Caspase-3 is Dually Regulated by Apoptogenic Factors Mitochondrial Release and by SAPK/JNK Metabolic Pathway in Leukemic Cells Exposed to Etoposideionizing Radiation Combined Treatment

Author:

Di Pietro R.1,Centurione L.1,Sabatini N.1,Bosco D.2,Sancilio S.1,Garaci F.3,Rana R.1,Cataldi A.4

Affiliation:

1. Dipartimento di Biomorfologia

2. Istituto per i Trapianti di Organi e l'Immunocitologia del CNR, Chieti

3. Dipartimento di Diagnostica per Immagini e Radiologia Interventistica, Policlinico Tor Vergata, Università degli Studi di Roma, Tor Vergata, Italy

4. Facoltà di Farmacia, Cattedra di Anatomia Umana, Università G. D'Annunzio, Chieti - Pescara

Abstract

Ionizing radiation induces a series of multiple intracellular events which can lead to activation of caspases, cytoplasmic proteases involved in the occurrence of apoptosis. The response of leukemic cells to ionizing radiation is amplified when they have been pre-treated with the anticancer drug etoposide, therefore the aim of this work has been to establish the lowest etoposide concentration combined with the lowest ionizing radiation dose to obtain the best antineoplastic response. Two leukemic cell lines, HL-60 and Jurkat, employed in this study, demonstrated different sensitivities to ionizing radiation and to etoposide treatment, with Jurkat T cells requiring a higher dose (1 μM) to display cell cycle perturbation and apoptotic DNA damage similar to those seen in HL-60. We hypothesize that this kind of response could be mediated by mitochondrial release of apoptogenic factors and by SAPK/JNK metabolic pathway activation, both leading to caspase-3 cleavage. All in all these results provide insight into the sensitivity or resistance of leukemic cells to antineoplastic agents and identify molecular targets for rational therapeutic intervention strategies.

Publisher

SAGE Publications

Subject

Pharmacology,Immunology,Immunology and Allergy

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