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E-SMDB-3878 comparative genomic hybridization by ar… Homo sapiens

Comparative genomic hybridization of breast tumors to identify links between copy number alterations and specific clinicopathological parameter

·发布 Dec. 1, 2006 ·更新 May 13, 2014
0
样本数
86
实验数
7
芯片平台
1
相关文献
实验描述

Breast cancer is a leading cause of cancer-death among women, where the clinicopathological features of tumors are used to prognosticate and guide therapy. DNA copy number alterations (CNAs), which occur frequently in breast cancer and define key pathogenetic events, are also potentially useful prognostic or predictive factors. Here, we report a genome-wide array-based comparative genomic hybridization (array CGH) survey of CNAs in 89 breast tumors from a patient cohort with locally advanced disease. Statistical analysis links distinct cytoband loci harboring CNAs to specific clinicopathological parameters, including tumor grade, estrogen receptor status, presence of TP53 mutation, and overall survival. Notably, distinct spectra of CNAs also underlie the different subtypes of breast cancer recently defined by expression-profiling, implying these subtypes develop along distinct genetic pathways. In addition, higher numbers of gains/losses are associated with the "basal-like" tumor subtype, while high-level DNA amplification is more frequent in "luminal-B" subtype tumors, suggesting also that distinct mechanisms of genomic instability might underlie their pathogenesis. The identified CNAs may provide a basis for improved patient prognostication, as well as a starting point to define important genes to further our understanding of the pathobiology of breast cancer.

参考文献
Distinct patterns of DNA copy number alteration are associated with different clinicopathological features and gene-expression subtypes of breast cancer.
Bergamaschi A, Kim YH, Wang P, Sorlie T, Hernandez-Boussard T, Lonning PE, Tibshirani R, Borresen-Dale AL, Pollack JR
PMID: 16897746
芯片平台
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样本属性
Organi
Homo sapiens
Organism
Homo sapiens
实验信息
登记号
E-SMDB-3878
实验类型
comparative genomic hybridization by array
物种
Homo sapiens
发布日期
Dec. 1, 2006
更新日期
May 13, 2014
提交者
Janos Demeter、 Therese Sorlie、 Charles Perou
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