Effects of ibuprofen on cognition and NMDA receptor subunit expression across aging
Alejandra Márquez Loza1, Valerie Elias1, Carmen P Wong2
1Department of Biomedical Sciences, Oregon State University, Corvallis, OR 97331, USA; Linus Pauling Institute, Oregon State University, Corvallis, OR 97331, USA.
Abstract:
Age-related declines in long- and short-term memory show relationships to decreases in N-methyl-d-aspartate (NMDA) receptor expression, which may involve inflammation. This study was designed to determine effects of an anti-inflammatory drug, ibuprofen, on cognitive function and NMDA receptor expression across aging. Male C57BL/6 mice (ages 5, 14, 20, and 26months) were fed ibuprofen (375ppm) in NIH31 diet or diet alone for 6weeks prior to testing. Behavioral testing using the Morris water maze showed that older mice performed significantly worse than younger in spatial long-term memory, reversal, and short-term memory tasks. Ibuprofen enhanced overall performance in the short-term memory task, but this appeared to be more related to improved executive function than memory. Ibuprofen induced significant decreases over all ages in the mRNA densities for GluN2B subunit, all GluN1 splice variants, and GluN1-1 splice forms in the frontal cortex and in protein expression of GluN2A, GluN2B and GluN1 C2' cassettes in the hippocampus. GluN1-3 splice form mRNA and C2' cassette protein were significantly increased across ages in frontal lobes of ibuprofen-treated mice. Ibuprofen did not alter expression of pro-inflammatory cytokines IL-1β and TNFα, but did reduce the area of reactive astrocyte immunostaining in frontal cortex of aged mice. Enhancement in executive function showed a relationship to increased GluN1-3 mRNA and decreased gliosis. These findings suggest that inflammation may play a role in executive function declines in aged animals, but other effects of ibuprofen on NMDA receptors appeared to be unrelated to aging or inflammation.
Insights
Ibuprofen improved executive function in aging mice, potentially by reducing inflammation and altering N-methyl-d-aspartate (NMDA) receptor expression, though effects on memory were not significant.
Area of Science:
- Neuroscience
- Pharmacology
- Aging Research
Background:
- Age-related memory decline is linked to reduced N-methyl-d-aspartate (NMDA) receptor expression and inflammation.
- Investigating the impact of anti-inflammatory drugs on cognitive function and NMDA receptors in aging is crucial.
Purpose of the Study:
- To determine the effects of ibuprofen on cognitive function and NMDA receptor expression in aging mice.
- To explore the relationship between inflammation, NMDA receptor changes, and cognitive performance in aged animals.
Main Methods:
- Male C57BL/6 mice of various ages (5-26 months) were administered ibuprofen in their diet for 6 weeks.
- Cognitive function was assessed using the Morris water maze, and NMDA receptor expression (mRNA and protein) was analyzed in brain tissues.
- Inflammatory markers (cytokines, reactive astrocytes) were also evaluated.
Main Results:
- Older mice exhibited poorer performance in memory and reversal tasks compared to younger mice.
- Ibuprofen improved performance in short-term memory tasks, primarily through enhanced executive function.
- Ibuprofen altered NMDA receptor subunit and splice variant expression and reduced reactive astrocyte staining in aged mice.
- No significant changes were observed in pro-inflammatory cytokine levels (IL-1β, TNFα).
Conclusions:
- Inflammation may contribute to executive function decline in aging, with ibuprofen showing potential benefits.
- Ibuprofen's effects on NMDA receptor expression appear independent of aging and inflammation.
- Further research is needed to elucidate the precise mechanisms underlying ibuprofen's impact on cognitive aging.
Related Concept Videos
Pharmacodynamics in Geriatric Patients: Effects of Age
Cognitive Enhancers: Cholinesterase Inhibitors and NMDA Receptor Antagonists
Drug Dosing: Geriatric Patients
Pharmacokinetics in Geriatric Patients: Effect of Age on Drug Absorption
Pharmacokinetics in Geriatric Patients: Effect of Age on Drug Metabolism
Cognitive Development During Adulthood


