Comparison of competitive-nested PCR and real-time PCR in detecting BCR-ABL fusion transcripts in chronic myeloid leukemia patients

被引:0
|
作者
JQ Guo
H Lin
H Kantarjian
M Talpaz
R Champlin
M Andreeff
A Glassman
RB Arlinghaus
机构
[1] University of Texas MD Anderson Cancer Center,Department of Molecular Pathology
[2] University of Texas MD Anderson Cancer Center,Department of Leukemia
[3] University of Texas MD Anderson Cancer Center,Department of Bioimmunotherapy
[4] University of Texas MD Anderson Cancer Center,Department of Bone Marrow Transplantation
[5] University of Texas MD Anderson Cancer Center,Department of Lab Medicine
来源
Leukemia | 2002年 / 16卷
关键词
real-time RT-PCR; quantitative competitive RT-PCR; BCR-ABL transcripts; chronic myeloid leukemia;
D O I
暂无
中图分类号
学科分类号
摘要
Real-time RT-PCR has great advantages for estimating transcript levels in a variety of situations. These include relative rapid assay times (hours), reliability and ease of performing replicate analyses. In contrast, competitive PCR is a very labor-intensive procedure requiring a few days to generate useful data. We compared the same samples from CML patients by both methods. Importantly, we used the Bcr-Abl junction plasmid DNA, which is used as a competitor in the manual competitive PCR assay, to generate a standard curve for the real-time assay. This permitted reporting the real-time data as the number of BCR-ABL transcripts per μg of total RNA, which is the same format used for the competitive PCR assay. In this study, a total of 435 peripheral blood and marrow samples from 285 CML patients were analyzed by RT-PCR; these patients were undergoing therapy by STI-571, interferon, and bone marrow transplantation treatment. Most samples also had assay values for the Philadelphia chromosome (Ph), FISH and Western blotting for the Bcr-Abl oncoprotein. Our findings indicated that the real-time assay was less sensitive than the manual competitive RT-PCR assay (t = 5.118; P < 0.001). Of interest, the transcript levels in cell line mixtures with various ratios of K562/KG-1 (BCR-ABL positive/negative) cells were also significantly higher with the competitive RT-PCR assays than real-time RT-PCR, except for levels of BCR-ABL below 200 transcripts per μg of RNA. In both patient and cell line experiments, dividing the BCR-ABL transcripts by the total ABL transcripts virtually eliminated the difference between real-time BCR-ABL transcript values and quantitative competitive BCR-ABL transcript values, indicating that both BCR-ABL and ABL transcripts were underestimated by the real-time assay. In addition, the increased sensitivity of the nested, competitive RT-PCR was readily apparent in patients with minimal residual disease, which by the real-time were negative in the majority of patients but were positive by nested, competitive RT-PCR in 44.6% (n = 29) of samples analyzed (n = 65). These findings indicate that real-time RT-PCR, when normalized for the total ABL transcripts, can be used to monitor CML patients during therapy, but we suggest that nested, competitive RT-PCR be used to determine BCR-ABL/ABL transcript ratios at low transcript values or especially when real-time analyses are negative.
引用
收藏
页码:2447 / 2453
页数:6
相关论文
共 50 条
  • [31] Real-time quantitative PCR monitoring of BCR-ABL transcript level in chronic myeloid leukemia: Standardization, detection of mutants and diagnostic pitfall
    Wong, C.
    Ma, E.
    JOURNAL OF MOLECULAR DIAGNOSTICS, 2007, 9 (05): : 667 - 667
  • [32] Detection of BCR-ABL transcripts by Multiplex and nested PCR in different haematological disorders
    Otazú, IB
    Zalcberg, I
    Tabak, DG
    Dobbin, J
    Seuánez, HN
    LEUKEMIA & LYMPHOMA, 2000, 37 (1-2) : 205 - 211
  • [33] Detection of BCR-ABL transcripts in chronic myeloid leukemia (CML) using a novel "real time" quantitative RT-PCR assay: A report on 15 patients.
    Preudhomme, C
    Merlat, A
    Roumier, C
    Duflos-Gardel, N
    Jouet, JP
    Cosson, A
    Fenaux, P
    BLOOD, 1998, 92 (10) : 93A - 93A
  • [34] Prognostic value of real-time PCR BCR-ABL transcript monitoring after allogeneic stem cell transplantation in chronic myeloid leukemia patients.
    Solarska, Iwona
    Majewski, Miroslaw
    Nasilowska-Adamska, Barbara
    Zaucha, Jan
    Kania, Iwona
    Makuch-Lasica, Hanna
    Lewandowska, Monika
    Nowak, Grazyna
    Rzepecki, Piotr
    Hellmann, Andrzej
    Marianska, Bozena
    Warzocha, Krzysztof
    BLOOD, 2006, 108 (11) : 291B - 291B
  • [35] Real-time quantification of different types of bcr-abl transcript in chronic myeloid leukemia
    Amabile, M
    Gannini, B
    Testoni, N
    Montefusco, V
    Rosti, G
    Zardini, C
    Terragna, C
    Buonamici, S
    Ottaviani, E
    Soverini, S
    Fiacchini, M
    Bassi, S
    de Vivo, A
    Trabacchi, E
    Saglio, G
    Pane, F
    Baccarani, M
    Tura, S
    Martinelli, G
    HAEMATOLOGICA, 2001, 86 (03) : 252 - 259
  • [36] Quantification of Bcr-Abl transcripts in chronic myelogenous leukemia (CML) using standardized, internally controlled, competitive differential PCR (CD-PCR)
    Nagel, S
    Schmidt, M
    Thiede, C
    Huhn, D
    Neubauer, A
    NUCLEIC ACIDS RESEARCH, 1996, 24 (20) : 4102 - 4103
  • [37] Frequency of BCR-ABL Fusion Transcripts in Saudi Patients with Chronic Myelogenous Leukemia
    Elbjeirami, W. M.
    Abdulwahab, A.
    Elsayed, H.
    Elnagdi, N.
    Abd Allatif, N.
    Al-Jedani, H.
    Al Shaikh, A.
    Al-Allaf, F. A.
    JOURNAL OF MOLECULAR DIAGNOSTICS, 2015, 17 (06): : 766 - 766
  • [38] A multiplex PCR for improved detection of typical and atypical BCR-ABL fusion transcripts
    Burmeister, Thomas
    Reinhardt, Richard
    LEUKEMIA RESEARCH, 2008, 32 (04) : 579 - 585
  • [39] Multiplex RT-PCR for the detection of common BCR-ABL fusion transcripts in paraffin-embedded tissues from patients with chronic myeloid leukemia and acute lymphoblastic leukemia
    Bock, O
    Reising, D
    Kreipe, H
    DIAGNOSTIC MOLECULAR PATHOLOGY, 2003, 12 (03) : 119 - 123
  • [40] MULTIPLEX PCR OF BCR-ABL FUSION TRANSCRIPTS IN PHILADELPHIA-POSITIVE ACUTE LYMPHOBLASTIC-LEUKEMIA
    LEE, A
    KIRK, J
    EDMANDS, S
    RADICH, J
    PCR-METHODS AND APPLICATIONS, 1995, 4 (05): : 283 - 287