Related Experiment Video
Updated: Jul 7, 2026

Quantification of Immunostained Caspase-9 in Retinal Tissue
Published on: July 25, 2022
Transient protective effect of caspase inhibitors in RCS rat
O Perche1, M Doly, I Ranchon-Cole
1Univ. Clermont 1, UFR Pharmacie, Laboratoire de Biophysique Sensorielle, EA 2667, Clermont-Ferrand, France. olivier.perche@u-clermont1.fr
Abstract:
In most retinal degenerations in humans and in animal models, photoreceptor cells die by apoptosis. Although the biochemical features are similar in all apoptotic cells, different molecular events lead the cell to death. In the present study we used a rat model of inherited retinal degeneration, the RCS rats, to investigate the involvement of the proteases, caspases and/or calpains, in photoreceptor apoptosis. In the first experiments, rats were untreated or injected intravitreally at post natal day 27 (P27) with the large broad spectrum caspase inhibitor, ZVAD, the calpain inhibitor, MuhPhe, or with the vehicle, DMSO. Retinal status was evaluated at P35 and P42 by electroretinography, morphometry and apoptotic nuclei detection. DMSO and MuhPhe had no effect on RCS retinas as evidenced by equivalent loss of function and equivalent number of apoptotic cells than in untreated group. ZVAD transiently reduced apoptotic cells and preserved photoreceptor function at P35 but not at P42. These results suggest that caspases but not calpains are involved in retinal degeneration in the RCS. In the second experiments, RCS rats were injected twice at P27 and P35 with ZVAD or DMSO. Although ZVAD-treated retinas were preserved at P35 compared to the DMSO controls, the second injection of ZVAD did not extend the preserving effect to P42. Moreover, a single injection of ZVAD at P35 had no preserving effect at P42. All these data taken together suggest that caspases do not play a pivotal role after P35. In a fourth set of experiments, we used specific caspase inhibitors to elucidate which caspase was activated. The caspase-1/4 inhibitor (YVAD) or the caspase-3/7 inhibitor (DEVD) were injected intravitreally at P27 and retinal status was evaluated at P35 and P42. Electroretinograms and apoptotic nuclei detection demonstrated that YVAD and DEVD preserved photoreceptors at P35 but not at P42. These results suggest that both caspase-1/4 and caspase-3/7 play a major role in the apoptotic pathway between P27 and P35 in retinal degeneration of RCS rats. In this study, we show that 1/ the photoreceptor apoptotic process in the RCS rat involves caspases but not calpains, and 2/ the retinal degeneration seems to be composed of different phases involving different molecular players. Indeed, we have demonstrated that caspases are playing a major role at P35, but not at P42.
Insights
In inherited retinal degeneration, caspases, not calpains, drive photoreceptor cell death. Inhibiting caspases temporarily preserves vision in RCS rats, indicating their crucial role early in the disease process.
Area of Science:
- Ophthalmology
- Molecular Biology
- Cell Biology
Background:
- Photoreceptor cell death via apoptosis is a hallmark of retinal degenerations.
- The specific molecular pathways, including proteases like caspases and calpains, leading to this cell death are not fully elucidated in all models.
Purpose of the Study:
- To investigate the involvement of caspases and calpains in photoreceptor apoptosis in the Royal College of Surgeons (RCS) rat model of inherited retinal degeneration.
- To determine the temporal role of caspases in the progression of retinal degeneration.
Main Methods:
- RCS rats were treated with broad-spectrum caspase inhibitor (ZVAD) or calpain inhibitor (MuhPhe) at different time points.
- Retinal function was assessed using electroretinography, morphometry, and apoptotic nuclei detection.
- Specific caspase inhibitors (caspase-1/4 inhibitor YVAD, caspase-3/7 inhibitor DEVD) were used to identify activated caspases.
Main Results:
- Calpains did not appear to be involved in photoreceptor apoptosis in RCS rats.
- ZVAD treatment transiently reduced apoptosis and preserved photoreceptor function at postnatal day 35, but this effect diminished by postnatal day 42.
- Inhibition of caspase-1/4 (YVAD) and caspase-3/7 (DEVD) preserved photoreceptors at postnatal day 35, suggesting their critical role in the early apoptotic pathway.
Conclusions:
- Caspases, but not calpains, are significantly involved in the apoptotic process of photoreceptors in RCS rats.
- Retinal degeneration in RCS rats appears to involve distinct phases, with caspases playing a major role between postnatal days 27 and 35, but not later in the disease progression.

