Photoprotection by porcine eumelanin against singlet oxygen production
Alice Wang1, Anthony R Marino, Zbigniew Gasyna
1Department of Chemistry, University of Chicago, Chicago, IL, USA. alicew@uchicago.edu
Abstract:
Melanin, a major pigment found in retinal pigment epithelium (RPE) cells, is considered to function in dual roles, one protective and one destructive. By quenching free radical species and reactive oxygen species (ROS) melanin counteracts harmful redox stress. However, melanin is also thought to be capable of creating ROS. In this destructive role, melanin increases redox strain in the cell. This study uses readily available eumelanin extracted from porcine RPE cells as a more authentic model than synthetic melanin to determine specific mechanisms of melanin activity with regard to singlet oxygen in the presence and absence of rose bengal, a singlet-oxygen photosensitizer. Optical detection of singlet-oxygen was determined by monitoring the bleaching of p-nitrosodimethylaniline in the presence of histidine. Production of singlet oxygen in aqueous oxygen-saturated solutions of rose bengal without eumelanin was readily accomplished. In contrast, detection of singlet oxygen in oxygen-saturated solutions of eumelanin without rose bengal failed, consistent with results of others. However, a significant decrease in singlet oxygen production by rose bengal was observed in the presence of eumelanin. After correction for light absorption and chemical bleaching of eumelanin, the results show that eumelanin also provides a photoprotective mode arising from chemistry, that is, not just the physical process of light absorption followed by energy dissipation as heat.
Insights
Melanin in retinal pigment epithelium (RPE) cells can protect against oxidative stress. This study shows that melanin also chemically protects against damaging singlet oxygen, revealing a novel photoprotective mechanism.
Area of Science:
- Ophthalmology
- Biochemistry
- Photochemistry
Background:
- Melanin in retinal pigment epithelium (RPE) cells plays a dual role, potentially protective or destructive.
- Melanin can quench reactive oxygen species (ROS) but may also generate them, increasing cellular redox strain.
Purpose of the Study:
- To investigate the specific mechanisms of melanin's interaction with singlet oxygen.
- To compare the activity of natural porcine RPE eumelanin with synthetic melanin.
- To determine if eumelanin possesses chemical photoprotective properties beyond light absorption.
Main Methods:
- Utilized porcine RPE eumelanin as an authentic model.
- Employed optical detection of singlet oxygen by monitoring p-nitrosodimethylaniline bleaching.
- Assessed singlet oxygen production with and without rose bengal (photosensitizer) and histidine.
Main Results:
- Rose bengal readily produced singlet oxygen in aqueous solutions.
- Eumelanin alone did not produce detectable singlet oxygen.
- Eumelanin significantly decreased singlet oxygen production by rose bengal, indicating a chemical photoprotective effect.
Conclusions:
- Eumelanin exhibits a chemical photoprotective mechanism against singlet oxygen, in addition to physical light absorption.
- Porcine RPE eumelanin serves as a relevant model for studying melanin's biological functions.
- This finding contributes to understanding the protective roles of melanin in the RPE.


