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ROS in cancer therapy: the bright side of the moon

Bruno PerilloIstituto di Scienze dell'Alimentazione, C.N.R., 83100, Avellino, Italy. [email protected]Marzia Di DonatoDipartimento di Medicina di Precisione, Università della Campania "L. Vanvitelli", 80138, Naples, ItalyAntonio PezoneDipartimento di Medicina Molecolare e Biotecnologie Mediche, Università di Napoli "Federico II", 80131, Naples, ItalyErika Di ZazzoDipartimento di Medicina di Precisione, Università della Campania "L. Vanvitelli", 80138, Naples, ItalyPia GiovannelliDipartimento di Medicina di Precisione, Università della Campania "L. Vanvitelli", 80138, Naples, ItalyGiovanni GalassoDipartimento di Medicina di Precisione, Università della Campania "L. Vanvitelli", 80138, Naples, ItalyGabriella CastoriaDipartimento di Medicina di Precisione, Università della Campania "L. Vanvitelli", 80138, Naples, ItalyAntimo MigliaccioDipartimento di Medicina di Precisione, Università della Campania "L. Vanvitelli", 80138, Naples, Italy
2020en
ABI

Annotatsiya

Reactive oxygen species (ROS) constitute a group of highly reactive molecules that have evolved as regulators of important signaling pathways. It is now well accepted that moderate levels of ROS are required for several cellular functions, including gene expression. The production of ROS is elevated in tumor cells as a consequence of increased metabolic rate, gene mutation and relative hypoxia, and excess ROS are quenched by increased antioxidant enzymatic and nonenzymatic pathways in the same cells. Moderate increases of ROS contribute to several pathologic conditions, among which are tumor promotion and progression, as they are involved in different signaling pathways and induce DNA mutation. However, ROS are also able to trigger programmed cell death (PCD). Our review will emphasize the molecular mechanisms useful for the development of therapeutic strategies that are based on modulating ROS levels to treat cancer. Specifically, we will report on the growing data that highlight the role of ROS generated by different metabolic pathways as Trojan horses to eliminate cancer cells.

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