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Roseborough, A. D.

Publications and source records attributed to Roseborough, A. D..

2 recordsLinked to original sources

Microglial morphology reflects cognitive status in the aging rat brain

Age-related cognitive decline affects millions of individuals worldwide, but the cellular mechanisms underlying this decline remain incompletely understood. Microglia undergo significant changes with aging, including alterations in morphology, that may reflect or contribute to cognitive dysfunction. However, the relationship between specific microglial morphologies and cognitive performance in relevant brain regions remains poorly understood. To address this, we evaluated the relationship between morphology-based microglial phenotypes and cognitive performance across domains affected by aging. Microglial morphology was analyzed in four cognitive brain regions of male and female 3-, 9-, and 15-month-old rats and features were subjected to hierarchical clustering on principal components to identify microglial subtypes. Rats underwent cognitive testing using a radial arm water maze and a T-maze set-shifting task to assess spatial working and reference memory, striatal-based learning, and cognitive flexibility. We observed age-related cognitive impairments alongside region-specific changes in microglial morphotype abundance. Importantly, the relative abundance of distinct microglial clusters correlated with cognitive performance in functionally relevant brain regions including the prefrontal cortex, the orbitofrontal cortex, and the hippocampus. Taken together, these findings highlight the utility of morphological profiling in capturing microglial heterogeneity and suggest that morphological changes may reflect or contribute to cognitive decline during aging.

neuroscience↗

Increased circulating TREM2+ microglia extracellular vesicles in aged APP/PS1 Alzheimer's disease rats

INTRODUCTIONTREM2 is a microglial marker important in Alzheimers disease (AD) pathogenesis, but current methods to detect microglial TREM2 expression in vivo are limited. Circulating microglia-derived extracellular vesicles (EVs) show promise as potential biomarkers for AD and may offer insight into TREM2 activity. METHODSTMEM119+/TREM2+ EVs were assessed using nanoscale flow cytometry in plasma from wildtype and APP/PS1 rats aged to 3-, 9-, and 15-months-old. Molecular and histological assays were used to assess microglia markers in rat brain tissue and a radial arm water maze task was employed to evaluate spatial working and reference memory. RESULTSCirculating TMEM119+/TREM2+ EVs were increased in 15-month APP/PS1 rats and associated with severity of cognitive impairment. TREM2 brain expression varied by anatomical region, age, transgene, and assay. DISCUSSIONCollectively, this study provides the first assessment of TMEM119+/TREM2+ EVs as a biomarker of brain microglial expression and cognition in an AD rat model.

neuroscience↗