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Flow Cytometric Immunobead Assay for Detection of BCR-ABL1 Fusion Proteins in Chronic Myleoid Leukemia: Comparison with FISH and PCR Techniques

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 st...

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Autores principales: Recchia, Anna Grazia, Caruso, Nadia, Bossio, Sabrina, Pellicanò, Mariavaleria, De Stefano, Laura, Franzese, Stefania, Palummo, Angela, Abbadessa, Vincenzo, Lucia, Eugenio, Gentile, Massimo, Vigna, Ernesto, Caracciolo, Clementina, Agostino, Antolino, Galimberti, Sara, Levato, Luciano, Stagno, Fabio, Molica, Stefano, Martino, Bruno, Vigneri, Paolo, Di Raimondo, Francesco, Morabito, Fortunato
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4482505/
https://www.ncbi.nlm.nih.gov/pubmed/26111048
http://dx.doi.org/10.1371/journal.pone.0130360
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author Recchia, Anna Grazia
Caruso, Nadia
Bossio, Sabrina
Pellicanò, Mariavaleria
De Stefano, Laura
Franzese, Stefania
Palummo, Angela
Abbadessa, Vincenzo
Lucia, Eugenio
Gentile, Massimo
Vigna, Ernesto
Caracciolo, Clementina
Agostino, Antolino
Galimberti, Sara
Levato, Luciano
Stagno, Fabio
Molica, Stefano
Martino, Bruno
Vigneri, Paolo
Di Raimondo, Francesco
Morabito, Fortunato
author_facet Recchia, Anna Grazia
Caruso, Nadia
Bossio, Sabrina
Pellicanò, Mariavaleria
De Stefano, Laura
Franzese, Stefania
Palummo, Angela
Abbadessa, Vincenzo
Lucia, Eugenio
Gentile, Massimo
Vigna, Ernesto
Caracciolo, Clementina
Agostino, Antolino
Galimberti, Sara
Levato, Luciano
Stagno, Fabio
Molica, Stefano
Martino, Bruno
Vigneri, Paolo
Di Raimondo, Francesco
Morabito, Fortunato
author_sort Recchia, Anna Grazia
collection PubMed
description 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-ABL1(IS) 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.
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spelling pubmed-44825052015-07-01 Flow Cytometric Immunobead Assay for Detection of BCR-ABL1 Fusion Proteins in Chronic Myleoid Leukemia: Comparison with FISH and PCR Techniques Recchia, Anna Grazia Caruso, Nadia Bossio, Sabrina Pellicanò, Mariavaleria De Stefano, Laura Franzese, Stefania Palummo, Angela Abbadessa, Vincenzo Lucia, Eugenio Gentile, Massimo Vigna, Ernesto Caracciolo, Clementina Agostino, Antolino Galimberti, Sara Levato, Luciano Stagno, Fabio Molica, Stefano Martino, Bruno Vigneri, Paolo Di Raimondo, Francesco Morabito, Fortunato PLoS One Research Article 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-ABL1(IS) 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. Public Library of Science 2015-06-25 /pmc/articles/PMC4482505/ /pubmed/26111048 http://dx.doi.org/10.1371/journal.pone.0130360 Text en © 2015 Recchia et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Recchia, Anna Grazia
Caruso, Nadia
Bossio, Sabrina
Pellicanò, Mariavaleria
De Stefano, Laura
Franzese, Stefania
Palummo, Angela
Abbadessa, Vincenzo
Lucia, Eugenio
Gentile, Massimo
Vigna, Ernesto
Caracciolo, Clementina
Agostino, Antolino
Galimberti, Sara
Levato, Luciano
Stagno, Fabio
Molica, Stefano
Martino, Bruno
Vigneri, Paolo
Di Raimondo, Francesco
Morabito, Fortunato
Flow Cytometric Immunobead Assay for Detection of BCR-ABL1 Fusion Proteins in Chronic Myleoid Leukemia: Comparison with FISH and PCR Techniques
title Flow Cytometric Immunobead Assay for Detection of BCR-ABL1 Fusion Proteins in Chronic Myleoid Leukemia: Comparison with FISH and PCR Techniques
title_full Flow Cytometric Immunobead Assay for Detection of BCR-ABL1 Fusion Proteins in Chronic Myleoid Leukemia: Comparison with FISH and PCR Techniques
title_fullStr Flow Cytometric Immunobead Assay for Detection of BCR-ABL1 Fusion Proteins in Chronic Myleoid Leukemia: Comparison with FISH and PCR Techniques
title_full_unstemmed Flow Cytometric Immunobead Assay for Detection of BCR-ABL1 Fusion Proteins in Chronic Myleoid Leukemia: Comparison with FISH and PCR Techniques
title_short Flow Cytometric Immunobead Assay for Detection of BCR-ABL1 Fusion Proteins in Chronic Myleoid Leukemia: Comparison with FISH and PCR Techniques
title_sort flow cytometric immunobead assay for detection of bcr-abl1 fusion proteins in chronic myleoid leukemia: comparison with fish and pcr techniques
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4482505/
https://www.ncbi.nlm.nih.gov/pubmed/26111048
http://dx.doi.org/10.1371/journal.pone.0130360
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