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1.
Virchows Arch ; 451(6): 1057-65, 2007 Dec.
Article in English | MEDLINE | ID: mdl-17823814

ABSTRACT

In transmissible spongiform encephalopathies (TSEs), the infectious agent, called PrPsc, an abnormal isoform of the cellular prion protein, accumulates and replicates in lymphoid organs before affecting the nervous system. To clarify the cellular requirements for the neuroinvasion of the scrapie agent from the lymphoid organs to the central nervous system, we have studied, by confocal microscopy, the innervations within Peyer's patches, mesenteric lymph nodes and the spleen of mice in physiological conditions and after oral exposure to prion. Contacts between nerve fibres and PrPsc-associated cells, dendritic cells (DCs) and follicular dendritic cells (FDCs), were evaluated in preclinical prion-infected mice. Using a double immunolabelling strategy, we demonstrated the lack of innervation of PrPsc-accumulating cells (FDCs). Contacts between nerve fibers and PrPsc-propagating cells (DCs) were detected in T-cell zones and cell-trafficking areas. This supports, for the first time, the possible implication of dendritic cells in the prion neuroinvasion process.


Subject(s)
Dendritic Cells, Follicular/pathology , Lymphoid Tissue/pathology , Nerve Fibers/pathology , Scrapie/pathology , Animals , Dendritic Cells, Follicular/metabolism , Disease Models, Animal , Immunoenzyme Techniques , Lymph Nodes/innervation , Lymph Nodes/metabolism , Lymph Nodes/pathology , Lymphoid Tissue/metabolism , Mice , Mice, Inbred C57BL , Microscopy, Confocal , Nerve Fibers/metabolism , Peyer's Patches/innervation , Peyer's Patches/metabolism , Peyer's Patches/pathology , PrPC Proteins/metabolism , Scrapie/metabolism , Spleen/innervation , Spleen/metabolism , Spleen/pathology
2.
Histochem Cell Biol ; 128(3): 243-51, 2007 Sep.
Article in English | MEDLINE | ID: mdl-17622551

ABSTRACT

In transmitted prion diseases the immune system supports the replication and the propagation of the pathogenic agent (PrPSc). DCs, which are mobile cells present in large numbers within lymph organs, are suspected to carry prions through the lymphoid system and to transfer them towards the peripheral nervous system. In this study, C57Bl/6 mice were orally inoculated with PrPSc (scrapie strain 139A) and sacrificed at the preclinical stages of the disease. Immunolabelled cryosections of Peyer's patches were analysed by confocal microscopy. Membrane prion protein expression was studied by flow cytometry. In Peyer's patches (PP), dissected at day one and day 105 after oral exposure to scrapie, we observed an increased population of DCs localised in the follicular-associated epithelium. On day 105, PrPSc was found in the follicles inside the PP of prion-infected mice. A subset of Peyer's patches DCs, which did not express cellular prion protein on their surface in non-infected mice conditions, was prion-positive in scrapie conditions. Within Peyer's patches oral scrapie exposure thus induced modifications of the homeostasis of DCs at the preclinical stages of the disease. These results give new arguments in favour of the implication of DCs in prion diseases.


Subject(s)
Homeostasis/drug effects , Peyer's Patches/metabolism , PrPSc Proteins/administration & dosage , Scrapie/metabolism , Administration, Oral , Animals , Dendritic Cells/drug effects , Dendritic Cells/metabolism , Epithelium/drug effects , Epithelium/metabolism , Mice , Mice, Inbred C57BL , Peyer's Patches/drug effects , Peyer's Patches/pathology , PrPSc Proteins/biosynthesis , PrPSc Proteins/metabolism , Scrapie/pathology
3.
Cell Tissue Res ; 329(1): 35-44, 2007 Jul.
Article in English | MEDLINE | ID: mdl-17406903

ABSTRACT

During preclinical stages of cattle orally infected with bovine spongiform encephalopathy (BSE), the responsible agent is confined to ileal Peyer's patches (IPP), namely in nerve fibers and in lymph follicles, before reaching the peripheral and central nervous systems. No infectivity has been reported in other bovine lymphoid organs, including jejunal Peyer's patches (JPP). To determine the potential sites for prion neuroinvasion in IPP, we analyzed the mucosal innervation and the interface between nerve fibers and follicular dendritic cells (FDC), two dramatic influences on neuroinvasion. Bovine IPP were studied at three ages, viz., newborn calves, calves less than 12 months old, and bovines older than 24 months, and the parameters obtained were compared with those of JPP. No differences in innervation patterns between IPP and JPP were found. The major difference observed was that, in calves of less than 12 months, IPP were the major mucosal-associated lymphoid organ that possessed a large number of follicles with extended FDC networks. Using a panel of antibodies, we showed that PP in 24-month-old bovines were highly innervated at various strategic sites assumed to be involved in the invasion and replication of the BSE pathogen: the suprafollicular dome, T cell area, and germinal centers. In PP in calves of less than 12 months old, no nerve fibers positive for the neurofilament markers NF-L (70 kDa) and NF-H (200 kDa) were observed in contact with FDC. Thus, in view of the proportion of these protein subunits present in neurofilaments, the innervation of the germinal centers can be said to be an age-dependent dynamic process. This variation in innervation might influence the path of neuroinvasion and, thus, the susceptibility of bovines to the BSE agent.


Subject(s)
Aging , Encephalopathy, Bovine Spongiform/transmission , Ileum/innervation , Jejunum/innervation , Peyer's Patches/innervation , Prions , Aging/immunology , Aging/metabolism , Aging/pathology , Animals , Cattle , Dendritic Cells, Follicular/immunology , Dendritic Cells, Follicular/metabolism , Dendritic Cells, Follicular/pathology , Encephalopathy, Bovine Spongiform/immunology , Encephalopathy, Bovine Spongiform/pathology , Germinal Center/immunology , Germinal Center/metabolism , Germinal Center/pathology , Ileum/immunology , Ileum/metabolism , Immunohistochemistry , Jejunum/immunology , Jejunum/metabolism , Jejunum/pathology , Nerve Fibers/immunology , Nerve Fibers/metabolism , Nerve Fibers/pathology , Neurofilament Proteins/biosynthesis , Neurofilament Proteins/immunology , Peyer's Patches/metabolism , Peyer's Patches/pathology , Prions/immunology , Prions/metabolism
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