Prognostic impact of deletions at 1p36 and numerical aberrations in Ewing tumors
- 8 February 1999
- journal article
- research article
- Published by Wiley in Genes, Chromosomes and Cancer
- Vol. 24 (3) , 243-254
- https://doi.org/10.1002/(sici)1098-2264(199903)24:3<243::aid-gcc10>3.0.co;2-a
Abstract
Ewing's sarcoma, peripheral primitive neuroectodermal tumors, and Askin tumors are referred to as Ewing tumors (ETs), and are characterized by high MIC2 expression and a t(11;22)(q24;q12) or other rearrangements involving 22q12. In addition to these constant aberrations, facultative numerical and structural aberrations have been reported: gains of chromosomes 8 and 12, the unbalanced translocation t(1;16), and deletions at the short arm of chromosome 1. To evaluate the frequency and to study the biological impact of these facultative aberrations, we analyzed tumor specimens from 58 ET patients by classical cytogenetics and/or in situ hybridization techniques and compared these data with clinical parameters. Gains of chromosomes 8 and 12 were detected in 55% (32/58) and 24% (14/58) of the cases, respectively. Loss of chromosome 16 or der(16)t(1;16) chromosomes were found in 20% (10/51); deletions at 1p36 were observed in 18% (9/51) of the cases evaluated. The presence of these aberrations did not correlate with age and sex of the patients, with the location of the primary tumor or with the extent of disease at diagnosis by chi‐square analysis and Fisher's exact test. Patients with tumors harboring gains of chromosome 8 showed a slightly better clinical outcome (n = 14/30, P = 0.17), whereas gains of chromosome 12 did not influence the clinical outcome (n = 7/30, P = 0.63). However, Kaplan and Meier analysis revealed that deletions at the short arm of chromosome 1 were associated with an unfavorable outcome in patients with localized disease (n = 6/22; P = 0.004). Genes Chromosomes Cancer 24:243–254, 1999.Keywords
This publication has 42 references indexed in Scilit:
- Metastatic extraosseous Ewing tumor: Association of the additional translocation der(16)t(1;16) with the variant EWS/ERG rearrangement in a case of cytogenetically inconspicuous chromosome 22Cancer Genetics and Cytogenetics, 1996
- A Novel Chimera Gene betweenEWSandE1A-F, Encoding the Adenovirus E1A Enhancer-Binding Protein, in Extraosseous Ewing's SarcomaBiochemical and Biophysical Research Communications, 1996
- Regression and progression in neuroblastoma. Does genetics predict tumour behaviour?European Journal Of Cancer, 1995
- Detection of numerical and structural chromosome abnormalities in pediatric germ cell tumors by means of interphase cytogeneticsGenes, Chromosomes and Cancer, 1994
- High-Resolution Fluorescence Mapping of 46 DNA Markers to the Short Arm of Human Chromosome 1Genomics, 1993
- The prognostic significance of the DNA content in Ewing's sarcoma: a retrospective cytophotometric and flow cytometric studyHistopathology, 1993
- Localization and polymorphism of a chromosome 12-specific α satellite DNA sequenceCytogenetic and Genome Research, 1990
- Extraosseous Ewing's sarcoma. A study of 42 casesCancer, 1989
- Delineation of individual human chromosomes in metaphase and interphase cells by in situ suppression hybridization using recombinant DNA librariesHuman Genetics, 1988
- Chromosome Translocation in Peripheral NeuroepitheliomaNew England Journal of Medicine, 1984