Abstract
BACKGROUND: Cognitive resilience to Alzheimer's disease (AD) can be modelled in amyloid-expressing rodents through early handling (EH). This study investigated how EH and sex affect cognition and pathology over time.
METHODS: We assessed cognition (Open field, Novel object recognition test, Barnes maze) in 6- and 12-month-old APP/PS1 and WT mice (N=180, EH/Ctrl X M/F), performed biochemical and histological analyses of several brain areas to assess effects on amyloid-beta, glial cells, and other markers of pathology, and investigated how behavior correlates with pathology.
RESULTS: EH improved non-spatial memory at 6 months, consistent with a reduction of hippocampal microglia density, and normalized locomotor activity at 12 months (both p<0.05). Females demonstrated similar (6 & 12 months) or better (12 months) cognition, despite greater pathology across timepoints. Correlations implicated microglial recruitment in EH-related effects, supported by morphological analysis of prefrontal regions (p<0.05).
CONCLUSION: Our findings highlight the critical role of early postnatal experiences and sex in shaping resilience in the context of AD pathology.