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Updated: Aug 17, 2026

Rat Model of Photochemically-Induced Posterior Ischemic Optic Neuropathy
Published on: November 29, 2015
Cervical sympathectomy causes photoreceptor-specific cell death in the rat retina
Jena J Steinle1, Naarah L Lindsay, Bethany L Lashbrook
1Department of Physiology, Southern Illinois University School of Medicine, Carbondale, IL 62901, United States. jsteinle@siumed.edu
Abstract:
Changes in the regulation of the vasculature of the eye may be related to some age-related ocular diseases. We have previously shown that loss of sympathetic innervation, as can normally occur with age, resulted in substantial vascular growth of the choroid. The current study was designed to determine whether changes induced by sympathetic denervation causes significant loss of photoreceptors and increased glial cell reactivity in the retina. Sympathetic denervation was performed followed by immunohistochemistry, TUNEL staining, and protein expression analysis to investigate photoreceptor loss. There was a significant reduction (30%) in photoreceptor numbers in the sympathectomized eye. This loss was due to apoptosis, as there was over a doubling in apoptotic cell numbers after sympathectomy. This loss of photoreceptors in the sympathectomized eye resulted in a significantly reduced width of the outer nuclear layer of the retina when compared to the contralateral eye. Increased glial fibrillary acidic protein (GFAP) staining was also noted after sympathectomy in the ganglion cell layer with streaking toward the bipolar cell layer. These results suggest that loss of sympathetic innervation may cause significant changes to the physiology of the choroid.
Insights
Loss of sympathetic innervation in the eye leads to significant photoreceptor cell death via apoptosis. This denervation also causes retinal thinning and increased glial cell reactivity, impacting eye physiology.
Area of Science:
- Ophthalmology
- Neuroscience
- Vascular Biology
Background:
- Age-related ocular diseases are linked to vascular regulation changes in the eye.
- Previous studies showed sympathetic denervation causes choroidal vascular growth.
Purpose of the Study:
- To investigate if sympathetic denervation induces photoreceptor loss and glial cell reactivity in the retina.
- To determine the impact of sympathetic denervation on retinal structure and cellular response.
Main Methods:
- Sympathetic denervation was performed on experimental eyes.
- Immunohistochemistry, TUNEL staining, and protein expression analysis were used.
- Photoreceptor loss and glial cell reactivity were quantified.
Main Results:
- A 30% reduction in photoreceptor numbers was observed in denervated eyes.
- Apoptotic cell numbers doubled, indicating apoptosis as the cause of photoreceptor loss.
- Outer nuclear layer width decreased, and glial fibrillary acidic protein (GFAP) expression increased in the retina.
Conclusions:
- Sympathetic denervation significantly contributes to photoreceptor apoptosis and loss.
- Loss of sympathetic innervation alters retinal structure and increases glial reactivity.
- These findings suggest sympathetic innervation plays a crucial role in maintaining retinal health and ocular physiology.

