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PMID: 20406234 已发表 · ppublish 英语

Intratumoral patterns of genomic imbalance in glioblastomas.

Brain pathology (Zurich, Switzerland) ·第 20 卷 ·第 5 期 ·2010-11-24

Nobusawa Sumihito, Lachuer Joel, Wierinckx Anne, Kim Young Ho, Huang Jian, Legras Catherine, Kleihues Paul, Ohgaki Hiroko

摘要

Glioblastomas are morphologically and genetically heterogeneous, but little is known about the regional patterns of genomic imbalance within glioblastomas. We recently established a reliable whole genome amplification (WGA) method to randomly amplify DNA from paraffin-embedded histological sections with minimum amplification bias [Huang et al (J Mol Diagn 11: 109-116, 2009)]. In this study, chromosomal imbalance was assessed by array comparative genomic hybridization (CGH; Agilent 105K, Agilent Technologies, Santa Clara, CA, USA), using WGA-DNA from two to five separate tumor areas of 14 primary glioblastomas (total, 41 tumor areas). Chromosomal imbalances significantly differed among glioblastomas; the only alterations that were observed in > or =6 cases were loss of chromosome 10q, gain at 7p and loss of 10p. Genetic alterations common to all areas analyzed within a single tumor included gains at 1q32.1 (PIK3C2B, MDM4), 4q11-q12 (KIT, PDGFRA), 7p12.1-11.2 (EGFR), 12q13.3-12q14.1 (GLI1, CDK4) and 12q15 (MDM2), and loss at 9p21.1-24.3 (p16(INK4a)/p14(ARF)), 10p15.3-q26.3 (PTEN, etc.) and 13q12.11-q34 (SPRY2, RB1). These are likely to be causative in the pathogenesis of glioblastomas (driver mutations). In addition, there were numerous tumor area-specific genomic imbalances, which may be either nonfunctional (passenger mutations) or functional, but constitute secondary events reflecting progressive genomic instability, a hallmark of glioblastomas.

文献信息
期刊
Brain pathology (Zurich, Switzerland)
期刊简称
Brain Pathol
发表日期
2010-11-24
收录日期
2010-08-10
更新日期
2012-06-22
语言
英语
国家/地区
Switzerland
NLM ID
9216781
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