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Detection of kinase domain mutations in BCR::ABL1 leukemia by ultra-deep sequencing of genomic DNA

Authors :
Fundación CRIS contra el Cáncer
Sánchez, R.
Dorado, S.
Ruíz-Heredia, Y.
Martín-Muñóz, A.
Rosa-Rosa, J.M.
Ribera, J.
García, O.
Jiménez-Ubieto, A.
Carreño-Tarragona, G.
Linares, Manuel
Rufián, L.
Juárez, A.
Carrillo, J.
Espino, M.J.
Cáceres, M.
Expósito, Sara
Cuevas, B.
Vanegas, R.
Casado, Luis Felipe
Torrent, Anna
Zamora, Lurdes
Mercadal, Santiago
Coll, Rosa
Cervera, M.
Morgades, Mireia
Hernández-Rivas, José Ángel
Bravo, Pilar
Seri, Cristina
Anguita, Eduardo
Barragán, Eva
Sargas, Claudia
Ferrer-Marín, F.
Sánchez-Calero, J.
Sevilla, Julián
Ruiz, Elena
Villalón, Lucía
del Mar Herráez, M.
Riaza, R.
Magro, Elena
Steegmann, Juan Luis
Wang, C.
de Toledo, P.
García-Gutiérrez, Valentín
Ayala, Rosa
Ribera, Josep-Maria
Barrio, Santiago
Martínez-López, Joaquín
Fundación CRIS contra el Cáncer
Sánchez, R.
Dorado, S.
Ruíz-Heredia, Y.
Martín-Muñóz, A.
Rosa-Rosa, J.M.
Ribera, J.
García, O.
Jiménez-Ubieto, A.
Carreño-Tarragona, G.
Linares, Manuel
Rufián, L.
Juárez, A.
Carrillo, J.
Espino, M.J.
Cáceres, M.
Expósito, Sara
Cuevas, B.
Vanegas, R.
Casado, Luis Felipe
Torrent, Anna
Zamora, Lurdes
Mercadal, Santiago
Coll, Rosa
Cervera, M.
Morgades, Mireia
Hernández-Rivas, José Ángel
Bravo, Pilar
Seri, Cristina
Anguita, Eduardo
Barragán, Eva
Sargas, Claudia
Ferrer-Marín, F.
Sánchez-Calero, J.
Sevilla, Julián
Ruiz, Elena
Villalón, Lucía
del Mar Herráez, M.
Riaza, R.
Magro, Elena
Steegmann, Juan Luis
Wang, C.
de Toledo, P.
García-Gutiérrez, Valentín
Ayala, Rosa
Ribera, Josep-Maria
Barrio, Santiago
Martínez-López, Joaquín
Publication Year :
2022

Abstract

The screening of the BCR::ABL1 kinase domain (KD) mutation has become a routine analysis in case of warning/failure for chronic myeloid leukemia (CML) and B-cell precursor acute lymphoblastic leukemia (ALL) Philadelphia (Ph)-positive patients. In this study, we present a novel DNA-based next-generation sequencing (NGS) methodology for KD ABL1 mutation detection and monitoring with a 1.0E−4 sensitivity. This approach was validated with a well-stablished RNA-based nested NGS method. The correlation of both techniques for the quantification of ABL1 mutations was high (Pearson r = 0.858, p < 0.001), offering DNA-DeepNGS a sensitivity of 92% and specificity of 82%. The clinical impact was studied in a cohort of 129 patients (n = 67 for CML and n = 62 for B-ALL patients). A total of 162 samples (n = 86 CML and n = 76 B-ALL) were studied. Of them, 27 out of 86 harbored mutations (6 in warning and 21 in failure) for CML, and 13 out of 76 (2 diagnostic and 11 relapse samples) did in B-ALL patients. In addition, in four cases were detected mutation despite BCR::ABL1 < 1%. In conclusion, we were able to detect KD ABL1 mutations with a 1.0E−4 sensitivity by NGS using DNA as starting material even in patients with low levels of disease.

Details

Database :
OAIster
Publication Type :
Electronic Resource
Accession number :
edsoai.on1373149820
Document Type :
Electronic Resource