Related Experiment Video
Updated: Apr 5, 2026

Author Spotlight: Investigating Physiological Functions of Vitamin A Transporters Using HPLC-Based Vitamin A Profiling
Published on: December 27, 2024
Natural Compounds from Saffron and Bear Bile Prevent Vision Loss and Retinal Degeneration
Laura Fernández-Sánchez1, Pedro Lax2, Agustina Noailles3
1Departament of Physiology, Genetics and Microbiology, University of Alicante, 03690 Alicante, Spain. laura.fs@ua.es.
Abstract:
All retinal disorders, regardless of their aetiology, involve the activation of oxidative stress and apoptosis pathways. The administration of neuroprotective factors is crucial in all phases of the pathology, even when vision has been completely lost. The retina is one of the most susceptible tissues to reactive oxygen species damage. On the other hand, proper development and functioning of the retina requires a precise balance between the processes of proliferation, differentiation and programmed cell death. The life-or-death decision seems to be the result of a complex balance between pro- and anti-apoptotic signals. It has been recently shown the efficacy of natural products to slow retinal degenerative process through different pathways. In this review, we assess the neuroprotective effect of two compounds used in the ancient pharmacopoeia. On one hand, it has been demonstrated that administration of the saffron constituent safranal to P23H rats, an animal model of retinitis pigmentosa, preserves photoreceptor morphology and number, the capillary network and the visual response. On the other hand, it has been shown that systemic administration of tauroursodeoxycholic acid (TUDCA), the major component of bear bile, to P23H rats preserves cone and rod structure and function, together with their contact with postsynaptic neurons. The neuroprotective effects of safranal and TUDCA make these compounds potentially useful for therapeutic applications in retinal degenerative diseases.
Insights
Natural compounds safranal and tauroursodeoxycholic acid (TUDCA) show promise for treating retinal disorders. These compounds protect photoreceptors and preserve vision in animal models of retinitis pigmentosa.
Area of Science:
- Ophthalmology
- Neuroscience
- Pharmacology
Background:
- Retinal disorders involve oxidative stress and apoptosis.
- The retina is highly susceptible to reactive oxygen species damage.
- Neuroprotection is vital throughout retinal disease progression.
Purpose of the Study:
- To review the neuroprotective effects of safranal and tauroursodeoxycholic acid (TUDCA) in retinal degenerative diseases.
- To assess the therapeutic potential of these natural compounds.
Main Methods:
- Review of studies on safranal and TUDCA in animal models of retinitis pigmentosa (P23H rats).
- Analysis of effects on photoreceptor morphology, function, and neural connections.
Main Results:
- Safranal preserved photoreceptor integrity, capillary network, and visual response in P23H rats.
- TUDCA preserved cone and rod structure/function and their synaptic connections in P23H rats.
- Both compounds demonstrated significant neuroprotective effects.
Conclusions:
- Safranal and TUDCA exhibit potent neuroprotective properties against retinal degeneration.
- These natural compounds hold potential for therapeutic applications in treating retinal diseases.

