Apparently unrelated clones shown by spectral karyotyping to represent clonal evolution of cryptic t(10;11)(p13;q23) in a patient with acute monoblastic leukemia

被引:13
作者
Stark, B
Jeison, M
Gobuzov, R
Finkelshtein, S
Ash, S
Avrahami, G
Cohen, IJ
Stein, J
Yaniv, I
Zaizov, R
Bar-Am, I
机构
[1] Schneider Childrens Med Ctr Israel, Dept Pediat Hematol Oncol, Canc Cytogenet Lab, IL-49202 Petah Tiqwa, Israel
[2] Tel Aviv Univ, Sackler Fac Med, IL-69978 Tel Aviv, Israel
[3] Appl Spectral Imaging Ltd, Migdal Haemek, Israel
关键词
D O I
10.1016/S0165-4608(00)00211-9
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
The accurate genetic classification of acute leukemia is of the utmost clinical importance for treatment stratification. In the present study, we report on a young girl with aggressive acute monoblastic leukemia (AML) (M5b) with skin, lymph node, and bone marrow involvement, in whom cytogenetic analysis revealed three clones with different secondary chromosomal changes. Two clones had the secondary +8 and del(9q) aberrations, with the der(11)t(1;11) in the second one; the third clone was apparently unrelated to the others, and herd add(7)(p?21),-13,+22, Using the spectral karyotyping (SKY) technique, we found that all three clones originated from a common clone that harbored the hidden primary t(10;11)(p13;q23) or ifs derivatives, suggesting clonal evolution. The first clone had the balanced t(10;11), the second had its derivative, der(10)t(10;11), and the third had the other derivative, der(11)t(10;11). On fluorescence in situ hybridization (FISH), MLL gene splitting, with translocation of ifs centromeric portion to 10p, and deletion of its telomeric portion, was demonstrated. In conclusion, the detection of the very poor prognostic t(10;11) aberration in AML, was possible by complementing the traditional cytogenetic analysis with SKY and FISH. (C) 2000 Elsevier Science Inc. All rights reserved.
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页码:105 / 110
页数:6
相关论文
共 38 条
[1]   Interstitial insertion of AF10 into the ALL1 gene in a case of infant acute lymphoblastic leukemia [J].
Angioni, A ;
La Starza, R ;
Mecucci, C ;
Sprovieri, T ;
Matteucci, C ;
De Rossi, G ;
Balloni, P ;
Cimino, G .
CANCER GENETICS AND CYTOGENETICS, 1998, 107 (02) :107-110
[2]  
BEVERLOO HB, 1995, CANCER RES, V55, P4220
[3]  
BORKHARDT A, 1995, LEUKEMIA, V9, P1796
[4]  
CARTER M, 1991, LEUKEMIA, V5, P561
[5]  
CASILLAS J, 1999, P ASCO, V18, pA566
[6]   THE T(10-11) TRANSLOCATION IN ACUTE MYELOID-LEUKEMIA (M5) CONSISTENTLY FUSES THE LEUCINE-ZIPPER MOTIF OF AF10 ONTO THE HRX GENE [J].
CHAPLIN, T ;
BERNARD, O ;
BEVERLOO, HB ;
SAHA, V ;
HAGEMEIJER, A ;
BERGER, R ;
YOUNG, BD .
BLOOD, 1995, 86 (06) :2073-2076
[7]  
CHERIF D, 1994, LEUKEMIA, V8, P578
[8]  
Dreyling MH, 1998, BLOOD, V91, P4662
[9]   Design and validation of DNA probe sets for a comprehensive interphase cytogenetic analysis of acute myeloid leukemia [J].
Fischer, K ;
Scholl, C ;
Salat, J ;
Frohling, S ;
Schlenk, R ;
Bentz, M ;
Stilgenbauer, S ;
Lichter, P ;
Dohner, H .
BLOOD, 1996, 88 (10) :3962-3971
[10]   Complications of acute leukemia - Case one: Congenital acute myelogenous leukemia with cutaneous involvement [J].
Frangoul, HA ;
Patterson, K .
JOURNAL OF CLINICAL ONCOLOGY, 1998, 16 (09) :3199-3200