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Induction and Analysis of Oxidative Stress in Sleeping Beauty Transposon-Transfected Human Retinal Pigment Epithelial Cells
Published on: December 11, 2020
Oxidative stress in ARPE-19 cultures: do melanosomes confer cytoprotection?
Mariusz Zareba1, Michael W Raciti, Michele M Henry
1Department of Ophthalmology, Medical College of Wisconsin, Milwaukee, WI 53226-4812, USA.
Abstract:
The pigment melanin has antioxidant properties that could theoretically reduce oxidative damage to the retinal pigment epithelium (RPE), perhaps protecting against retinal diseases with an oxidative stress component like age-related macular degeneration. To determine whether melanin confers cytoprotection on RPE cells, melanosomes or control particles were introduced by phagocytosis into the human cell line ARPE-19 and oxidative stress was induced chemically (H2O2 or tert-butyl hydroperoxide) or with visible light. Since the iron-binding capacity of melanin is important for its antioxidant function, experiments were performed to confirm that the melanosomes were not iron saturated. Cytotoxicity was assessed by measures of plasma or lysosomal membrane integrity, mitochondrial function, and cell-substrate reattachment. Oxidative stress protocols were critically evaluated to produce modest cytotoxicity, which might allow detection of a small cytoprotective effect as expected for melanosomes. Particle internalization alone had no effect on baseline metabolic activity or on major RPE antioxidants. Particles were tested in multiple oxidative stress experiments in which culture conditions known to affect stress-induced cytotoxicity, notably culture density, were varied. No testing condition or outcome measure revealed a consistent protective (or cytotoxic) effect of melanosomes, indicating that measures of lysosome stability or whole cell viability do not demonstrate an antioxidant role for RPE melanosomes. If the melanosome, an insoluble particle, performs a cytoprotective function within cells, its effects may be limited to the local environment of the organelle and undetectable by conventional methods.
Insights
Melanin
Area of Science:
- Ophthalmology and cellular biology
Background:
- Melanin, a pigment, possesses antioxidant properties.
- Oxidative stress contributes to retinal diseases like age-related macular degeneration.
- The retinal pigment epithelium (RPE) is susceptible to oxidative damage.
Purpose of the Study:
- To investigate if melanin provides cytoprotection to RPE cells.
- To determine the antioxidant role of melanosomes in RPE cells.
Main Methods:
- Human ARPE-19 cells were exposed to melanosomes or control particles via phagocytosis.
- Oxidative stress was induced using hydrogen peroxide, tert-butyl hydroperoxide, or visible light.
- Cytotoxicity was measured by assessing membrane integrity, mitochondrial function, and cell adhesion.
- Experiments confirmed melanosomes were not iron-saturated, a key factor in antioxidant function.
Main Results:
- Internalization of particles did not affect baseline cell activity or RPE antioxidants.
- No consistent protective or cytotoxic effects of melanosomes were observed under various oxidative stress conditions.
- Standard cytotoxicity assays did not reveal an antioxidant role for melanosomes in RPE cells.
Conclusions:
- Melanosomes did not demonstrate a significant cytoprotective effect on RPE cells in this study.
- The antioxidant function of melanosomes, if present, may be localized and not detectable by conventional cell viability assays.
