A MICROGLIAL ACTIVITY STATE BIOMARKER PANEL DIFFERENTIATES FTD-GRANULIN AND ALZHEIMER'S DISEASE PATIENTS FROM

Abstract

Insights

Researchers identified six potential biomarkers (FABP3, MDH1, GDI1, CAPG, CD44, GPNMB) for microglial activation. Three markers (FABP3, GDI1, MDH1) were elevated in Alzheimer's Disease (AD) patients, differentiating early-stage cases and aiding in monitoring microglia-modulating therapies.

Area of Science:

  • Neuroscience
  • Immunology
  • Biomarker Discovery

Background:

  • Microglia-modulating therapies require reliable biomarkers to assess microglial activation states.
  • Genetic models of homeostatic (TREM2-knockout) and disease-associated (GRN-knockout) microglia were used.
  • Understanding microglial states is crucial for neurodegenerative disease research.

Approach:

  • Utilized non-targeted mass spectrometry on mouse models and human induced pluripotent stem cell-derived microglia (hiMGL) to identify proteomic changes.
  • Analyzed cerebrospinal fluid (CSF) proteomes from GRN-knockout mice and human patients with GRN mutations.
  • Validated candidate proteins in independent patient cohorts (ALLFTD and EMIF-AD MBD).

Key Points:

  • Identified a panel of six proteins (FABP3, MDH1, GDI1, CAPG, CD44, GPNMB) as potential microglial activation indicators.
  • Confirmed elevated levels of FABP3, GDI1, and MDH1 in the CSF of Alzheimer's Disease (AD) patients.
  • These three markers differentiated amyloid-positive mild cognitive impairment (MCI) from amyloid-negative individuals.

Conclusions:

  • The identified proteins serve as relevant indicators of microglia activity for clinical trials and practice.
  • These biomarkers may help monitor responses to therapies targeting microglial activity and amyloid deposition.
  • The findings suggest these markers are associated with early immune responses in AD and highlight lipid dysmetabolism in neurodegeneration.

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