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Characterization of breast cancer by array comparative genomic hybridization.

机译:通过阵列比较基因组杂交表征乳腺癌。

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摘要

Cancer progression is due to the accumulation of recurrent genomic alterations that induce growth advantage and clonal expansion. Most of these genomic changes can be detected using the array comparative genomic hybridization (CGH) technique. The accurate classification of these genomic alterations is expected to have an important impact on translational and basic research. Here we review recent advances in CGH technology used in the characterization of different features of breast cancer. First, we present bioinformatics methods that have been developed for the analysis of CGH arrays; next, we discuss the use of array CGH technology to classify tumor stages and to identify and stratify subgroups of patients with different prognoses and clinical behaviors. We finish our review with a discussion of how CGH arrays are being used to identify oncogenes, tumor suppressor genes, and breast cancer susceptibility genes.
机译:癌症的进展归因于反复出现的基因组改变,这些改变会诱导生长优势和克隆扩增。可以使用阵列比较基因组杂交(CGH)技术检测大多数这些基因组变化。这些基因组改变的准确分类有望对翻译和基础研究产生重要影响。在这里,我们回顾了用于表征乳腺癌不同特征的CGH技术的最新进展。首先,我们介绍了为分析CGH阵列而开发的生物信息学方法;接下来,我们讨论使用阵列CGH技术对肿瘤分期进行分类,并对具有不同预后和临床行为的患者亚组进行分类和分层。我们将通过讨论如何使用CGH阵列鉴定癌基因,抑癌基因和乳腺癌易感性基因来结束本综述。

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