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Morphogenesis of amyloid plaques in 87V murine scrapie

M Jeffrey1, C M Goodsir, M E Bruce

  • 1Central Veterinary Laboratory, Lasswade Veterinary Laboratory, Penicuik, UK.

Insights

Scrapie-infected mouse brains contain amyloid plaques made of prion protein (PrP). These plaques form around PrP-releasing dendrites and are cleared by microglia and astrocytes.

Area of Science:

  • Neuroscience
  • Pathology
  • Biochemistry

Background:

  • Scrapie is a fatal neurodegenerative disease caused by prions.
  • Amyloid plaques composed of prion protein (PrP) are a hallmark of scrapie pathology.
  • The precise mechanism of plaque formation and PrP aggregation remains incompletely understood.

Purpose of the Study:

  • To investigate the ultrastructural localization and formation of amyloid plaques in scrapie-infected mouse brains.
  • To elucidate the role of cellular processes and glial cells in PrP accumulation and plaque development.

Main Methods:

  • Serial ultrastructural immunogold staining was employed on brain tissue from scrapie-infected VM mice.
  • Immunocytochemistry was used to identify and characterize amyloid plaques.
  • PrP distribution was analyzed at the ultrastructural level in relation to cellular structures and glial cells.

Main Results:

  • Classical kuru-type plaques contained amyloid fibrils immunoreactive for PrP.
  • PrP was also found in non-fibrillar forms at the plaque periphery, associated with cell processes and extracellular spaces.
  • Primitive plaques, with few or no fibrils, showed PrP accumulation at the plasmalemma and extracellularly, suggesting formation around PrP-releasing dendrites.
  • Microglia and astrocytes contained PrP within lysosomes, indicating phagocytic activity.

Conclusions:

  • Amyloid plaques in scrapie likely originate around PrP-releasing dendrites.
  • Extracellular PrP accumulation precedes fibril formation.
  • Microglia and astrocytes play a role in clearing abnormal PrP through phagocytosis.

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