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Updated: May 4, 2026

Assessment of Oxidative Damage in the Primary Mouse Ocular Surface Cells/Stem Cells in Response to Ultraviolet-C UV-C Damage
Published on: February 15, 2020
Oxidative stress and skin cancer: an overview
R T Narendhirakannan1, M Angeline Christie Hannah1
1Department of Biotechnology, School of Biotechnology and Health Sciences, Karunya University (Karunya Institute of Technology and Sciences), Karunya Nagar, Coimbatore, 641 114 Tamil Nadu India.
Abstract:
Skin is the largest body organ that serves as an important environmental interface providing a protective envelope that is crucial for homeostasis. On the other hand, it is a major target for toxic insult by a broad spectrum of physical and chemical agents that are capable of altering its structure and function. There are a large number of dietary contaminants and drugs can manifest their toxicity in skin. These environmental toxicants or their metabolites are inherent oxidants and/or directly or indirectly drive the production of a variety of reactive oxidants also known as reactive oxygen species. These are short-lived entities that are continuously generated at low levels during the course of normal aerobic metabolism. These are believed to activate proliferative and cell survival signaling that can alter apoptotic pathways that may be involved in the pathogenesis of a number of skin disorders. The skin possesses an array of antioxidant defense mechanisms that interact with toxicants to obviate their deleterious effect. The "antioxidant power" of a food is an expression of its capability both to defend the human organism from the action of the free radicals and to prevent degenerative disorders. Plants like olive trees have their own built-in protection against the oxidative damage of the sun, and these built-in protectors function as cell protectors in our own body. Although many antioxidants have shown substantive efficacy in cell culture systems and in animal models of oxidant injury, unequivocal confirmation of their beneficial effects in human populations has proven elusive.
Insights
Skin health relies on antioxidant defenses against environmental damage. While plant compounds show promise, their effectiveness in humans requires further study to prevent skin disorders.
Area of Science:
- Dermatology
- Toxicology
- Biochemistry
Background:
- The skin, a vital organ, acts as a barrier against environmental insults but is susceptible to damage from toxicants.
- Dietary contaminants and drugs can induce toxicity in the skin, often through the generation of reactive oxygen species (ROS).
- ROS, while involved in normal metabolism, can disrupt cellular processes and contribute to skin disorder pathogenesis.
Purpose of the Study:
- To explore the role of antioxidants in mitigating skin damage caused by environmental toxicants.
- To understand the mechanisms by which ROS contribute to skin disorders.
- To evaluate the potential of plant-derived compounds as protective agents for skin.
Main Methods:
- Review of existing literature on skin toxicology and antioxidant mechanisms.
- Analysis of the role of reactive oxygen species in skin pathology.
- Examination of the protective functions of plant-derived antioxidants, such as those found in olive trees.
Main Results:
- Environmental toxicants can overwhelm the skin's natural antioxidant defenses, leading to cellular damage.
- Antioxidants, including those from plant sources, demonstrate protective effects in cellular and animal models.
- The translation of these findings to human populations remains a challenge, with limited conclusive evidence.
Conclusions:
- The skin's integrity is threatened by environmental toxicants that generate reactive oxygen species.
- Plant-derived compounds offer potential as therapeutic agents due to their antioxidant properties.
- Further research is needed to confirm the efficacy of antioxidants in preventing human skin disorders.
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