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Updated: May 3, 2026

Focal Cerebral Ischemia Model by Endovascular Suture Occlusion of the Middle Cerebral Artery in the Rat
Published on: February 5, 2011
Severity of middle cerebral artery occlusion determines retinal deficits in rats
Rachael S Allen1, Iqbal Sayeed2, Heather A Cale2
1Emergency Medicine, Emory University, Atlanta, GA 30322, USA; Ophthalmology, Emory University, Atlanta, GA 30322, USA.
Abstract:
Middle cerebral artery occlusion (MCAO) using the intraluminal suture technique is a common model used to study cerebral ischemia in rodents. Due to the proximity of the ophthalmic artery to the middle cerebral artery, MCAO blocks both arteries, causing both cerebral ischemia and retinal ischemia. While previous studies have shown retinal dysfunction at 48h post-MCAO, we investigated whether these retinal function deficits persist until 9days and whether they correlate with central neurological deficits. Rats received 90min of transient MCAO followed by electroretinography at 2 and 9days to assess retinal function. Retinal damage was assessed with cresyl violet staining, immunohistochemistry for glial fibrillary acidic protein (GFAP) and glutamine synthetase, and TUNEL staining. Rats showed behavioral deficits as assessed with neuroscore that correlated with cerebral infarct size and retinal function at 2days. Two days after surgery, rats with moderate MCAO (neuroscore <5) exhibited delays in electroretinogram implicit time, while rats with severe MCAO (neuroscore ≥5) exhibited reductions in amplitude. Glutamine synthetase was upregulated in Müller cells 3days after MCAO in both severe and moderate animals; however, retinal ganglion cell death was only observed in MCAO retinas from severe animals. By 9days after MCAO, both glutamine synthetase labeling and electroretinograms had returned to normal levels in moderate animals. Early retinal function deficits correlated with behavioral deficits. However, retinal function decreases were transient, and selective retinal cell loss was observed only with severe ischemia, suggesting that the retina is less susceptible to MCAO than the brain. Temporary retinal deficits caused by MCAO are likely due to ischemia-induced increases in extracellular glutamate that impair signal conduction, but resolve by 9days after MCAO.
Insights
Middle cerebral artery occlusion (MCAO) in rats causes temporary retinal dysfunction that resolves by 9 days. Severe MCAO leads to retinal cell loss, indicating the brain is more susceptible than the retina.
Area of Science:
- Neuroscience
- Ophthalmology
- Ischemia Research
Background:
- Middle cerebral artery occlusion (MCAO) is a common rodent model for cerebral ischemia.
- MCAO can induce secondary retinal ischemia due to anatomical proximity.
- Previous studies noted retinal dysfunction at 48 hours post-MCAO.
Purpose of the Study:
- To investigate the persistence of retinal function deficits up to 9 days after MCAO.
- To correlate retinal function deficits with central neurological deficits.
- To determine the susceptibility of the retina compared to the brain following MCAO.
Main Methods:
- Transient MCAO (90 minutes) in rats.
- Electroretinography (ERG) at 2 and 9 days post-MCAO to assess retinal function.
- Histological analysis including cresyl violet staining, GFAP and glutamine synthetase immunohistochemistry, and TUNEL staining.
- Behavioral assessment using neuroscore to evaluate neurological deficits.
Main Results:
- Behavioral deficits correlated with cerebral infarct size and retinal function at 2 days.
- Moderate MCAO showed delayed ERG implicit time; severe MCAO showed reduced ERG amplitude.
- Glutamine synthetase upregulation observed in Müller cells by 3 days; retinal ganglion cell death only in severe MCAO.
- Retinal function and glutamine synthetase levels normalized by 9 days in moderate MCAO cases.
- Retinal deficits were transient and less severe than neurological deficits.
Conclusions:
- Early retinal dysfunction after MCAO is transient and correlates with neurological deficits.
- Retinal cell loss occurs only under severe ischemic conditions.
- The retina appears less susceptible to MCAO-induced damage than the brain.
- Temporary retinal deficits may result from glutamate excitotoxicity, resolving as ischemia subsides.
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