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Updated: Aug 30, 2026

Focal Cerebral Ischemia Model by Endovascular Suture Occlusion of the Middle Cerebral Artery in the Rat
Published on: February 5, 2011
Cilostazol reduces brain lesion induced by focal cerebral ischemia in rats--an MRI study
Jeong Hyun Lee1, Yong-Kyu Lee, Makoto Ishikawa
1Department of Pharmacology, College of Medicine, Busan National University, Ami-Dong 1-Ga, Seo-Gu, Pusan 602-739, South Korea.
Abstract:
To investigate the effects of cilostazol on the hemispheric ischemic lesion, we monitored the apparent diffusion coefficient (ADC) and T2 images by MRI techniques in comparison with histology at the terminal of and after 24-h reperfusion following 2-h occlusion of middle cerebral artery (MCA). The ADC values of tissue water and T2-weighted images were quantified by high field magnetic resonance. No significant difference was observed by ADC image among vehicle and cilostazol treatment groups when measured during MCA occlusion. Oral treatment with cilostazol 30 mg/kg two times at 5 min and 4 h significantly suppressed the hemispheric lesion area and volumes when detected by ADC, T2 images and histology, but 3 and 10 mg/kg cilostazol were without effect. Cilostazol (30 mg/kg) significantly reduced the increased cerebral water content at the ischemic hemisphere compared with vehicle group. In line with these results, the neurological deteriorations were much improved in the cilostazol-treated group. Taken together, it is concluded that post-treatment with cilostazol exerts a potent protective effect against cerebral infarct size by reducing the cytotoxic edema.
Insights
Cilostazol treatment after ischemic stroke significantly reduced brain lesion size and improved neurological function. This neuroprotective effect was observed at a 30 mg/kg dose, suggesting potential therapeutic benefits for stroke recovery.
Area of Science:
- Neuroscience
- Pharmacology
- Medical Imaging
Background:
- Ischemic stroke leads to hemispheric lesions and cerebral edema.
- Assessing neuroprotection requires monitoring lesion size and neurological deficits.
Purpose of the Study:
- To evaluate the neuroprotective effects of cilostazol on ischemic brain lesions.
- To determine the efficacy of cilostazol in reducing infarct size and cerebral water content.
Main Methods:
- Middle cerebral artery occlusion (MCAO) model in rodents.
- Magnetic resonance imaging (MRI) including apparent diffusion coefficient (ADC) and T2-weighted images.
- Histological analysis and measurement of cerebral water content.
Main Results:
- Cilostazol (30 mg/kg) significantly suppressed hemispheric lesion area and volume post-stroke.
- This dose also reduced cerebral water content in the ischemic hemisphere.
- Neurological deficits were significantly improved in cilostazol-treated groups.
Conclusions:
- Post-treatment with cilostazol demonstrates a potent protective effect against cerebral infarct size.
- Cilostazol reduces cytotoxic edema, contributing to its neuroprotective properties.
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