Atrophy and microglial distribution in primary progressive aphasia with transactive response DNA-binding protein-43

Garam Kim1, Kabriya Bolbolan1, Tamar Gefen1

  • 1Cognitive Neurology and Alzheimer's Disease Center, Northwestern University Feinberg School of Medicine, Chicago, IL.

Annals of Neurology
|April 18, 2018
PubMed
Abstract

Insights

Activated microglia in primary progressive aphasia with TDP-43 pathology show asymmetric distribution, favoring the language hemisphere and correlating with atrophy. These findings suggest microglia contribute to cortical thinning and TDP-43 inclusion formation.

Area of Science:

  • Neuroscience
  • Neuropathology

Background:

  • Primary progressive aphasia (PPA) is a neurodegenerative disease.
  • Frontotemporal lobar degeneration with transactive response DNA-binding protein-43 (TDP-43) inclusions is a common PPA subtype.
  • The role of activated microglia in PPA-TDP pathogenesis is not fully understood.

Purpose of the Study:

  • To quantify activated microglia density and distribution in PPA-TDP brains.
  • To examine relationships between microglia, atrophy, TDP-43 inclusions, and clinical phenotype.

Main Methods:

  • Immunohistochemistry to visualize microglia and TDP-43.
  • Unbiased stereology to quantify marker densities in language regions.
  • Comparison of marker distribution across hemispheres and correlation with atrophy and phenotype.

Main Results:

  • Activated microglia showed asymmetric distribution, favoring the language-dominant hemisphere, correlating with atrophy.
  • Microglial activation patterns aligned with areas of high atrophy in language regions.
  • TDP-43 inclusion density was higher in atrophic areas, but showed no clear regional relationship with microglia density.

Conclusions:

  • Microglial activation in PPA-TDP is likely a response to cortical abnormalities contributing to atrophy.
  • Activated microglia may play a role in cortical thinning and TDP-43 inclusion formation.
  • Concordance observed between microglial activation, atrophy, and clinical phenotype.

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