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Updated: Mar 15, 2026

A Rat Model of Middle Cerebral Artery Occlusion/Reperfusion Without Damaging the Anatomical Structure of Cerebral Vessels
Published on: May 17, 2024
Glibenclamide is superior to decompressive craniectomy in a rat model of malignant stroke
J Marc Simard1, Natalia Tsymbalyuk, Orest Tsymbalyuk
1Department of Neurosurgery, University of Maryland School of Medicine, Baltimore, Maryland, USA. msimard@smail.umaryland.edu
Insights
Glibenclamide effectively treats malignant cerebral edema in rats, reducing mortality and brain swelling. It also preserves neurologic function and brain tissue better than decompressive craniectomy (DC).
Area of Science:
- Neuroscience
- Pharmacology
- Ischemia/Reperfusion Injury
Background:
- Malignant cerebral infarctions present a significant clinical challenge.
- Decompressive craniectomy (DC) offers some benefit but is not optimal for severe cases.
- Malignant cerebral edema following ischemia/reperfusion has very high mortality.
Purpose of the Study:
- To test if blocking sulfonylurea receptor 1-regulated NC(Ca-ATP) channels with glibenclamide is superior to DC.
- To evaluate glibenclamide's efficacy when treatment begins 6 hours after ischemia onset.
- To compare glibenclamide and DC in a rat model of severe cerebral ischemia/reperfusion.
Main Methods:
- Rats underwent middle cerebral artery occlusion to induce severe ischemia/reperfusion.
- Treatment (vehicle, glibenclamide, or DC) was initiated 6 hours after ischemia onset.
- Outcomes measured included mortality, neurologic function, brain swelling, and histological integrity.
Main Results:
- Glibenclamide reduced 24-hour mortality from 67% to 5% and brain swelling from 21% to 8%.
- DC eliminated 24-hour mortality, but glibenclamide resulted in significantly better neurologic function over 2 weeks.
- Glibenclamide preserved watershed cortex and deep white matter more effectively than DC.
Conclusions:
- Glibenclamide is as effective as DC in preventing death from malignant cerebral edema.
- Glibenclamide demonstrates superior neuroprotective effects compared to DC.
- Blocking NC(Ca-ATP) channels with glibenclamide represents a promising therapeutic strategy for severe cerebral ischemia/reperfusion.
Background And Purpose:
Treating patients with malignant cerebral infarctions remains a major unsolved problem in medicine. Decompressive craniectomy (DC) improves the bleak outlook but is suboptimal. Using a rat model of severe ischemia/reperfusion with very high mortality due to malignant cerebral edema, we tested the hypothesis that blocking of sulfonylurea receptor 1-regulated NC(Ca-ATP) channels with glibenclamide would compare favorably to DC when reperfusion and treatment were begun 6 hours after onset of ischemia.
Methods:
Male Wistar rats underwent filament occlusion of the middle cerebral artery to reduce laser Doppler flowmetry perfusion signals by >75%, with filament removal plus treatment 6 hours later. In rats treated with vehicle versus glibenclamide (10 microg/kg IP plus 200 ng/h SC), we compared mortality, neurologic function, and brain swelling at 24 hours. In rats treated with DC versus glibenclamide, we compared neurologic function for 2 weeks and histologic outcomes.
Results:
Compared with vehicle, glibenclamide treatment reduced 24-hour mortality from 67% to 5% and reduced hemispheric swelling at 24 hours from 21% to 8%. DC eliminated 24-hour mortality, but neurologic function during the next 2 weeks was significantly better with glibenclamide compared with DC. Watershed cortex and deep white matter were significantly better preserved with glibenclamide compared with DC.
Conclusions:
In a rat model of severe ischemia/reperfusion, with reperfusion and treatment beginning 6 hours after onset of ischemia, glibenclamide is as effective as DC in preventing death from malignant cerebral edema but is superior to DC in preserving neurologic function and the integrity of watershed cortex and deep white matter.
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