The Role of High-Dose Vitamin A on the Amygdala of Adult Male Wistar Rats Exposed to Toxic Doses of Methamphetamine
Ezejindu Damian NNABUIHE, Joshua Izuchukwu ABUGU, Enemuo IJEOMA, Okeke Somadina Nnamdi, Ogbuokiri Doris K, Okeke Henry Kachikwuru, Ekoh Augustine Alobu, Benedict Nzube Obinwa, Chinyere Elizabeth Eze, Nwaefulu Kester Eluemunor, Sobanke A. Omolara, Chidinma Ifeyinwa Mmaju, Okafor Anulika Jacinta, Chuka-Onwuokwu Ngozi Cynthia, Ejiogu Ikedichukwu Chibueze, Nwoko Sebastine Okechukwu, Wuraola Serah Nnaemeka, Ebi Victory Chinecherem, Agu Augustine Uchenna, Ugwu Augustus Uchenna, Nwodo Ndubuisi Francis, Elemuo Chukwuebuka Stanley, Agbai Johnson Ukwa, Muorah Chinecherem Onyekachi, Ozoemena Chiadikobi Lawrence
International Neuropsychiatric Disease Journal · pp. 34–43 · Published 19 Aug 2026
10.9734/indj/2026/v23i5578Abstract
The amygdala, a major limbic structure, regulates emotional response, anxiety, and memory formation. Methamphetamine is known to trigger oxidative stress and neurodegeneration, whereas vitamin A possesses potent antioxidant properties that may offer neuroprotection. This study evaluated the effect of high-dose vitamin A on the amygdala of adult male Wistar rats exposed to toxic doses of methamphetamine. Twenty (20) adults male Wistar rats were randomly assigned into four groups and received as follows: Group A (control), Group B (METH-only; 5 mg/kg at 3-hours interval within 12 hours in a day), group C (Vitamin A-only; 2.5 mg/kg), while, group D (combined METH 5 mg/kg at 3-hours interval within 12 hours in a day + Vitamin A-only; 2.5 mg/kg). All experimental groups received feed and water. The administration was done orally using intubation method for a period of twenty-eight days. Body weight result revealed a significant reduction in the methamphetamine-only group compared with the control suggesting metabolic disturbance and appetite suppression. Co-treatment with vitamin A improved body weight, indicating a restorative metabolic effect. Biochemical findings showed elevated malondialdehyde (MDA) and decreased glutathione (GSH) and superoxide dismutase (SOD) levels in the methamphetamine group, confirming oxidative damage within the amygdala. Vitamin A treatment markedly reduced MDA and preserved GSH and SOD activities, demonstrating enhanced antioxidant defense. Behavioral testing using the Elevated Plus Maze indicated anxiety-related alterations following methamphetamine exposure, while vitamin A co-administration protected these behavioral changes. Histological results showed that methamphetamine caused neuronal degeneration, vacuolation, and necrosis, whereas vitamin A preserved neuronal integrity and promoted partial structural recovery. In conclusion, high-dose vitamin A significantly mitigated methamphetamine-induced oxidative and structural damage in the amygdala, highlighting its antioxidative and neuroprotective potential against psychostimulant toxicity.
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