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January 22, 2026PLoS Biology1 citationsOpen Access

Microglial activity during postnatal development is required for infantile amnesia in mice

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ESErika StewartLZLouisa G. ZielkeABAntje R. de Boer

Key Points

  • The study aims to understand the mechanisms underlying infantile amnesia, particularly focusing on microglial activity.
  • Utilized mouse models to study microglial activity during postnatal development.
  • Assessed changes in microglial morphology over time related to memory.
  • Applied pharmacological agents to inhibit microglial activity at specific developmental stages.
  • Investigated engram cell interactions and reactivation in relation to microglial function.
  • Pharmacological inhibition of microglia prevented the typical infantile amnesia when recalling contextual fear memories.
  • Microglial inhibition led to changes in engram cell size and reactivation in the amygdala.
  • Altered microglia-engram interactions were observed following microglial activity modulation.
  • Links were established between microglial dysfunction and infantile amnesia in offspring exposed to maternal immune activation.

Abstract

Infantile amnesia, the inability to recall episodic memories formed during early childhood, is a hallmark of postnatal brain development. Yet the underlying mechanisms remain poorly understood. This work aimed to gain a better mechanistic understanding of infantile amnesia. Microglia, specialized macrophages of the central nervous system, are known to play an important role in synaptic refinement during postnatal development and have recently been implicated in memory-related functions. Using mouse models, we identified microglia as key regulators of memory accessibility in infancy. We profiled dynamic changes in microglial morphology across the postnatal window that paralleled the onset of infantile forgetting. We found that pharmacological inhibition of microglial activity during a specific postnatal window prevents infantile amnesia for a contextual fear memory, implicating microglia as active modulators of infant memory persistence. Using activity-dependent tagging of infant encoded engram cells, we demonstrated that microglial inhibition alters engram size and engram reactivation in the amygdala and results in changes in microglia–engram cell interactions. Furthermore, we characterized a relationship between microglial dysfunction and the lack of infantile amnesia in maternal immune activation offspring. Together, these findings reveal a novel role for microglia in regulating infant memory retrieval in mice and suggest that microglial dysfunction may contribute to altered memory trajectories in neurodevelopmental disorders.

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Cite This Study

Stewart et al. (2026) studied this question.

synapsesocial.com/papers/6971bdcf642b1836717e27c0https://doi.org/10.1371/journal.pbio.3003538
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Microglial plasticity across development mediates infantile amnesia2025
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  5. 5Transient Impairment in Microglial Function Causes Sex-Specific Deficits in Synaptic and Hippocampal Function in Mice Exposed to Early Adversity2024 · 4 citations