Karyotypic evolution pathways in medulloblastoma/primitive neuroectodermal tumor determined with a combination of spectral karyotyping, G-banding, and fluorescence in situ hybridization

被引:18
作者
Cohen, N
Betts, DR
Tavori, U
Toren, A
Ram, T
Constantini, S
Grotzer, MA
Amariglio, N
Rechavi, G
Trakhtenbrot, L [1 ]
机构
[1] Chaim Sheba Med Ctr, Dept Pediat Hematooncol, IL-52621 Tel Hashomer, Israel
[2] Chaim Sheba Med Ctr, Inst Hematol, IL-52621 Tel Hashomer, Israel
[3] Univ Childrens Hosp, Dept Oncol, Zurich, Switzerland
[4] Chaim Sheba Med Ctr, Dept Neurosurg, Tel Hashomer, Israel
[5] Dana Childrens Hosp, Tel Aviv Med Ctr, Dept Pediat Neurosurg, Tel Aviv, Israel
关键词
D O I
10.1016/S0165-4608(03)00285-1
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
Medulloblastomas (MBs) or primitive neuroectodermal tumors (PNETs) represent 15%-30% of pediatric brain tumors and are the most common brain tumors in children; they are rare in adults. Classification of these tumors is based on tissue morphology and is often controversial and problematic. Karyotypic analysis of these tumors using conventional cytogenetic methods is often a difficult process that may be hindered by a limited number of metaphase cells and poor chromosome morphology, often leading to only partial characterization of the chromosomal abnormalities. We investigated three primary human tumors and four cell lines (CHO-707, DAOY, D-341, and PFSK) utilizing a combination of conventional G-banding, spectral karyotyping (SKY), and fluorescence in situ hybridization (FISH) techniques. A high level of intratumoral heterogeneity was seen, with multiple numerical and structural chromosomal aberrations. The chromosomes most frequently involved in structural aberrations were chromosomes 1 (14 rearrangements), 7 (9 rearrangements), and 21 (9 rearrangements). The chromosomes most frequently involved in numerical aberrations were chromosomes 1, 12, and 13 (four cases) and chromosomes 14, 17, 19, 21, 22, and X (three cases). Numerous aberrant chromosomes were characterized only with the SKY analysis, and based on these findings multiple clones were identified, facilitating analysis of karyotypic evolution. The most frequent evolution mechanism was via polyploidization, followed by acquisition of additional numerical or structural aberrations (or both); however, the results showed that the karyotypic evolution process in these tumors is typically divergent and complex. (C) 2004 Elsevier Inc. All rights reserved.
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页码:44 / 52
页数:9
相关论文
共 38 条
[1]  
Aldosari N, 2002, NEURO-ONCOLOGY, V4, P75, DOI 10.1093/neuonc/4.2.75
[2]  
Aldosari N, 2002, ARCH PATHOL LAB MED, V126, P540
[3]   Comparative genome hybridization detects many recurrent imbalances in central nervous system primitive neuroectodermal tumours in children [J].
Avet-Loiseau, H ;
Vénuat, AM ;
Terrier-Lacombe, MJ ;
Lellouch-Tubiana, A ;
Zerah, M ;
Vassal, G .
BRITISH JOURNAL OF CANCER, 1999, 79 (11-12) :1843-1847
[4]   Molecular cytogenetic analysis of medulloblastomas and supratentorial primitive neuroectodermal tumors by using conventional banding, comparative genomic hybridization, and spectral karyotyping [J].
Bayani, J ;
Zielenska, M ;
Marrano, P ;
Ng, YK ;
Taylor, MD ;
Jay, V ;
Rutka, JT ;
Squire, JA .
JOURNAL OF NEUROSURGERY, 2000, 93 (03) :437-448
[5]   Advances in the detection of chromosomal aberrations using spectral karyotyping [J].
Bayani, J ;
Squire, JA .
CLINICAL GENETICS, 2001, 59 (02) :65-73
[6]   Routine karyotyping in Wilms tumor [J].
Betts, DR ;
Koesters, R ;
Pluss, HJ ;
Niggli, FK .
CANCER GENETICS AND CYTOGENETICS, 1997, 96 (02) :151-156
[7]  
Biegel J A, 1999, Neuro Oncol, V1, P139, DOI 10.1093/neuonc/1.2.139
[8]   ISOCHROMOSOME-17Q IN PRIMITIVE NEUROECTODERMAL TUMORS OF THE CENTRAL-NERVOUS-SYSTEM [J].
BIEGEL, JA ;
RORKE, LB ;
PACKER, RJ ;
SUTTON, LN ;
SCHUT, L ;
BONNER, K ;
EMANUEL, BS .
GENES CHROMOSOMES & CANCER, 1989, 1 (02) :139-147
[9]   Chromosomal characteristics of childhood brain tumors [J].
Bigner, SH ;
McLendon, RE ;
Fuchs, H ;
McKeever, PE ;
Friedman, HS .
CANCER GENETICS AND CYTOGENETICS, 1997, 97 (02) :125-134
[10]   STRUCTURAL CHROMOSOMAL-ABNORMALITIES IN HUMAN MEDULLOBLASTOMA [J].
BIGNER, SH ;
MARK, J ;
FRIEDMAN, HS ;
BIEGEL, JA ;
BIGNER, DD .
CANCER GENETICS AND CYTOGENETICS, 1988, 30 (01) :91-101