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Updated: Apr 30, 2026

Pharmacologic Induction of Epidermal Melanin and Protection Against Sunburn in a Humanized Mouse Model
Published on: September 7, 2013
Updates of reactive oxygen species in melanoma etiology and progression
Feng Liu-Smith1, Ryan Dellinger2, Frank L Meyskens3
1Department of Epidemiology, University of California School of Medicine, Irvine, CA 92697, United States; Department of Medicine, University of California School of Medicine, Irvine, CA 92697, United States; Chao Family Comprehensive Cancer Center, University of California School of Medicine, Irvine, CA 92697, United States.
Abstract:
Reactive oxygen species (ROS) play crucial roles in all aspects of melanoma development, however, the source of ROS is not well defined. In this review we summarize recent advancement in this rapidly developing field. The cellular ROS pool in melanocytes can be derived from mitochondria, melanosomes, NADPH oxidase (NOX) family enzymes, and uncoupling of nitric oxide synthase (NOS). Current evidence suggests that Nox1, Nox4 and Nox5 are expressed in melanocytic lineage. While there is no difference in Nox1 expression levels in primary and metastatic melanoma tissues, Nox4 expression is significantly higher in a subset of metastatic melanoma tumors as compared to the primary tumors; suggesting distinct and specific signals and effects for NOX family enzymes in melanoma. Targeting these NOX enzymes using specific NOX inhibitors may be effective for a subset of certain tumors. ROS also play important roles in BRAF inhibitor induced drug resistance; hence identification and blockade of the source of this ROS may be an effective way to enhance efficacy and overcome resistance. Furthermore, ROS from different sources may interact with each other and interact with reactive nitrogen species (RNS) and drive the melanomagenesis process at all stages of disease. Further understanding ROS and RNS in melanoma etiology and progression is necessary for developing new prevention and therapeutic approaches.
Insights
Reactive oxygen species (ROS) are crucial in melanoma. This review highlights their sources, including NADPH oxidase (NOX) enzymes, and their role in drug resistance, suggesting NOX inhibitors as potential therapies.
Area of Science:
- Dermatology
- Oncology
- Biochemistry
Background:
- Reactive oxygen species (ROS) are integral to melanoma development, but their precise origins remain unclear.
- Multiple cellular components, including mitochondria, melanosomes, NADPH oxidase (NOX) enzymes, and nitric oxide synthase (NOS), contribute to the cellular ROS pool in melanocytes.
Purpose of the Study:
- To review recent advancements in understanding the sources of ROS in melanoma.
- To explore the role of NOX enzymes in melanoma progression and drug resistance.
- To discuss the potential of targeting ROS pathways for melanoma treatment.
Main Methods:
- Literature review of current research on ROS and RNS in melanoma.
- Analysis of gene expression data for NOX family enzymes in primary and metastatic melanoma.
- Discussion of the implications of ROS in BRAF inhibitor resistance.
Main Results:
- Nox1, Nox4, and Nox5 are expressed in the melanocytic lineage.
- Nox4 expression is elevated in a subset of metastatic melanomas compared to primary tumors.
- ROS contribute to BRAF inhibitor resistance in melanoma.
Conclusions:
- Distinct NOX enzymes have specific roles in melanoma, with elevated Nox4 in metastatic tumors.
- Targeting NOX enzymes with inhibitors may benefit specific melanoma patient subsets.
- Understanding ROS and reactive nitrogen species (RNS) interactions is vital for developing novel melanoma prevention and therapeutic strategies.
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