Erythropoietin inhibits apoptosis induced by photodynamic therapy in ovarian cancer cells

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Abstract

Recombinant human erythropoietin is widely used to treat anemia associated with cancer and with the myelosuppressive effects of chemotherapy, particularly platinum-based regimens. Erythropoietin is the principal regulator of erythroid cell proliferation, differentiation, and apoptosis. Recently, the antiapoptotic and proliferative effects of erythropoietin on nonhematopoietic cells were also established. We now show the effect of erythropoietin treatment on the response of A2780 and SKOV3 ovarian carcinoma cell lines to photodynamic therapy (PDT) using hypericin. SKOV3 exhibited an increased resistance to hypericin when cells were treated with erythropoietin. This resistance was reversed by treatment of SKOV3 cells with the specific Janus kinase 2 kinase inhibitor AG490 or the tyrosine kinase inhibitor genistein. These results support a role for the specific erythropoietin-induced Janus kinase 2/STAT signal transduction pathway in PDT resistance. Evidence of erythropoietin signaling was obtained by the demonstration of Akt phosphorylation in both A2780 and SKOV3 cells. Erythropoietin-treated SKOV3 cells exhibited decreased apoptosis induced by hypericin, an effect that was blocked by the phosphoinositide 3-kinase/Akt inhibitor wortmannin. These results may have important implications for ovarian cancer patients undergoing PDT and receiving erythropoietin. Copyright © 2008 American Association for Cancer Research.

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Solár, P., Koval, J., Mikeš, J., Kleban, J., Solárová, Z., Lazúr, J., … Sytkowski, A. J. (2008). Erythropoietin inhibits apoptosis induced by photodynamic therapy in ovarian cancer cells. Molecular Cancer Therapeutics, 7(8), 2263–2271. https://doi.org/10.1158/1535-7163.MCT-08-0483

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