bioRxiv · 10.64898/2026.06.30.735514
Differential effects of piroxicam and nitroglycerine on memory and hippocampal neurochemistry in di-oestrous female rats
Abstract
ObjectivesTo evaluate and compare the neuro-behavioural safety profiles of piroxicam and nitroglycerine by investigating their differential effects on cognitive function, spatial and recognition memory, and hippocampal neurochemistry in a di-oestrous female Wistar rat model. MethodsFemale Wistar rats at di-oestrous were randomly assigned to receive distilled water, piroxicam, or nitroglycerine orally for four consecutive days. Following treatment, spatial and recognition memory were evaluated using standard behavioural paradigms. Hippocampal tissues were analysed for acetylcholinesterase and glutamate activity, oxidative stress markers, and neuroinflammatory indices. ResultsPiroxicam improved recognition memory and was associated with increased glutamatergic activity and a compensatory rise in superoxide dismutase. However, it also elicited elevated nitric oxide signaling, lipid peroxidation, and localized neuroinflammatory markers in the hippocampus. In contrast, nitroglycerine impaired non-spatial memory during di-oestrous. Although both treatments preserved working memory, they produced distinct effects on object recognition, memory discrimination, oxidative stress parameters, and neuroinflammatory mediators. ConclusionsPiroxicam and nitroglycerine exert differential effects on cognition and hippocampal neurochemistry during di-oestrous. Piroxicam improved recognition memory and produced distinct hippocampal neurochemical alterations, whereas nitroglycerine impaired recognition memory. These findings highlight the influence of menstrual pain therapeutics on cognitive function and hippocampal physiology under hormonally sensitive conditions.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Kilanko, F. J., Adele, B. O.. 2026-07-04. Differential effects of piroxicam and nitroglycerine on memory and hippocampal neurochemistry in di-oestrous female rats. https://doi.org/10.64898/2026.06.30.735514
Cite the original work for its findings. Save a collection to share your selection of sources.