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Published on: March 20, 2021
Antioxidants reduce cone cell death in a model of retinitis pigmentosa
Keiichi Komeima1, Brian S Rogers, Lili Lu
1Department of Ophthalmology, Johns Hopkins University School of Medicine, Baltimore, MD 21287-9277, USA.
Abstract:
Retinitis pigmentosa (RP) is a label for a group of diseases caused by a large number of mutations that result in rod photoreceptor cell death followed by gradual death of cones. The mechanism of cone cell death is uncertain. Rods are a major source of oxygen utilization in the retina and, after rods die, the level of oxygen in the outer retina is increased. In this study, we used the rd1 mouse model of RP to test the hypothesis that cones die from oxidative damage. A mixture of antioxidants was selected to try to maximize protection against oxidative damage achievable by exogenous supplements; alpha-tocopherol (200 mg/kg), ascorbic acid (250 mg/kg), Mn(III)tetrakis (4-benzoic acid) porphyrin (10 mg/kg), and alpha-lipoic acid (100 mg/kg). Mice were treated with daily injections of the mixture or each component alone between postnatal day (P)18 and P35. Between P18 and P35, there was an increase in two biomarkers of oxidative damage, carbonyl adducts measured by ELISA and immunohistochemical staining for acrolein, in the retinas of rd1 mice. The staining for acrolein in remaining cones at P35 was eliminated in antioxidant-treated rd1 mice, confirming that the treatment markedly reduced oxidative damage in cones; this was accompanied by a 2-fold increase in cone cell density and a 50% increase in medium-wavelength cone opsin mRNA. Antioxidants also caused some preservation of cone function based upon photopic electroretinograms. These data support the hypothesis that gradual cone cell death after rod cell death in RP is due to oxidative damage, and that antioxidant therapy may provide benefit.
Insights
Antioxidant treatment reduced oxidative damage and preserved cone cells and function in a mouse model of retinitis pigmentosa (RP), suggesting a new therapeutic avenue.
Area of Science:
- Ophthalmology
- Neuroscience
- Genetics
Background:
- Retinitis pigmentosa (RP) causes photoreceptor cell death, leading to blindness.
- The mechanism of cone cell death in RP remains unclear.
- Increased oxygen levels in the outer retina after rod death may cause oxidative damage to cones.
Purpose of the Study:
- To investigate if oxidative damage contributes to cone cell death in RP.
- To test the efficacy of a combination antioxidant therapy in preserving cone cells and function.
Main Methods:
- Utilized the rd1 mouse model of RP.
- Administered a mixture of antioxidants (alpha-tocopherol, ascorbic acid, Mn(III)tetrakis (4-benzoic acid) porphyrin, alpha-lipoic acid) or individual components.
- Assessed oxidative damage biomarkers (carbonyl adducts, acrolein staining) and cone cell density, opsin mRNA levels, and function (electroretinograms).
Main Results:
- Oxidative damage biomarkers increased in rd1 mice retinas between postnatal days 18 and 35.
- Antioxidant treatment significantly reduced oxidative damage in cones.
- Antioxidant therapy led to a 2-fold increase in cone cell density, a 50% increase in medium-wavelength cone opsin mRNA, and preserved cone function.
Conclusions:
- Cone cell death in RP is likely due to oxidative damage.
- Antioxidant therapy shows promise for preserving cone cells and function in RP.
