Related Experiment Video
Updated: Jun 14, 2025

Protocol for the Differentiation of Human Induced Pluripotent Stem Cells into Mixed Cultures of Neurons and Glia for Neurotoxicity Testing
Published on: June 9, 2017
ARE/Nrf2 Transcription System Involved in Carotenoid, Polyphenol, and Estradiol Protection from Rotenone-Induced
Aya Darawsha1, Aviram Trachtenberg1, Yoav Sharoni1
1Department of Clinical Biochemistry and Pharmacology, Faculty of Health Sciences, Ben-Gurion University of the Negev, Beer Sheva 8410500, Israel.
Abstract:
Skin aging is associated with the increased production of mitochondrial reactive oxygen species (mtROS) due to mitochondrial dysfunction, and various phytonutrients and estrogens have been shown to improve skin health. Thus, the aim of the current study was to examine damage to dermal fibroblasts by chemically induced mitochondrial dysfunction and to study the mechanism of the protective effects of carotenoids, polyphenols, and estradiol. Rotenone, a Complex I inhibitor, caused mitochondrial dysfunction in human dermal fibroblasts, substantially reducing respiration and ATP levels, followed by increased mitochondrial and cytosolic ROS, which resulted in apoptotic cell death, an increased number of senescent cells, increased matrix metalloproteinase-1 (MMP1) secretion, and decreased collagen secretion. Pre-treatment with carotenoid-rich tomato extracts, rosemary extract, and estradiol reversed these effects. These protective effects can be partially explained by a cooperative activation of antioxidant response element (ARE/Nrf2) transcriptional activity by the protective compounds and rotenone, which led to the upregulation of antioxidant proteins such as NQO1. To determine if ARE/Nrf2 activity is crucial for cell protection, we inhibited it using the Nrf2 inhibitors ML385 and ochratoxin A. This inhibition markedly reduced the protective effects of the test compounds by diminishing their effect to reduce cytosolic ROS. Our study results indicate that phytonutrients and estradiol protect skin cells from damage caused by mtROS, and thus may delay skin cell senescence and improve skin health.
Insights
Phytonutrients and estradiol protect skin cells from mitochondrial damage and reactive oxygen species (ROS). This helps delay skin aging and improve overall skin health by activating antioxidant pathways.
Area of Science:
- Dermatology
- Cell Biology
- Biochemistry
Background:
- Skin aging is linked to mitochondrial dysfunction and increased mitochondrial reactive oxygen species (mtROS).
- Phytonutrients and estrogens show potential for improving skin health.
- Understanding protective mechanisms against mtROS-induced damage is crucial.
Purpose of the Study:
- To investigate damage to dermal fibroblasts from chemically induced mitochondrial dysfunction.
- To elucidate the protective mechanisms of carotenoids, polyphenols, and estradiol against this damage.
Main Methods:
- Induced mitochondrial dysfunction in human dermal fibroblasts using rotenone (Complex I inhibitor).
- Assessed effects on respiration, ATP levels, ROS production, apoptosis, senescence, MMP1, and collagen.
- Evaluated protective effects of tomato extracts, rosemary extract, and estradiol.
- Investigated the role of the antioxidant response element (ARE/Nrf2) pathway using inhibitors.
Main Results:
- Rotenone induced mitochondrial dysfunction, increased ROS, apoptosis, senescence, and MMP1, while decreasing collagen.
- Carotenoids, polyphenols, and estradiol reversed rotenone-induced damage.
- Protective effects were linked to cooperative activation of ARE/Nrf2, upregulating antioxidant proteins.
- Inhibiting Nrf2 diminished the protective effects and reduced ROS scavenging.
Conclusions:
- Phytonutrients and estradiol protect skin cells against mtROS-induced damage.
- These compounds may delay skin cell senescence and enhance skin health.
- The ARE/Nrf2 pathway is critical for mediating these protective effects.
More Related Videos
10:05Stimulation of Stem Cell Niches and Tissue Regeneration in Mouse Skin by Switchable Protoporphyrin IX-Dependent Photogeneration of Reactive Oxygen Species In Situ
Published on: May 8, 2020
10:00Induction and Analysis of Oxidative Stress in Sleeping Beauty Transposon-Transfected Human Retinal Pigment Epithelial Cells
Published on: December 11, 2020