Distinct Microglial Responses in Two Transgenic Murine Models of TAU Pathology

Carmen Romero-Molina1,2,3, Victoria Navarro1,2,3, Raquel Sanchez-Varo3,4

  • 1Departamento Bioquimica y Biologia Molecular, Facultad de Farmacia, Universidad de Sevilla, Seville, Spain.

Insights

Microglial cells show different responses to tau pathology in Alzheimer's disease models. Soluble, toxic tau species, not just levels, drive microglial cell toxicity and immune deficiency.

Area of Science:

  • Neuroscience
  • Immunology
  • Pathology

Background:

  • Microglial cells are key in neurodegenerative diseases like Alzheimer's disease (AD).
  • Microglial response in AD is mainly studied concerning amyloid-beta, with less known about tau pathology.
  • Microglial degeneration is reported in the hippocampus of AD patients, where tau pathology is prominent.

Purpose of the Study:

  • To directly compare microglial responses in two transgenic tau mouse models (ThyTau22 and P301S).
  • To investigate the role of tau pathology, including soluble and aggregated forms, in microglial activation and toxicity.

Main Methods:

  • Comparison of microglial activation profiles in ThyTau22 and P301S tau mouse models.
  • Analysis of phospho-tau accumulation and aggregation in different tau species.
  • In vitro toxicity assays using soluble hippocampal fractions on microglial cells.

Main Results:

  • ThyTau22 mice showed mild microglial activation, while P301S mice exhibited strong activation with high phospho-tau.
  • Soluble fractions from ThyTau22 hippocampus were toxic to microglial cells in vitro, despite lower overall phospho-tau.
  • P301S mice had high levels of insoluble, aggregated phospho-tau and showed low toxicity in soluble fractions.

Conclusions:

  • Distinct microglial responses in tau models are influenced by tau mutations, accumulation, phosphorylation, and aggregation.
  • The molecular nature of toxic tau species, particularly soluble forms, is critical for microglial function.
  • Targeting toxic tau species offers a potential therapeutic strategy to restore microglial immune function in AD hippocampus.

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