The Role of Microglia in Prion Diseases: A Paradigm of Functional Diversity

Juliane Obst1, Emilie Simon1, Renzo Mancuso1

  • 1Biological Sciences, University of Southampton, Southampton General HospitalSouthampton, United Kingdom.

Insights

Microglia, the brain's immune cells, play a dual role in prion diseases, contributing to both neurodegeneration and repair. Understanding their complex functions is key to developing new therapies for these devastating neurodegenerative disorders.

Area of Science:

  • Neuroscience
  • Immunology
  • Pathology

Background:

  • Neuroinflammation is central to neurodegenerative diseases.
  • Microglia are innate immune cells in the central nervous system (CNS) crucial for brain homeostasis and synaptic plasticity.
  • In disease, microglia become activated, driving neuroinflammation and contributing to neurodegeneration.

Purpose of the Study:

  • To review the current understanding of microglia's role in prion disease pathogenesis.
  • To explore the dual functions of microglia in prion disease: neurotoxic and reparative.
  • To highlight the potential for immunomodulatory therapies in neurodegenerative disorders.

Main Methods:

  • This is a review article, synthesizing existing research.
  • Evidence from numerous studies on microglia and prion disease was analyzed.
  • The polarization of microglia into distinct functional phenotypes was examined.

Main Results:

  • Microglia can initiate neurotoxic pathways, exacerbating prion disease progression.
  • Microglia also play essential roles in controlling inflammation and promoting repair.
  • Microglial function is regulated by complex pathways, allowing for distinct phenotypes.

Conclusions:

  • Microglia exhibit a dual role in prion disease pathogenesis, contributing to both damage and repair.
  • Understanding microglial polarization and function is critical for developing effective treatments.
  • Targeting neuroinflammation offers new therapeutic avenues for prion and other neurodegenerative diseases.