| Literature DB >> 26111048 |
Anna Grazia Recchia1, Nadia Caruso2, Sabrina Bossio1, Mariavaleria Pellicanò1, Laura De Stefano1, Stefania Franzese2, Angela Palummo1, Vincenzo Abbadessa3, Eugenio Lucia2, Massimo Gentile2, Ernesto Vigna2, Clementina Caracciolo3, Antolino Agostino4, Sara Galimberti5, Luciano Levato6, Fabio Stagno7, Stefano Molica6, Bruno Martino8, Paolo Vigneri9, Francesco Di Raimondo7, Fortunato Morabito10.
Abstract
Chronic Myeloid Leukemia (CML) is characterized by a balanced translocation juxtaposing the Abelson (ABL) and breakpoint cluster region (BCR) genes. The resulting BCR-ABL1 oncogene leads to increased proliferation and survival of leukemic cells. Successful treatment of CML has been accompanied by steady improvements in our capacity to accurately and sensitively monitor therapy response. Currently, measurement of BCR-ABL1 mRNA transcript levels by real-time quantitative PCR (RQ-PCR) defines critical response endpoints. An antibody-based technique for BCR-ABL1 protein recognition could be an attractive alternative to RQ-PCR. To date, there have been no studies evaluating whether flow-cytometry based assays could be of clinical utility in evaluating residual disease in CML patients. Here we describe a flow-cytometry assay that detects the presence of BCR-ABL1 fusion proteins in CML lysates to determine the applicability, reliability, and specificity of this method for both diagnosis and monitoring of CML patients for initial response to therapy. We show that: i) CML can be properly diagnosed at onset, (ii) follow-up assessments show detectable fusion protein (i.e. relative mean fluorescent intensity, rMFI%>1) when BCR-ABL1IS transcripts are between 1-10%, and (iii) rMFI% levels predict CCyR as defined by FISH analysis. Overall, the FCBA assay is a rapid technique, fully translatable to the routine management of CML patients.Entities:
Mesh:
Substances:
Year: 2015 PMID: 26111048 PMCID: PMC4482505 DOI: 10.1371/journal.pone.0130360
Source DB: PubMed Journal: PLoS One ISSN: 1932-6203 Impact factor: 3.240
Fig 1Detection limit using FCBA BCR-ABL1 protein serial dilution curve.
The CML cell line K562 was diluted in the BCR-ABL-negative cell line, HL60. Negative cut-off median PE value for this series was 105. Assay sensitivity was compared with real-time quantitative PCR (RQ-PCR) of BCR-ABL1 transcripts for each dilution and standardized according to the International scale (IS). The protein assay sensitivity indicated a loss of sensitivity of the FCBA assay at a dilution between 0.1 and 0.01% K562 which corresponds to a %BCR-ABL1/ABLIS mRNA ratio between 0.054 and 0.60%.
Fig 2Screening clinical samples for BCR-ABL1 protein.
A total of 278 cellular samples were screened for the presence of BCRABL1 protein using the FCBA assay; results are stratified by the Relative MFI% BCR-ABL. The cut-off MFI value of the Negative Control group was calculated as the mean MFI plus two standard deviations, this value was re-calculated for each test kit utilized. Relative %MFI (rMFI%) was then calculated as [(MFISample−MFINormal cut-off) / MFINormal cut-off] × 100 in order to compare data across kits. A relative MFI%>1 indicates a positive test. Twenty-three samples from other hematological disorders (including 4 AML), 14 suspected ALL and 88 samples from patients with neutrophilia and/or thrombocytosis suspected of CML diagnosis; and 155 CML serial follow-up samples were studied. See S1 Table for patient details.
Fig 3Determination of a BCR-ABLIS cut-off level.
Receiver operator curve (ROC) analysis was used in 238 samples to determine the best BCR-ABL1IS cut-off level [1.68% (AUC = 0.97, P<0.001)] able to discriminate cases with a positive from negative FCBA result.
Comparison of Flow-Cytometric Bead Assay (FCBA) vs. RQ-PCR for Detection of BCR-ABL1 Expression in CML Follow-Up.
| Molecular response | FCBA-Negative | FCBA-Positive |
|---|---|---|
| (According to ELN guidelines) |
|
|
| >10% | 0 | 39 (10.258–195.807) |
| ≤10–1% CHR | 10 (1.044–3.769) | 31 (1.198–9.914) |
| ≤1–0.1% CCyR | 26 (0.121–0.771) | 5 (0.143–0.519) |
| ≤ 0.1% MMR | 37 (0–0.100) | 2 (0.028–0.073) |
N = 150 serial samples, belonging to 54 CML in follow-up* (*note that 1 CML patient with p230 transcripts was not included in this analysis).
Abbreviations: FCBA, Flow-cytometric Bead Assay, CHR = complete hematologic remission, CCyR = complete cytogenetic remission, MMR = major molecular response; (RQ-PCR) = quantitative real-time PCR; ELN = European Leukemia Net [8]
Fig 4Screening Clinical Samples for BCR-ABL1 Protein.
(A) A total of 238 cellular samples were screened for the presence of BCR-ABL1 protein; results are stratified by the BCR-ABL1 quantitative real-time PCR (RQ-PCR) results for the same sample. The cut-off MFI value was calculated as in Fig 2 (see Materials and Methods). (B) Dividing all the BCR-ABL1IS levels into quartiles, shows a degree of linearity between BCR-ABL1 transcript and protein levels in the CML cases examined in (A).
Comparison of FISH analysis and BCR-ABL1 Flow-cytometry Bead Assay on CML samples (N = 105 serial samples in 37 patients).
|
| FISH-Negative | FISH-Positive | Totals |
|---|---|---|---|
| FCBA-Negative | 27 | 0 | 27 |
| FCBA-Positive | 6 | 72 | 78 |
|
| 33 | 72 | 105 |
* FCBA = Flow-cytometry Bead Assay; rMFI% range, 0.968–8.89; %BCR-ABL1IS range 0.313–10.258, with 5/6 patients with %BCR-ABL1IS ≥1%.