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Updated: Apr 30, 2026

Monitoring Immune Cells Trafficking Fluorescent Prion Rods Hours after Intraperitoneal Infection
Published on: November 20, 2010
Prion uptake in the gut: identification of the first uptake and replication sites
Pekka Kujala1, Claudine R Raymond, Martijn Romeijn
1Section of Cell Biology II, Netherlands Cancer Institute, Amsterdam, The Netherlands.
Abstract:
After oral exposure, prions are thought to enter Peyer's patches via M cells and accumulate first upon follicular dendritic cells (FDCs) before spreading to the nervous system. How prions are actually initially acquired from the gut lumen is not known. Using high-resolution immunofluorescence and cryo-immunogold electron microscopy, we report the trafficking of the prion protein (PrP) toward Peyer's patches of wild-type and PrP-deficient mice. PrP was transiently detectable at 1 day post feeding (dpf) within large multivesicular LAMP1-positive endosomes of enterocytes in the follicle-associated epithelium (FAE) and at much lower levels within M cells. Subsequently, PrP was detected on vesicles in the late endosomal compartments of macrophages in the subepithelial dome. At 7-21 dpf, increased PrP labelling was observed on the plasma membranes of FDCs in germinal centres of Peyer's patches from wild-type mice only, identifying FDCs as the first sites of PrP conversion and replication. Detection of PrP on extracellular vesicles displaying FAE enterocyte-derived A33 protein implied transport towards FDCs in association with FAE-derived vesicles. By 21 dpf, PrP was observed on the plasma membranes of neurons within neighbouring myenteric plexi. Together, these data identify a novel potential M cell-independent mechanism for prion transport, mediated by FAE enterocytes, which acts to initiate conversion and replication upon FDCs and subsequent infection of enteric nerves.
Insights
This study reveals a new pathway for prion disease. Prions may travel from the gut to the brain via specialized intestinal cells, bypassing M cells, to infect follicular dendritic cells and nerves.
Area of Science:
- Neuroscience
- Immunology
- Gastroenterology
Background:
- Prions are implicated in neurodegenerative diseases.
- Oral prion exposure is a known risk factor.
- The initial route of prion uptake in the gut remains unclear.
Purpose of the Study:
- To investigate the initial uptake and transport mechanisms of prions from the gut lumen.
- To identify the first sites of prion replication in Peyer's patches.
- To elucidate the pathway of prion spread to the enteric nervous system.
Main Methods:
- High-resolution immunofluorescence microscopy.
- Cryo-immunogold electron microscopy.
- Analysis of prion protein (PrP) trafficking in wild-type and PrP-deficient mice.
Main Results:
- Prion protein (PrP) was detected in enterocytes of the follicle-associated epithelium (FAE) and subsequently in macrophages.
- Follicular dendritic cells (FDCs) in Peyer's patches were identified as the initial sites of PrP conversion and replication.
- PrP transport was associated with FAE enterocyte-derived extracellular vesicles, suggesting an M cell-independent pathway.
- Prions were subsequently found on neurons in the myenteric plexi.
Conclusions:
- A novel M cell-independent prion transport mechanism mediated by FAE enterocytes is proposed.
- This pathway initiates prion conversion and replication on FDCs.
- The findings provide new insights into the early events of prion pathogenesis following oral exposure.
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