首页> 外文期刊>Journal of Molecular Diagnostics >Glioma Test Array for Use with Formalin-Fixed, Paraffin-Embedded Tissue Array Comparative Genomic Hybridization Correlates with Loss of Heterozygosity and Fluorescence in Situ Hybridization
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Glioma Test Array for Use with Formalin-Fixed, Paraffin-Embedded Tissue Array Comparative Genomic Hybridization Correlates with Loss of Heterozygosity and Fluorescence in Situ Hybridization

机译:用于福尔马林固定,石蜡包埋的组织阵列的神经胶质瘤测试阵列比较基因组杂交与杂合性丧失和荧光原位杂交相关

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Array-based comparative genomic hybridization (aCGH) is a powerful, high-throughput tool for whole genome analysis. Until recently, aCGH could only be reproducibly performed on frozen tissue samples and with significant tissue amounts. For brain tumors however, paraffin-embedded tissue blocks from small stereotactic biopsies may be the only tissue routinely available. The development of methods to analyze formalin-fixed, paraffin-embedded (FFPE) material therefore has the potential to impact molecular diagnosis in a significant way. To this end, we constructed a BAC array representing chromosomes 1, 7, 19, and X because 1p/19q deletion and EGFR gene amplification provide clinically relevant information for glioma diagnosis. We also optimized a two-step labeling procedure using an amine-modified nucleotide for generating aCGH probes. Using this approach, we analyzed a series of 28 FFPE oligodendroglial tumors for alterations of chromosomes 1, 7, and 19. We also independently assayed these tumors for 1p/19q deletion by fluorescence in situ hybridization and by loss of heterozygosity analyses. The concordance between aCGH, standard loss of heterozygosity and fluorescence in situ hybridization was nearly 100% for the chromosomes analyzed. These results suggest that aCGH could offer an improved molecular diagnostic approach for gliomas because of its ability to detect clinically relevant molecular alterations in small FFPE specimens.
机译:基于阵列的比较基因组杂交(aCGH)是用于全基因组分析的强大,高通量的工具。直到最近,aCGH只能在冰冻的组织样本上可再现地进行,并且组织量很大。然而,对于脑肿瘤,常规立体定向活检的石蜡包埋组织块可能是唯一常规可用的组织。因此,分析福尔马林固定,石蜡包埋(FFPE)材料的方法的开发可能会以重要的方式影响分子诊断。为此,我们构建了一个代表染色体1、7、19和X的BAC阵列,因为1p / 19q缺失和EGFR基因扩增为神经胶质瘤的诊断提供了临床相关信息。我们还使用胺修饰的核苷酸优化了两步标记程序,以生成aCGH探针。使用这种方法,我们分析了一系列28种FFPE少突神经胶质瘤的1号,7号和19号染色体的改变。我们还通过荧光原位杂交和杂合性丧失的分析独立地检测了这些肿瘤中1p / 19q缺失。对于所分析的染色体,aCGH,杂合性的标准缺失与荧光原位杂交之间的一致性接近100%。这些结果表明,aCGH可以检测小的FFPE标本中与临床相关的分子变化,因此可以为神经胶质瘤提供一种改进的分子诊断方法。

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