Propofol Affords No Protection against Delayed Cerebral Ischemia in a Mouse Model of Subarachnoid Hemorrhage.
Meizi LiuKeshav JayaramanJames W NelsonJogender MehlaDeepti DiwanAnanth K VellimanaGregory J ZipfelUmeshkumar AthiramanPublished in: Diseases (Basel, Switzerland) (2023)
Delayed cerebral ischemia (DCI) is an important contributor to poor outcomes in aneurysmal subarachnoid hemorrhage (SAH) patients. We previously showed that volatile anesthetics such as isoflurane, sevoflurane and desflurane provided robust protection against SAH-induced DCI, but the impact of a more commonly used intravenous anesthetic agent, propofol, is not known. The goal of our current study is to examine the neurovascular protective effects of propofol on SAH-induced DCI. Twelve-week-old male wild-type mice were utilized for the study. Mice underwent endovascular perforation SAH or sham surgery followed one hour later by propofol infusion through the internal jugular vein (2 mg/kg/min continuous intravenous infusion). Large artery vasospasm was assessed three days after SAH. Neurological outcome assessment was performed at baseline and then daily until animal sacrifice. Statistical analysis was performed via one-way ANOVA and two-way repeated measures ANOVA followed by the Newman-Keuls multiple comparison test with significance set at p < 0.05. Intravenous propofol did not provide any protection against large artery vasospasm or sensory-motor neurological deficits induced by SAH. Our data show that propofol did not afford significant protection against SAH-induced DCI. These results are consistent with recent clinical studies that suggest that the neurovascular protection afforded by anesthetic conditioning is critically dependent on the class of anesthetic agent.
Keyphrases
- cerebral ischemia
- subarachnoid hemorrhage
- brain injury
- blood brain barrier
- wild type
- high glucose
- diabetic rats
- mouse model
- end stage renal disease
- high dose
- low dose
- traumatic brain injury
- minimally invasive
- drug induced
- peritoneal dialysis
- acute coronary syndrome
- high resolution
- prognostic factors
- type diabetes
- skeletal muscle
- deep learning
- artificial intelligence
- endothelial cells
- ultrasound guided
- placebo controlled