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- W4292548992 startingPage "1613" @default.
- W4292548992 abstract "Alterations of redox homeostasis leads to a condition of resilience known as hormesis that is due to the activation of redox-sensitive pathways stimulating cell proliferation, growth, differentiation, and angiogenesis. Instead, supraphysiological production of reactive oxygen species (ROS) exceeds antioxidant defence and leads to oxidative distress. This condition induces damage to biomolecules and is responsible or co-responsible for the onset of several chronic pathologies. Thus, a dietary antioxidant supplementation has been proposed in order to prevent aging, cardiovascular and degenerative diseases as well as carcinogenesis. However, this approach has failed to demonstrate efficacy, often leading to harmful side effects, in particular in patients affected by cancer. In this latter case, an approach based on endogenous antioxidant depletion, leading to ROS overproduction, has shown an interesting potential for enhancing susceptibility of patients to anticancer therapies. Therefore, a deep investigation of molecular pathways involved in redox balance is crucial in order to identify new molecular targets useful for the development of more effective therapeutic approaches. The review herein provides an overview of the pathophysiological role of ROS and focuses the attention on positive and negative aspects of antioxidant modulation with the intent to find new insights for a successful clinical application." @default.
- W4292548992 created "2022-08-22" @default.
- W4292548992 creator A5013802881 @default.
- W4292548992 creator A5015964435 @default.
- W4292548992 creator A5019874118 @default.
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- W4292548992 creator A5050372256 @default.
- W4292548992 creator A5053506409 @default.
- W4292548992 creator A5063238836 @default.
- W4292548992 date "2022-08-19" @default.
- W4292548992 modified "2023-10-05" @default.
- W4292548992 title "Hormesis and Oxidative Distress: Pathophysiology of Reactive Oxygen Species and the Open Question of Antioxidant Modulation and Supplementation" @default.
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