APOE4 genotype and aging impair injury-induced microglial behavior in brain slices, including toward Aβ, through

Jordy Sepulveda1, Jennifer Yejean Kim2, Joseph Binder2

  • 1Department of Pharmacology & Physiology, Georgetown University, Washington, DC, 20007, USA.

PubMed

Insights

APOE4 genotype and aging impair microglial surveillance and response to damage, potentially increasing Alzheimer

Area of Science:

  • Neuroscience
  • Immunology
  • Genetics

Background:

  • Microglia are crucial for brain homeostasis, but their dynamics are affected by aging and APOE4 genotype, key Alzheimer's disease (AD) risk factors.
  • The precise impact of APOE4 and aging on microglial surveillance and response to injury signals remains unclear.

Purpose of the Study:

  • To investigate how APOE4 genotype and aging influence microglial dynamic behaviors, including surveillance and response to damage signals.
  • To explore the role of P2RY12 receptor in APOE4-associated microglial dysfunction.

Main Methods:

  • Ex vivo confocal microscopy was used to analyze microglial process dynamics in APOE3 and APOE4 knock-in mice of varying ages (6, 12, 21 months).
  • Microglial surveillance was assessed by measuring baseline motility and process extension/retraction.
  • Microglial response to damage was evaluated using ATP and amyloid-beta (Aβ) stimuli, with P2RY12 receptor levels also quantified.

Main Results:

  • APOE4 microglia showed significantly reduced brain surveillance compared to APOE3 microglia, an effect exacerbated by aging.
  • APOE4 microglia exhibited slower process extension in response to ATP and reduced migration towards Aβ plaques.
  • APOE4 microglia displayed lower P2RY12 receptor expression, and blocking this receptor impaired microglial migration to Aβ.

Conclusions:

  • The APOE4 genotype and aging significantly impair microglial surveillance and their ability to respond to injury signals like ATP and Aβ.
  • Reduced P2RY12 receptor expression in APOE4 microglia contributes to their dysfunctional response to damage.
  • These findings offer mechanistic insights into increased AD susceptibility in APOE4 carriers, particularly in the context of aging.