Related Experiment Video
Updated: Jul 6, 2026

Monitoring Immune Cells Trafficking Fluorescent Prion Rods Hours after Intraperitoneal Infection
Published on: November 19, 2010
Ultrastructural evidence that ependymal cells are infected in experimental scrapie
Jean-Guy Fournier1, Karim Adjou, Vladimir Grigoriev
1CEA/DSV/DRM/SEPIA, rue du Panorama, 92260, Fontenay aux Roses, France. jean-guy.fournier@cea.fr
Abstract:
During the last stage of infection in the experimental scrapie-infected hamster model, light microscopy reveals typical immunostaining of PrPsc in the subependymal region and at the apical ependymal cell borders. Whereas the subependymal immuno-staining is known to originate from extracellular amyloid filaments and residual membranes of astrocytes as constituents of plaque-like structures, the ultrastructural correlate of the supraependymal PrPsc staining remains uncertain. To decipher this apical PrPsc immunopositivity and subsequently the ependymocyte-scrapie agent interaction, we employed highly sensitive immuno-electron microscopy for detecting PrPsc in 263K scrapie-infected hamster brains. The results revealed the supraependymal PrPsc signal to be correlated not only with extracellular accumulation of amyloid filaments, but also with three distinct ependymal cell structures: (1) morphologically intact or altered microvilli associated with filaments, (2) the ependymal cell cytoplasm in proximity of apical cell membrane, and (3) intracytoplasmic organelles such as endosomes and lysosomal-like structures. These findings suggest a strong ependymotrope feature of the scrapie agent and recapitulate several aspects of the cell-prion interaction leading to the formation and production of PrPsc amyloid filaments. Our data demonstrate that in addition to neurons and astrocytes, ependymocytes constitute a new cellular target for the scrapie agent. In contrast, the absence of PrPsc labeling in choroid plexus and brain vascular endothelial cells indicates that these cells are not susceptible to the infection and may inhibit passage of the infectious agent across the blood-brain barrier.
Insights
Scrapie infection affects ependymal cells, the cells lining brain ventricles. Researchers found the scrapie agent interacts with and accumulates within these cells, identifying them as a new target for prion diseases.
Area of Science:
- Neuroscience
- Prion Biology
- Cellular Pathology
Background:
- Scrapie is a fatal neurodegenerative disease caused by prions.
- Prion protein scrapie (PrPsc) deposition is characteristic of prion diseases.
- The interaction of prions with ependymal cells in scrapie infection was unclear.
Purpose of the Study:
- To investigate the ultrastructural basis of PrPsc accumulation at the apical border of ependymal cells.
- To elucidate the interaction between the scrapie agent and ependymocytes.
Main Methods:
- Utilized highly sensitive immuno-electron microscopy in 263K scrapie-infected hamster brains.
- Examined PrPsc localization in relation to ependymal cell structures.
Main Results:
- Supraependymal PrPsc correlated with extracellular amyloid filaments and ependymal cell structures.
- PrPsc was found associated with microvilli, cytoplasm, and intracellular organelles of ependymal cells.
- Ependymocytes were identified as a novel cellular target for the scrapie agent.
Conclusions:
- The scrapie agent exhibits ependymotropic properties, interacting with and accumulating in ependymal cells.
- Ependymocytes, along with neurons and astrocytes, are susceptible to scrapie infection.
- Choroid plexus and vascular endothelial cells appear resistant, potentially limiting agent spread.

