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Published on: November 28, 2012
Effects of topically applied tocotrienol on cataractogenesis and lens redox status in galactosemic rats
Nurul Alimah Abdul Nasir1, Renu Agarwal1, Sushil Vasudevan1
1Faculty of Medicine, Brain and Neuroscience Communities of Research, Universiti Teknologi MARA (UiTM), Shah Alam, Selangor, Malaysia.
Purpose:
Oxidative and nitrosative stress underlies cataractogenesis, and therefore, various antioxidants have been investigated for anticataract properties. Several vitamin E analogs have also been studied for anticataract effects due to their antioxidant properties; however, the anticataract properties of tocotrienols have not been investigated. In this study, we investigated the effects of topically applied tocotrienol on the onset and progression of cataract and lenticular oxidative and nitrosative stress in galactosemic rats.
Methods:
In the first part of this study, we investigated the effects of topically applied microemulsion formulation of tocotrienol (TTE) using six concentrations ranging from 0.01% to 0.2%. Eight groups of Sprague-Dawley rats (n = 9) received distilled water, vehicle, or one of the six TTE concentrations as pretreatment topically twice daily for 3 weeks while on a normal diet. After pretreatment, animals in groups 2-8 received a 25% galactose diet whereas group 1 continued on the normal diet for 4 weeks. During this 4-week period, topical treatment continued as for pretreatment. Weekly slit-lamp examination was conducted to assess cataract progression. At the end of the experimental period, the animals were euthanized, and the proteins and oxidative stress parameters were estimated in the lenses. In the second part of the study, we compared the anticataract efficacy of the TTE with the liposomal formulation of tocotrienol (TTL) using five groups of Sprague-Dawley rats (n = 15) that received distilled water, TTE, TTL, or corresponding vehicle. The mode of administration and dosing schedule were the same as in study 1. Weekly ophthalmic examination and lens protein and oxidative stress estimates were performed as in study 1. Lens nitrosative stress was also estimated.
Results:
During the 4-week treatment period, the groups treated with 0.03% and 0.02% tocotrienol showed slower progression of cataract compared to the vehicle-treated group (p<0.05), whereas the group treated with 0.2% tocotrienol showed faster progression of cataract compared to the vehicle-treated group (p<0.05). The lenticular protein content, malondialdehyde, superoxide dismutase, and catalase levels were normalized in the groups that received 0.03% and 0.02% tocotrienol. The lenticular reduced glutathione also showed a trend toward normalization in these groups. In contrast, the group treated with 0.2% tocotrienol showed increased lenticular oxidative stress. When the microemulsion and liposomal formulations were compared, the effects on cataract progression, lens oxidative and nitrosative stress, and lens protein content did not show significant differences.
Conclusions:
Topically applied tocotrienol within the concentration range of less than 0.05% and more than 0.01% tends to delay the onset and progression of cataract in galactose-fed rats by reducing lenticular oxidative and nitrosative stress. However, topical tocotrienol at a concentration of 0.2% and higher aggravates cataractogenesis in galactose-fed rats by increasing lens oxidative stress. The anticataract efficacy of 0.03% microemulsion of tocotrienol did not differ from its liposomal formulations at the same concentration.
Insights
Low-dose tocotrienol (0.01%-0.05%) delays cataract progression in rats by reducing oxidative stress. High-dose tocotrienol (≥0.2%) accelerates cataract development, increasing oxidative stress.
Area of Science:
- Ophthalmology
- Biochemistry
- Pharmacology
Background:
- Oxidative and nitrosative stress are key factors in cataract formation.
- While various antioxidants, including vitamin E analogs, have been studied for anticataract effects, the properties of tocotrienols remain largely unexplored.
Purpose of the Study:
- To investigate the effects of topically applied tocotrienol on cataract onset and progression.
- To evaluate the impact of tocotrienol on oxidative and nitrosative stress in the lens of galactosemic rats.
Main Methods:
- Rats were topically treated with varying concentrations of tocotrienol microemulsion (0.01%-0.2%) or liposomal formulation.
- Cataract progression was monitored weekly via slit-lamp examination.
- Lens protein content, oxidative stress markers (malondialdehyde, superoxide dismutase, catalase, reduced glutathione), and nitrosative stress were assessed post-experiment.
Main Results:
- Low concentrations of tocotrienol (0.02%-0.03%) significantly slowed cataract progression and normalized oxidative stress markers.
- High concentrations (0.2%) accelerated cataract development and increased oxidative stress.
- No significant difference in anticataract efficacy was observed between microemulsion and liposomal tocotrienol formulations.
Conclusions:
- Topical tocotrienol at concentrations between 0.01% and 0.05% demonstrates potential in delaying cataract onset and progression by mitigating oxidative and nitrosative stress.
- Concentrations of 0.2% or higher exacerbate cataractogenesis.
- Both microemulsion and liposomal formulations of tocotrienol showed comparable anticataract efficacy at 0.03%.

