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    Citas

    Título
    Deferasirox reduces oxidative DNA damage in bone marrow cells from myelodysplastic patients and improves their differentiation capacity
    Autor(es)
    Jiménez-Solas, Tamara
    López-Cadenas, Félix
    Aires-Mejía, Irene
    Caballero-Berrocal, Juan Carlos
    Ortega, Rebeca
    Redondo, Alba María
    Sánchez Guijo Martín, FermínUSAL authority ORCID
    Muntión Olave, María Sandra
    García-Martín, Luís
    Albarrán, Beatriz
    Alonso, José María
    Del Cañizo, Consuelo
    Hernández Hernández, ÁngelUSAL authority
    Díez-Campelo, María
    Palabras clave
    Myelodysplastic syndromes
    Deferasirox
    Iron overload
    Reactive oxygen species
    DNA damage
    Fecha de publicación
    2019
    Editor
    Wiley
    Citación
    Jiménez‐Solas, T., López‐Cadenas, F., Aires‐Mejía, I., Caballero‐Berrocal, J. C., Ortega, R., Redondo, A. M., ... & Díez‐Campelo, M. (2019). Deferasirox reduces oxidative DNA damage in bone marrow cells from myelodysplastic patients and improves their differentiation capacity. British Journal of Haematology, 187(1), 93-104. https://doi.org/10.1111/bjh.16013
    Resumen
    [EN]Patients with low-risk myelodysplastic syndromes (MDS) usually develop iron overload. This leads to a high level of oxidative stress in the bone marrow (BM) and increases haematopoietic cell dysfunction. Our objective was to analyse whether chelation with deferasirox (DFX) alleviates the consequences of oxidative stress and improves BM cell functionality. We analysed 13 iron-overloaded MDS patients' samples before and 4-10 months after treatment with DFX. Using multiparametric flow cytometry analysis, we measured intracellular reactive oxygen species (ROS), DNA oxidation and double strand breaks. Haematopoietic differentiation capacity was analysed by colony-forming unit (CFU) assays. Compared to healthy donors, MDS showed a higher level of intracellular ROS and DNA oxidative damage in BM cells. DNA oxidative damage decreased following DFX treatment. Furthermore, the clonogenic assays carried out before treatment suggest an impaired haematopoietic differentiation. DFX seems to improve this capacity, as illustrated by a decreased cluster/CFU ratio, which reached values similar to controls. We conclude that BM cells from MDS are subject to higher oxidative stress conditions and show an impaired haematopoietic differentiation. These adverse features seem to be partially rectified after DFX treatment.
    URI
    https://hdl.handle.net/10366/155179
    ISSN
    0007-1048
    DOI
    10.1111/bjh.16013
    Versión del editor
    https://doi.org/10.1111/bjh.16013
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    • DBBM. Artículos del Departamento de Bioquímica y Biología Molecular [207]
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