Related Experiment Video
Updated: Mar 24, 2026

Author Spotlight: Unraveling the Pathogenesis of Age-Related Macular Degeneration and Discovering Potential Therapies
Published on: July 28, 2023
Sphingolipid profile alters in retinal dystrophic P23H-1 rats and systemic FTY720 can delay retinal degeneration
Megan Stiles1, Hui Qi1, Eleanor Sun1
1Department of Ophthalmology, University of Oklahoma Health Sciences Center, Oklahoma City, OK 73104 Dean McGee Eye Institute, Oklahoma City, OK 73104.
Abstract:
Retinal degeneration (RD) affects millions of people and is a major cause of ocular impairment and blindness. With a wide range of mutations and conditions leading to degeneration, targeting downstream processes is necessary for developing effective treatments. Ceramide and sphingosine-1-phosphate, a pair of bioactive sphingolipids, are involved in apoptosis and its prevention, respectively. Apoptotic cell death is a potential driver of RD, and in order to understand the mechanism of degeneration and potential treatments, we studied rhodopsin mutant RD model, P23H-1 rats. Investigating this genetic model of human RD allows us to investigate the association of sphingolipid metabolites with the degeneration of the retina in P23H-1 rats and the effects of a specific modulator of sphingolipid metabolism, FTY720. We found that P23H-1 rat retinas had altered sphingolipid profiles that, when treated with FTY720, were rebalanced closer to normal levels. FTY720-treated rats also showed protection from RD compared with their vehicle-treated littermates. Based on these data, we conclude that sphingolipid dysregulation plays a secondary role in retinal cell death, which may be common to many forms of RDs, and that the U.S. Food and Drug Administration-approved drug FTY720 or related compounds that modulate sphingolipid metabolism could potentially delay the cell death.
Insights
Sphingolipid metabolism alterations contribute to retinal degeneration (RD). Modulating these lipids with FTY720 protected P23H-1 rat retinas from cell death, suggesting potential RD treatments.
Area of Science:
- Ophthalmology
- Neuroscience
- Biochemistry
Background:
- Retinal degeneration (RD) causes significant vision impairment and blindness.
- Apoptotic cell death is a key mechanism in RD progression.
- Sphingolipids, including ceramide and sphingosine-1-phosphate, regulate apoptosis.
Purpose of the Study:
- To investigate the role of sphingolipid metabolism in a rhodopsin-mutant rat model of RD.
- To evaluate the therapeutic potential of FTY720, a sphingolipid metabolism modulator, in preventing retinal cell death.
Main Methods:
- Utilized the P23H-1 rat model, a genetic model for human RD.
- Analyzed sphingolipid profiles in rat retinas.
- Assessed the effects of FTY720 treatment on sphingolipid levels and retinal protection.
Main Results:
- P23H-1 rat retinas exhibited altered sphingolipid profiles.
- FTY720 treatment rebalanced sphingolipid levels towards normal.
- FTY720 administration conferred significant protection against retinal degeneration.
Conclusions:
- Sphingolipid dysregulation is implicated as a secondary factor in retinal cell death.
- FTY720 and related compounds show promise for delaying cell death in RD.
- Modulating sphingolipid metabolism may offer a novel therapeutic strategy for various forms of RD.

