Potential dose dependent neuro protective effect of ketamine on the brain in the head trauma model in rats
2023
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Advisor: Prof. Dr. Fatma Sultan Kılıç
Abstract (EN)
Objective: In our study, we aimed to investigate the neuroprotective and anti-inflammatory effects of ketamine, which has immunomodulatory effects, in an experimental head injury model in rats. Methods: The rats were divided into six groups (n: 6) as control, trauma and ketamine-treated trauma (Trauma+10, Trauma+20, Trauma+40 and Trauma+60mg/kg ketamine). Ketamine was administered intraperitoneally every day until the seventh day after the trauma. Neurological examination was performed on the 24th, 48th hours and seventh day after the trauma. Serum IL-1β, IL-10, TNF-α levels were measured at the 24th hour and seventh day. On the seventh day the serum and brain levels of lipid peroxidase (MDA), glutathione peroxidase, catalase, caspase-3 and serum levels of AST, ALT, ALP, BUN, creatinine and LDH were studied. Hematoxylin-Eosin staining was performed for histopathological evaluation of brain tissue and TUNEL staining for apoptosis. Statistical analysis was performed by one-way and two-way analysis of variance (ANOVA). Results: Neurological examination scores were impaired in the ketamine 60mg/kg group (p<0.05) and a decrease in IL-1β levels was observed in the 40mg/kg ketamine group (p<0.05) on the seventh day. Brain levels of glutathione peroxidase were decreased at 60mg/kg ketamine dose compared to other doses (p<0.05). At the dose of ketamine 60mg/kg, an increase in brain values of MDA were observed on the seventh day (p<0.001). Necrosis was observed in histopathological examinations. Conclusion: 60mg/kg ketamine dose had a negative effect on neurologic examination scores, IL-1β, brain glutathione peroxidase and MDA levels. 40mg/kg ketamine dose had a positive effect on IL-1β. No beneficial or harmful effects of ketamine were observed at other doses. As the most important finding, ketamine, at doses other than 60 mg/kg, played a protective role by preventing the worsening of post-traumatic injuries.
Author
Emine Gülhan Gölcükcü Aydın
How to Cite
Emine Gülhan Gölcükcü Aydın (Doctorate thesis). Potential dose dependent neuro protective effect of ketamine on the brain in the head trauma model in rats, 2023, Eskişehir Osmangazi University.
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