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  3. The distribution of E-cadherin expression in listeric rhombencephalitis of ruminants indicates its involvement in Listeria monocytogenes neuroinvasion
 

The distribution of E-cadherin expression in listeric rhombencephalitis of ruminants indicates its involvement in Listeria monocytogenes neuroinvasion

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Publisher DOI
10.1111/j.1365-2990.2011.01183.x
Description
AIM: To investigate the expression of E-cadherin, a major host cell receptor for Listeria monocytogenes (LM) internalin A, in the ruminant nervous system and its putative role in brainstem invasion and intracerebral spread of LM in the natural disease. METHODS: Immunohistochemistry and double immunofluorescence was performed on brains, cranial nerves and ganglia of ruminants with and without natural LM rhombencephalitis using antibodies against E-cadherin, protein gene product 9.5, myelin-associated glycoprotein and LM. RESULTS: In the ruminant brain, E-cadherin is expressed in choroid plexus epithelium, meningothelium and restricted neuropil areas of the medulla, but not in the endothelium. In cranial nerves and ganglia, E-cadherin is expressed in satellite cells and myelinating Schwann cells. Expression does not differ between ruminants with or without listeriosis and does not overlap with the presence of microabscesses in the medulla. LM is observed in phagocytes, axons, Schwann cells, satellite cells and ganglionic neurones. CONCLUSION: Our results support the view that the specific ligand-receptor interaction between LM and host E-cadherin is involved in the neuropathogenesis of ruminant listeriosis. They suggest that oral epithelium and Schwann cells expressing E-cadherin provide a port of entry for free bacteria offering a site of primary intracellular replication, from where the bacterium may invade the axonal compartment by cell-to-cell spread. As E-cadherin expression in the ruminant central nervous system is weak, only very locally restricted and not related to the presence of microabscesses, it is likely that further intracerebral spread is independent of E-cadherin and relies primarily on axonal spread.
Date of Publication
2011
Publication Type
Article
Subject(s)
600 Technology > 630 Agriculture
Language(s)
en
Contributor(s)
Madarame, H.
Seuberlich, Torstenorcid-logo
Department of Clinical Research and Veterinary Public Health, Experimentelle Klinische Forschung
Abril Gaona, Carlos
Institut für Veterinärbakteriologie (IVB)
Department of Infectious Diseases and Pathobiology (DIP)
Zurbriggen, Andreas
Department of Clinical Research and Veterinary Public Health, Experimentelle Klinische Forschung
Vandevelde, Marc
Departement klinische Veterinärmedizin, Klinische Neurologie
Oevermann, Annaorcid-logo
Department of Clinical Research and Veterinary Public Health, Experimentelle Klinische Forschung
Additional Credits
Departement klinische Veterinärmedizin, Klinische Neurologie
Department of Clinical Research and Veterinary Public Health, Experimentelle Klinische Forschung
Institut für Veterinärbakteriologie (IVB)
Series
Neuropathology & applied neurobiology
Publisher
Blackwell Scientific Publications
ISSN
0305-1846
Access(Rights)
metadata.only
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