.002) and SPEN (P = 0.013) mutations were enriched in LTS, whereas gene-to-gene fusions were concentrated in STS (P = 0.007). Importantly, LTS exhibited higher tumor mutation burden (P < 0.001) and copy number (CN) increase (P = 0.013), but lower mutant-allele tumor heterogeneity score (P < 0.001) and CN decrease (P = 0.026). Additionally, LTS demonstrated hypermethylated genome (P < 0.001) relative to STS. Differentially expressed and methylated genes both enriched in olfactory transduction. Further, analysis of the tumor microenvironment revealed higher infiltration of M1 macrophages (P = 0.043), B cells (P = 0.016), class-switched memory B cells (P = 0.002), central memory CD4+ T cells (P = 0.031) and CD4+ Th1 cells (P = 0.005) in LTS. We also separately analyzed a subset of patients who were methylation class-defined GBM, contributing 70.8 % of the entire cohort, and obtained similar results relative to prior analyses. Finally, we demonstrated that LTS and STS could be distinguished using a subset of molecular features. Taken together, the present study delineated unique molecular attributes of LTS GBM. • LTS were characterized by hypermethylated genome, copy number increase and higher TMB. • LTS demonstrated distinct TME and olfactory transduction-related pathway enrichment. • STS showed heterogeneous tumor tissue, more gene fusion and copy number decrease. • Most LTS and STS were confirmed as methylation class-defined GBM (m-GBM). • The molecular features of m-GBM patients were in accordance with the entire cohort. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
03043835
Volume :
593
Database :
Academic Search Index
Journal :
Cancer Letters
Publication Type :
Academic Journal
Accession number :
177757101
Full Text :
https://doi.org/10.1016/j.canlet.2024.216938