Related Experiment Videos
Retinal light damage vs. normal aging of rats: altered morphology, intermediate filament expression, and nuclear
Abstract:
In retinal light damage, degeneration of photoreceptors results in alterations of glial (Müller) cells. In particular, Müller cells show signs of gliosis such as thickening of their stem processes, and expression of glial fibrillary acidic protein (GFAP) which is normally not detectable by immunocytochemistry. We were interested in a quantification of these morphological alterations, and in possible effects of an application of free radical scavengers (Ginkgobiloba extract EGb 761). For this purpose, we studied Müller cells in retinae of albino rats exposed to enhanced illumination for 24 months, a procedure which causes a complete loss of photoreceptor cells. The cells were labeled by (i) bulk filling with the fluorescent dye, Procion yellow, and by (ii) immunocytochemical demonstration of vimentin and GFAP. One group of rats was fed daily with EGb 761 during the last 8 months of life when the remaining photoreceptors (about 50%) died. The retinae were compared with retinae from 3 months-old albino rats, serving as normal young controls, and with retinae from 24 month-old pigment rats, representing normal aging processes. As age-related changes of the ultrastructure of glial cell (astrocytic) nuclei have been described in the literature, the organization of Müller cell nuclei was also studied by an argyrophilic stain, and by electron microscopy. We found that in the thin light-damaged retinae, Müller cells were shorter but thicker than in age-matched control retinae. The volumes of their vitread stem processes were almost unchanged. Müller cells were GFAP-immunoreactive in the light-damaged retinae but not in the controls. The application of EGb 761 prevented the expression by Müller cells of (detectable levels of) GFAP. By contrast, in retinae from EGb 761-treated animals the volumes of the vitread stem processes were significantly increased in comparison to untreated animals. The number of nuclear organization regions was significantly enhanced in Müller cell nuclei from light-damaged untreated albino rats, as compared with the young controls. Application of EGb 761 prevented much of this increase. Thus, exogeneous free radical scavengers do not prevent the occurrence of an reactive hypertrophy but inhibit the expression of "pathological marker molecules", and the (accompanying) signs of enhanced nuclear activity.
Insights
Free radical scavengers like Ginkgo biloba extract EGb 761 inhibit glial fibrillary acidic protein (GFAP) expression in Müller cells after retinal light damage. EGb 761 also increased vitread stem process volume, suggesting a protective effect against light-induced retinal damage.
Area of Science:
- Ophthalmology
- Neuroscience
- Cell Biology
Background:
- Retinal light damage causes photoreceptor degeneration, leading to Müller cell alterations, including gliosis and glial fibrillary acidic protein (GFAP) expression.
- Müller cells, crucial glial cells in the retina, undergo significant morphological and molecular changes in response to injury.
Purpose of the Study:
- To quantify morphological alterations in Müller cells following retinal light damage.
- To investigate the potential protective effects of free radical scavengers, specifically Ginkgobiloba extract EGb 761, on Müller cells.
Main Methods:
- Albino rats were exposed to enhanced illumination for 24 months, causing photoreceptor loss.
- Müller cells were labeled using Procion yellow dye and immunocytochemistry for vimentin and GFAP.
- One group received daily EGb 761 during the final 8 months; retinae were compared to young and aged controls.
Main Results:
- Light-damaged retinae showed shorter, thicker Müller cells with GFAP immunoreactivity, unlike controls.
- EGb 761 treatment prevented detectable GFAP expression and significantly increased vitread stem process volume.
- EGb 761 also mitigated the increase in nuclear organization regions in Müller cells, indicating reduced nuclear activity.
Conclusions:
- Free radical scavengers like EGb 761 do not prevent reactive hypertrophy but inhibit the expression of pathological markers (GFAP) and reduce signs of enhanced nuclear activity in Müller cells.
- EGb 761 demonstrates a protective role against light-induced retinal damage by modulating Müller cell responses.