Blandin Anna Talamo, Mühlematter Dominique, Bougeon Sandrine, Gogniat Céline, Porter Sarah, Beyer Valérie, Parlier Valérie, Beckmann Jacques S, van Melle Guy, Jotterand Martine
Cancer Cytogenetics Unit, Medical Genetics Service, University Hospital and University of Lausanne (CHUV-UNIL), Lausanne, Switzerland.
Cancer Genet Cytogenet. 2008 Oct 15;186(2):69-77. doi: 10.1016/j.cancergencyto.2008.06.008.
In high hyperdiploid acute lymphoblastic leukemia (ALL), the concurrence of specific trisomies confers a more favorable outcome than hyperdiploidy alone. Interphase fluorescence in situ hybridization (FISH) complements conventional cytogenetics (CC) through its sensitivity and ability to detect chromosome aberrations in nondividing cells. To overcome the limits of manual I-FISH, we developed an automated four-color I-FISH approach and assessed its ability to detect concurrent aneuploidies in ALL. I-FISH was performed using centromeric probes for chromosomes 4, 6, 10, and 17. Parameters established for nucleus selection and signal detection were evaluated. Cutoff values were determined. Combinations of aneuploidies were considered relevant when each aneuploidy was individually significant. Results obtained in 10 patient samples were compared with those obtained with CC. Various combinations of aneuploidies were identified. All clones detected by CC were observed also by I-FISH, and I-FISH revealed numerous additional abnormal clones in all patients, ranging from < or =1% to 31.6% of cells analyzed. We conclude that four-color automated I-FISH permits the identification of concurrent aneuploidies of potential prognostic significance. Large numbers of cells can be analyzed rapidly. The large number of nuclei scored revealed a high level of chromosome variability both at diagnosis and relapse, the prognostic significance of which is of considerable clinical interest and merits further evaluation.
在高超二倍体急性淋巴细胞白血病(ALL)中,特定三体的并发比单纯超二倍体具有更有利的预后。间期荧光原位杂交(FISH)通过其敏感性和检测非分裂细胞中染色体畸变的能力补充了传统细胞遗传学(CC)。为了克服手动I-FISH的局限性,我们开发了一种自动化四色I-FISH方法,并评估了其检测ALL中并发非整倍体的能力。使用针对4号、6号、10号和17号染色体的着丝粒探针进行I-FISH。评估了为核选择和信号检测建立的参数。确定了临界值。当每个非整倍体单独具有显著性时,非整倍体的组合被认为是相关的。将10例患者样本的结果与CC获得的结果进行比较。鉴定出了各种非整倍体组合。CC检测到的所有克隆也被I-FISH观察到,并且I-FISH在所有患者中发现了许多额外的异常克隆,范围从分析细胞的<或=1%到31.6%。我们得出结论,四色自动化I-FISH允许识别具有潜在预后意义的并发非整倍体。可以快速分析大量细胞。大量计分的核显示在诊断和复发时染色体变异性都很高,其预后意义具有相当大的临床意义,值得进一步评估。