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β3-Adrenoreceptor Blockade Reduces Hypoxic Myeloid Leukemic Cells Survival and Chemoresistance

Maura Calvani, Annalisa Dabraio, Gennaro Bruno, Veronica De Gregorio, Marcella Coronnello, Costanza Bogani, Sara Ciullini, Giancarlo la Marca, Marina Vignoli, Paola Chiarugi, Margherita Nardi, Alessandro M. Vannucchi, Luca Filippi, Claudio Favre

2020International Journal of Molecular Sciences17 citationsDOIOpen Access PDF

Abstract

β-adrenergic signaling is known to be involved in cancer progression; in particular, beta3-adrenoreceptor (β3-AR) is associated with different tumor conditions. Currently, there are few data concerning β3-AR in myeloid malignancies. Here, we evaluated β3-AR in myeloid leukemia cell lines and the effect of β3-AR antagonist SR59230A. In addition, we investigated the potential role of β3-AR blockade in doxorubicin resistance. Using flow cytometry, we assessed cell death in different in vitro myeloid leukemia cell lines (K562, KCL22, HEL, HL60) treated with SR59230A in hypoxia and normoxia; furthermore, we analyzed β3-AR expression. We used healthy bone marrow cells (BMCs), peripheral blood mononuclear cells (PBMCs) and cord blood as control samples. Finally, we evaluated the effect of SR59230A plus doxorubicin on K562 and K562/DOX cell lines; K562/DOX cells are resistant to doxorubicin and show P-glycoprotein (P-gp) overexpression. We found that SR59230A increased cancer cell lines apoptosis especially in hypoxia, resulting in selective activity for cancer cells; moreover, β3-AR expression was higher in malignancies, particularly under hypoxic condition. Finally, we observed that SR59230A plus doxorubicin increased doxorubicin resistance reversion mainly in hypoxia, probably acting on P-gp. Together, these data point to β3-AR as a new target and β3-AR blockade as a potential approach in myeloid leukemias.

Topics & Concepts

HL60Myeloid leukemiaCancer researchK562 cellsApoptosisBone marrowLeukemiaMyeloidPeripheral blood mononuclear cellDoxorubicinDaunorubicinChemistryFlow cytometryPharmacologyMedicineImmunologyInternal medicineIn vitroChemotherapyBiochemistryCancer, Stress, Anesthesia, and Immune ResponseHistone Deacetylase Inhibitors ResearchChemokine receptors and signaling
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