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PARP inhibition: A promising therapeutic target in ovarian cancer
Corresponding Author(s) : A Musella
Cellular and Molecular Biology,
Vol. 61 No. 6: Advances in molecular oncology: Closer analysis of recent breakthroughs
Abstract
Ovarian cancer is burdened by the highest mortality rate among gynecological cancers. Gold standard is represented by the association of platinum- taxane -based chemotherapy and radical surgery. Despite several adjustments occurred in cytotoxic drug in last decades, most patients continue to relapse, and no significant enhancement has been reached in the overall survival. The development of drug resistance and the recurrence of disease have prompted the investigations of other targets that can be used in the treatment of ovarian cancers. Among such targets, polyadenosine diphosphate-ribose polymerase (PARP) represents a novel way to target specific patways involved in tumor growth. PARP accelerates the reaction of the polyADP-ribosylation of proteins implicated in DNA repair. PARP inhibitors have shown activity in cancers with BRCA mutations, with other deficient DNA repair genes or signaling pathways that modulate DNA repair, or in association with DNA damaging agents not involved in DNA repair dysfunction. A number of inhibitors for PARP has been developed, and such drugs are under investigation in clinical trials to identify their impact in the treatment of ovarian cancers. This review aims to summarize the recent researches and clinical progress on PARP inhibitors as novel target agents in ovarian cancer.
Keywords
Ovarian Cancer
PARP inhibitors
Target Therapies
Synthetic Lethality 1.
Musella, A., Marchetti, C., Gasparri, M. L., Salerno, L., Casorelli, A., Domenici, L., Imperiale, L., Ruscito, I., Abdul Halim, T., Palaia, I., Di Donato, V., Pecorini, F., Monti, M., Muzii, L., & Panici, P. B. (2015). PARP inhibition: A promising therapeutic target in ovarian cancer. Cellular and Molecular Biology, 61(6), 44–61. Retrieved from https://cellmolbiol.org/index.php/CMB/article/view/723
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