Role of Vitamin-A on the Cerebral Cortex of Adult Male Wistar Rats Exposed to 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
Asian Journal of Biochemistry, Genetics and Molecular Biology · pp. 11–23 · Published 1 Sep 2026
10.9734/ajbgmb/2026/v18i9564Abstract
Methamphetamine (METH) can induce oxidative stress and structural injury in the cerebral cortex, whereas vitamin A participates in antioxidant defence and neural maintenance. This study evaluated the effect of low-dose vitamin A on methamphetamine-induced cortical changes in adult male Wistar rats. Twenty rats were allocated to four groups (n = 5): control, METH only, vitamin A only and combined METH plus vitamin A. METH was administered orally at 5 mg/kg at 3-hour intervals within 12 hours per day, while vitamin A was administered orally at 0.7 mg/kg once daily for 28 consecutive days. Body weight, elevated plus-maze performance, cerebral-cortex malondialdehyde, glutathione and superoxide dismutase levels, and cortical histoarchitecture were assessed. METH-only exposure was associated with reduced body weight, a higher malondialdehyde level, lower glutathione and superoxide dismutase activities, altered open-arm time and marked cortical degeneration. Co-administration of vitamin A was associated with improved body-weight change, oxidative-stress indices closer to control values and better preservation of cortical architecture than METH-only treatment. The vitamin A-only group showed weight gain, antioxidant-marker values near those of the control group and largely preserved cortical morphology. Under the experimental conditions, low-dose vitamin A was associated with partial attenuation of methamphetamine-induced oxidative and histological changes in the cerebral cortex. These findings are limited to the measured outcomes in a small animal model and require confirmation through larger studies with clearly defined dosing and additional molecular assessments.
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