Toxic effects of A2E in human ARPE-19 cells were prevented by resveratrol: a potential nutritional bioactive for age-related macular degeneration treatment.
Agustina AlaimoMariana Carolina Di SantoAna Paula Domínguez RubioGabriela ChaufanGuadalupe García LiñaresOscar Edgardo PérezPublished in: Archives of toxicology (2019)
Age-related macular degeneration (AMD) is a late-onset retinal disease and the leading cause of central vision loss in the elderly. Degeneration of retinal pigment epithelial cells (RPE) is a crucial contributing factor responsible for the onset and progression of AMD. The toxic fluorophore N-retinyl-N-retinylidene ethanolamine (A2E), a major lipofuscin component, accumulates in RPE cells with age. Phytochemicals with antioxidant properties may have a potential role in both the prevention and treatment of this age-related ocular disease. Particularly, there is an increased interest in the therapeutic effects of resveratrol (RSV), a naturally occurring polyphenol (3,4',5-trihydroxystilbene). However, the underlying mechanism of the RSV antioxidative effect in ocular diseases has not been well explored. We hypothesized that this bioactive compound may have beneficial effects for AMD. To this end, to investigate the potential profits of RSV against A2E-provoked oxidative damage, we used human RPE cell line (ARPE-19). RSV (25 µM) attenuates the cytotoxicity and the typical morphological characteristics of apoptosis observed in 25 µM A2E-laden cells. RSV pretreatment strengthened cell monolayer integrity through the preservation of the transepithelial electrical resistance and reduced the fluorescein isothiocyanate (FITC)-dextran diffusion rate as well as cytoskeleton architecture. In addition, RSV exhorts protective effects against A2E-induced modifications in the intracellular redox balance. Finally, RSV also prevented A2E-induced mitochondrial network fragmentation. These findings reinforce the idea that RSV represents an attractive bioactive for therapeutic intervention against ocular diseases associated with oxidative stress such as AMD.
Keyphrases
- age related macular degeneration
- respiratory syncytial virus
- oxidative stress
- induced apoptosis
- respiratory tract
- cell cycle arrest
- late onset
- diabetic rats
- endothelial cells
- endoplasmic reticulum stress
- cell death
- high glucose
- signaling pathway
- early onset
- pi k akt
- optical coherence tomography
- single cell
- anti inflammatory
- induced pluripotent stem cells
- risk assessment
- mesenchymal stem cells
- human health
- cell proliferation
- middle aged
- heat stress