Use of the polymerase chain reaction for the detection of CBF beta/MYH11 fusion transcripts in patients with acute myeloid leukemia.

被引:0
作者
Schmohl, D [1 ]
Dohner, H [1 ]
Fischer, K [1 ]
Schlenk, R [1 ]
Haas, R [1 ]
Moos, M [1 ]
机构
[1] UNIV HEIDELBERG,DEPT INTERNAL MED 5,D-69115 HEIDELBERG,GERMANY
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R5 [内科学];
学科分类号
1002 ; 100201 ;
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页码:3101 / 3101
页数:1
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[41]   Detection and quantitation of the CBF beta/MYH11 transcripts associated with the inv(16) in presentation and follow-up samples from patients with AML [J].
Evans, PAS ;
Short, MA ;
Jack, AS ;
Norfolk, DR ;
Child, JA ;
Shiach, CR ;
Davies, F ;
Tobal, K ;
Yin, JAL ;
Morgan, GJ .
LEUKEMIA, 1997, 11 (03) :364-369
[42]   Coexistence of p210BCR-ABL and CBFβ-MYH11 fusion genes in myeloid leukemia: A report of 4 cases [J].
Wang, Yuan-Yuan ;
Ding, Wen-Jing ;
Jiang, Feng ;
Chen, Zi-Xing ;
Cen, Jian-Nong ;
Qi, Xiao-Fei ;
Liang, Jian-Ying ;
Liu, Dan-Dan ;
Pan, Jin-Lan ;
Chen, Su-Ning .
ONCOLOGY LETTERS, 2017, 14 (05) :5171-5178
[43]   Real time RT-PCR for the detection and quantification of CBFβ/MYH11 fusion transcripts in INV(16) positive AML. [J].
Hoellge, W ;
Wattjes, M ;
Nagel, S ;
Doden, M ;
Krug, U ;
Ganser, A ;
Heil, G .
BLOOD, 1999, 94 (10) :207B-207B
[44]   HETEROGENEITY IN CBF-BETA/MYH11 FUSION MESSAGES ENCODED BY INV(16) AND T(16-16) IN ACUTE MYELOGENOUS LEUKEMIA (AML) [J].
DOWNING, J ;
SHURTLEFF, S ;
MEYERS, S ;
HIEBERT, S ;
RAIMONDI, S ;
HEAD, D ;
WILLMAN, C ;
WOLMAN, S ;
CARROLL, A ;
BEHM, F ;
COLLINS, F ;
LIU, P .
LABORATORY INVESTIGATION, 1995, 72 (01) :A109-A109
[45]   Cryptic insertion of CBFB into MYH11 leading to a type D fusion in acute myeloid leukemia with normal karyotype [J].
Yamamoto, Katsuya ;
Kurata, Keiji ;
Kitao, Akihito ;
Sakai, Rina ;
Matsumoto, Sakuya ;
Matsumoto, Hisayuki ;
Saegusa, Jun ;
Yakushijin, Kimikazu ;
Minami, Hironobu .
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[46]   Detection and quantification of CBFB/MYH11 fusion transcripts in patients with inv(16)-positive acute myeloblastic leukemia by real-time RT-PCR [J].
Krauter, J ;
Hoellge, W ;
Wattjes, MP ;
Nagel, S ;
Heidenreich, O ;
Bunjes, D ;
Ganser, A ;
Heil, G .
GENES CHROMOSOMES & CANCER, 2001, 30 (04) :342-348
[47]   Quantification of CBF beta/MYH11 fusion transcripts by competitive RT-PCR potentially predicts patient outcome in AML with inv(16). [J].
Novak, M ;
Laczika, K ;
Hilgarth, B ;
ScheidelPetrovic, A ;
Mitterbauer, M ;
Lechner, K ;
Jaeger, U .
BLOOD, 1996, 88 (10) :2236-2236
[48]   Typical CBFβ/MYH11 fusion due to insertion of the 3′-MYH11 gene into 16q22 in acute monocytic leukemia with normal chromosomes 16 and trisomies 8 and 22 [J].
Aventín, A ;
La Starza, R ;
Nomdedéu, J ;
Brunet, S ;
Sierra, J ;
Mecucci, C .
CANCER GENETICS AND CYTOGENETICS, 2000, 123 (02) :137-139
[49]   Childhood acute myeloid leukemia with CBFβ-MYH11 rearrangement:: Study of incidence, morphology, cytogenetics, and clinical outcomes of Chinese in Hong Kong [J].
Chan, NPH ;
Wong, WS ;
Ng, MLH ;
Tsang, KS ;
Lau, TT ;
Leung, Y ;
Chik, KW ;
Shing, MMK ;
Li, CK .
AMERICAN JOURNAL OF HEMATOLOGY, 2004, 76 (03) :300-303
[50]   Relevance of presenting white blood cell count and kinetics of molecular remission in the prognosis of acute myeloid leukemia with CBFβ/MYH11 rearrangement [J].
Martín, G ;
Barragán, E ;
Bolufer, P ;
Chillón, C ;
García-Sanz, R ;
Gómez, T ;
Brunet, S ;
González, M ;
Sanz, MA .
HAEMATOLOGICA, 2000, 85 (07) :699-703