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Updated: Jun 23, 2025

Author Spotlight: Exploring Microglial Interactions with Stress-Response Circuitry Using the Limited Bedding and Nesting Model
Published on: July 12, 2024
Impacts of age and environment on postnatal microglial activity: Consequences for cognitive function following early
Michaela Fanikos1, Skylar A Kohn1, Rebecca Stamato1
1Department of Psychology, Northeastern University, Boston, Massachusetts, United States of America.
Abstract:
Early life adversity (ELA) increases the likelihood of later-life neuropsychiatric disorders and cognitive dysfunction. Importantly, ELA, neuropsychiatric disorders, and cognitive deficits all involve aberrant immune signaling. Microglia are the primary neuroimmune cells and regulate brain development. Microglia are particularly sensitive to early life insults, which can program their responses to future challenges. ELA in the form of maternal separation (MS) in rats alters later-life microglial morphology and the inflammatory profile of the prefrontal cortex, a region important for cognition. However, the role of microglial responses during MS in the development of later cognition is not known. Therefore, here we aimed to determine whether the presence of microglia during MS mediates long-term impacts on adult working memory. Clodronate liposomes were used to transiently deplete microglia from the brain, while empty liposomes were used as a control. We hypothesized that if microglia mediate the long-term impacts of ELA on working memory in adulthood, then depleting microglia during MS would prevent these deficits. Importantly, microglial function shifts throughout the neonatal period, so an exploratory investigation assessed whether depletion during the early versus late neonatal period had different effects on adult working memory. Surprisingly, empty liposome treatment during the early, but not late, postnatal period induced microglial activity changes that compounded with MS to impair working memory in females. In contrast, microglial depletion later in infancy impaired later life working memory in females, suggesting that microglial function during late infancy plays an important role in the development of cognitive function. Together, these findings suggest that microglia shift their sensitivity to early life insults across development. Our findings also highlight the potential for MS to impact some developmental processes only when compounded with additional neuroimmune challenges in a sex-dependent manner.
Insights
Early life adversity impacts brain immunity and cognition. Microglia
Area of Science:
- Neuroscience
- Immunology
- Developmental Psychology
Background:
- Early life adversity (ELA) is linked to neuropsychiatric disorders and cognitive deficits.
- Aberrant immune signaling, particularly involving microglia, is implicated in ELA, neuropsychiatric disorders, and cognitive dysfunction.
- Microglia, the brain's primary immune cells, are sensitive to early life insults and influence brain development.
Purpose of the Study:
- To investigate whether microglia mediate the long-term effects of maternal separation (MS) on adult working memory.
- To explore the impact of microglial depletion during different neonatal periods on working memory outcomes.
Main Methods:
- Transient depletion of microglia using clodronate liposomes in a rat model of MS.
- Control group received empty liposomes.
- Assessment of adult working memory following neonatal interventions.
Main Results:
- Empty liposome treatment in early postnatal development, not late, exacerbated MS-induced working memory deficits in females.
- Microglial depletion in late infancy impaired adult working memory in females.
- Findings suggest sex-dependent effects and a developmental shift in microglial sensitivity to ELA.
Conclusions:
- Microglia play a critical role in mediating the long-term cognitive consequences of early life adversity.
- The timing of microglial involvement during early life is crucial for cognitive development.
- Interventions targeting neuroimmune pathways may offer therapeutic potential for ELA-related cognitive impairments.
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