Tau Accumulation Induces Microglial State Alterations in Alzheimer's Disease Model Mice

Kenichi Nagata1,2, Shoko Hashimoto2,3, Daisuke Joho4

  • 1Department of Functional Anatomy and Neuroscience, Nagoya University, Graduate School of Medicine, Aichi 466-8550, Japan knagata@med.nagoya-u.ac.jp hiroki.sasaguri@riken.jp.

Eneuro
|November 26, 2024
PubMed

Insights

Alzheimer's disease (AD) tau pathology alters microglial states, promoting disease-associated microglia. This study reveals tau's impact on microglial phenotypes in a novel AD mouse model, advancing our understanding of AD pathogenesis.

Area of Science:

  • Neuroscience
  • Immunology
  • Genetics

Background:

  • Microglial states are altered in Alzheimer's disease (AD), but the impact of tau pathology is unclear.
  • Amyloid-beta's effect on microglia is known, yet tau's role requires further investigation due to limited AD models.

Purpose of the Study:

  • To investigate the relationship between tau pathology and microglial states in a novel AD mouse model.
  • To characterize microglial phenotype changes induced by tau propagation and accumulation.

Main Methods:

  • Generated a novel AD mouse model via intracerebral tau administration into APP knock-in mice.
  • Utilized immunohistochemistry and single-nucleus RNA sequencing to analyze microglial states.
  • Applied spatial transcriptomics to map microglial changes in relation to tau pathology.

Main Results:

  • Increased Dectin-1-positive disease-associated microglia were observed following tau accumulation.
  • Single-nucleus RNA sequencing identified tau-induced shifts in microglial phenotypes.
  • Tau propagation and accumulation promote a disease-associated microglial phenotype, reducing white matter-associated microglia.

Conclusions:

  • Tau pathology significantly alters microglial states in the AD brain.
  • This study provides novel insights into tau-driven microglial responses in AD pathogenesis.
  • Spatial transcriptomics offers a powerful tool for future studies on microglial alterations in AD.