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Caveolin-1 Ablation Imparts Partial Protection Against Inner Retinal Injury in Experimental Glaucoma and Reduces
Mojdeh Abbasi1, Vivek K Gupta2, Nitin Chitranshi3
1Faculty of Medicine and Health Sciences, Macquarie University, F10A, 2 Technology Place, North Ryde, NSW, 2109, Australia.
Abstract:
Retinal ganglion cell degeneration is a characteristic feature of glaucoma, and accordingly, protection of these cells constitutes a major therapeutic objective in the disease. Here, we demonstrate the key influence of caveolin (Cav) in regulating the inner retinal homeostasis in two models of experimentally elevated intraocular pressure (IOP). Two groups of Cav-1-/- and wild-type mice were used in the study. Animals were subjected to experimentally induced chronic and acutely elevated IOP and any changes in their retinal function were assessed by positive scotopic threshold response recordings. TUNEL and cleaved caspase-3 assays were performed to evaluate apoptotic changes in the retina while Brn3a immunostaining was used as a marker to assess and quantify ganglion cell layer (GCL) changes. H&E staining was carried out on retinal sections to evaluate histological differences in retinal laminar structure. Cav-1 ablation partially protected the inner retinal function in both chronic and acute models of elevated IOP. The protective effects of Cav-1 loss were also evident histologically by reduced loss of GCL density in both models. The phenotypic protection in Cav-1-/- glaucoma mice paralleled with increased TrkB phosphorylation and reduced endoplasmic reticulum stress markers and apoptotic activation in the inner retinas. This study corroborated previous findings of enhanced Shp2 phosphorylation in a chronic glaucoma model and established a novel role of Cav-1 in mediating activation of this phosphatase in the inner retina in vivo. Collectively, these findings highlight the critical involvement of Cav-1 regulatory mechanisms in ganglion cells in response to increased IOP, implicating Cav-1 as a potential therapeutic target in glaucoma.
Insights
Caveolin-1 (Cav-1) deficiency protects retinal ganglion cells from glaucoma-induced damage by preserving inner retinal function and structure. Loss of Cav-1 reduces cell death and endoplasmic reticulum stress, suggesting Cav-1 as a therapeutic target for glaucoma.
Area of Science:
- Ophthalmology
- Neuroscience
- Cell Biology
Background:
- Glaucoma is characterized by retinal ganglion cell degeneration, making their protection a key therapeutic goal.
- Caveolin (Cav) proteins play a role in cellular homeostasis, but their specific function in the retina under elevated intraocular pressure (IOP) is not fully understood.
Purpose of the Study:
- To investigate the role of caveolin-1 (Cav-1) in regulating inner retinal homeostasis in experimental models of elevated intraocular pressure (IOP).
- To determine if Cav-1 deficiency offers neuroprotection to retinal ganglion cells (RGCs) in glaucoma models.
Main Methods:
- Utilized Cav-1 knockout (Cav-1-/-) and wild-type mice subjected to chronic and acute elevated IOP.
- Assessed retinal function using positive scotopic threshold response (pSTR) recordings.
- Evaluated apoptosis via TUNEL and cleaved caspase-3 assays, quantified RGCs using Brn3a immunostaining, and examined retinal histology with H&E staining.
Main Results:
- Cav-1 ablation partially protected inner retinal function in both chronic and acute elevated IOP models.
- Histological analysis revealed reduced loss of ganglion cell layer (GCL) density in Cav-1-/- mice.
- Phenotypic protection correlated with increased TrkB phosphorylation, reduced endoplasmic reticulum stress, and decreased apoptotic activation in the inner retinas.
Conclusions:
- Cav-1 plays a critical role in regulating ganglion cell responses to increased IOP.
- Loss of Cav-1 confers partial protection against RGC degeneration in experimental glaucoma.
- Cav-1 emerges as a potential therapeutic target for glaucoma treatment.
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