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全基因组芯片比较杂交:一种减少参考通道杂交的策略。

Across array comparative genomic hybridization: a strategy to reduce reference channel hybridizations.

作者信息

Buffart Tineke E, Israeli Daniëlle, Tijssen Marianne, Vosse Sjoerd J, Mrsić Alan, Meijer Gerrit A, Ylstra Bauke

机构信息

Department of Pathology, VU University Medical Center, Amsterdam, The Netherlands.

出版信息

Genes Chromosomes Cancer. 2008 Nov;47(11):994-1004. doi: 10.1002/gcc.20605.

DOI:10.1002/gcc.20605
PMID:18663753
Abstract

Array comparative genomic hybridization (array CGH) is widely used for studying chromosomal copy number aberrations (CNAs) on a genome-wide and high-resolution scale in heritable disorders and cancers. The aim of this study was to test if the separate channels of dual channel arrays can be interchanged (across array) to either make array CGH more sensitive and cost effective and/or to generate profiles of CNAs and copy number variations (CNVs). Therefore the BT474 breast cancer cell line was compared with a mix of normal reference DNAs hybridized on different arrays and days and DNA copy number profiles were evaluated. Quality was assessed, using regular dual channel array CGH as a standard, using four quality measures, i.e., the median absolute deviation value of chromosome 2, the amplitude of the ERBB2 gene amplification, a deletion on chromosome 9, and the deflection on chromosome 8. The quality of the across array CGH profiles matched or even surpassed the quality of regular dual channel array CGH. In addition, this across array approach was tested for genomic DNA derived from formalin-fixed paraffin-embedded tumors tissue samples, resulting in high-quality copy number profiles, comparable to regular dual channel arrays. Finally, we demonstrated this approach to obtain both CNA and CNV profiles. In summary, across array CGH avoids redundant hybridizations of the same reference material in every experiment either allowing hybridization of two test samples on one array or producing both CNA and CNV profiles simultaneously.

摘要

阵列比较基因组杂交(array CGH)被广泛用于在全基因组和高分辨率水平上研究遗传性疾病和癌症中的染色体拷贝数畸变(CNA)。本研究的目的是测试双通道阵列的单独通道是否可以互换(跨阵列),以使阵列CGH更灵敏且更具成本效益,和/或生成CNA和拷贝数变异(CNV)的图谱。因此,将BT474乳腺癌细胞系与在不同阵列和不同日期杂交的正常参考DNA混合物进行比较,并评估DNA拷贝数图谱。以常规双通道阵列CGH为标准,使用四种质量指标评估质量,即2号染色体的中位数绝对偏差值、ERBB2基因扩增的幅度、9号染色体的缺失以及8号染色体的偏移。跨阵列CGH图谱的质量与常规双通道阵列CGH相当甚至更高。此外,对来自福尔马林固定石蜡包埋肿瘤组织样本的基因组DNA进行了跨阵列方法测试,得到了与常规双通道阵列相当的高质量拷贝数图谱。最后,我们证明了这种方法可以同时获得CNA和CNV图谱。总之,跨阵列CGH避免了在每个实验中对相同参考材料进行冗余杂交,既可以在一个阵列上杂交两个测试样本,也可以同时生成CNA和CNV图谱。

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