Author:
Sauriol Alexandre,Carmona Euridice,Udaskin Molly L.,Radulovich Nikolina,Leclerc-Desaulniers Kim,Rottapel Robert,Oza Amit M.,Lheureux Stephanie,Provencher Diane M.,Mes-Masson Anne-Marie
Abstract
AbstractEpithelial ovarian cancer is the most lethal gynecological malignancy, owing notably to its high rate of therapy-resistant recurrence in spite of good initial response to chemotherapy. Although poly(ADP-ribose) polymerase inhibitors (PARPi) have shown promise for ovarian cancer treatment, extended therapy usually leads to acquired PARPi resistance. Here we explored a novel therapeutic option to counter this phenomenon, combining PARPi and inhibitors of nicotinamide phosphoribosyltransferase (NAMPT). Cell-based models of acquired PARPi resistance were created through an in vitro selection procedure. Using resistant cells, xenograft tumors were grown in immunodeficient mice, while organoid models were generated from primary patient tumor samples. Intrinsically PARPi-resistant cell lines were also selected for analysis. Our results show that treatment with NAMPT inhibitors effectively sensitized all in vitro models to PARPi. Adding nicotinamide mononucleotide, the resulting NAMPT metabolite, abrogated the therapy-induced cell growth inhibition, demonstrating the specificity of the synergy. Treatment with olaparib (PARPi) and daporinad (NAMPT inhibitor) depleted intracellular NAD+ , induced double-strand DNA breaks, and promoted apoptosis as monitored by caspase-3 cleavage. The two drugs were also synergistic in mouse xenograft models and clinically relevant patient-derived organoids. Therefore, in the context of PARPi resistance, NAMPT inhibition could offer a promising new option for ovarian cancer patients.
Funder
Oncopole in collaboration with the FRQS, the Cancer Research Society, Génome Québec and IRICoR
Publisher
Springer Science and Business Media LLC
Reference69 articles.
1. Torre, L. A. et al. Ovarian cancer statistics, 2018. CA Cancer J. Clin. 68(4), 284–296 (2018).
2. Siegel, R. L., Miller, K. D., Fuchs, H. E. & Jemal, A. Cancer statistics, 2021. CA Cancer J. Clin. 71(1), 7–33 (2021).
3. Erol, A., Niemira, M. & Kretowski, A. J. Novel approaches in ovarian cancer research against heterogeneity, late diagnosis, drug resistance, and transcoelomic metastases. Int. J. Mol. Sci. 20(11), 2649 (2019).
4. Davidson, B. & Trope, C. G. Ovarian cancer: Diagnostic, biological and prognostic aspects. Womens Health 10(5), 519–533 (2014).
5. Lheureux, S., Gourley, C., Vergote, I. & Oza, A. M. Epithelial ovarian cancer. Lancet 393(10177), 1240–1253 (2019).
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