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Updated: Feb 3, 2026

Analysis of Oxidative Stress in Zebrafish Embryos
Published on: July 7, 2014
Oxidative stress and antioxidants in the pathophysiology of malignant melanoma
Elena Obrador1, Feng Liu-Smith2,3, Ryan W Dellinger4
1Department of Phisiology, University of Valencia, 46010 Valencia, Spain.
Abstract:
The high number of somatic mutations in the melanoma genome associated with cumulative ultra violet (UV) exposure has rendered it one of the most difficult of cancers to treat. With new treatment approaches based on targeted and immune therapies, drug resistance has appeared as a consistent problem. Redox biology, including reactive oxygen and nitrogen species (ROS and RNS), plays a central role in all aspects of melanoma pathophysiology, from initiation to progression and to metastatic cells. The involvement of melanin production and UV radiation in ROS/RNS generation has rendered the melanocytic lineage a unique system for studying redox biology. Overall, an elevated oxidative status has been associated with melanoma, thus much effort has been expended to prevent or treat melanoma using antioxidants which are expected to counteract oxidative stress. The consequence of this redox-rebalance seems to be two-fold: on the one hand, cells may behave less aggressively or even undergo apoptosis; on the other hand, cells may survive better after being disseminated into the circulating system or after drug treatment, thus resulting in metastasis promotion or further drug resistance. In this review we summarize the current understanding of redox signaling in melanoma at cellular and systemic levels and discuss the experimental and potential clinic use of antioxidants and new epigenetic redox modifiers.
Insights
Melanoma
Area of Science:
- Oncology
- Redox Biology
- Dermatology
Background:
- Melanoma exhibits numerous somatic mutations due to UV exposure, complicating treatment.
- Drug resistance is a significant challenge in targeted and immune therapies for melanoma.
- Redox biology, involving reactive oxygen and nitrogen species (ROS and RNS), is integral to melanoma's lifecycle.
Purpose of the Study:
- To review the role of redox signaling in melanoma pathophysiology.
- To discuss the dual effects of antioxidants in melanoma treatment.
- To explore the clinical potential of antioxidants and epigenetic redox modifiers.
Main Methods:
- Literature review of redox biology in melanoma.
- Analysis of cellular and systemic redox signaling pathways.
- Evaluation of antioxidant and epigenetic modifier efficacy.
Main Results:
- Elevated oxidative stress is characteristic of melanoma.
- Antioxidants can have paradoxical effects, potentially promoting metastasis or drug resistance.
- Redox modulation offers potential therapeutic strategies.
Conclusions:
- Redox signaling is a critical factor in melanoma initiation, progression, and treatment resistance.
- Targeting redox pathways presents a complex but promising avenue for melanoma therapy.
- Further research into antioxidants and epigenetic redox modifiers is warranted.
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