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Updated: Apr 15, 2026

Listeria monocytogenes Infection of the Brain
Published on: October 2, 2018
Listeria monocytogenes spreads within the brain by actin-based intra-axonal migration
Diana Henke1, Sebastian Rupp2, Véronique Gaschen3
1Division of Neurological Sciences, Department of Clinical Veterinary Medicine, Vetsuisse Faculty, University of Bern, Bern, Switzerland.
Abstract:
Listeria monocytogenes rhombencephalitis is a severe progressive disease despite a swift intrathecal immune response. Based on previous observations, we hypothesized that the disease progresses by intra-axonal spread within the central nervous system. To test this hypothesis, neuroanatomical mapping of lesions, immunofluorescence analysis, and electron microscopy were performed on brains of ruminants with naturally occurring rhombencephalitis. In addition, infection assays were performed in bovine brain cell cultures. Mapping of lesions revealed a consistent pattern with a preferential affection of certain nuclear areas and white matter tracts, indicating that Listeria monocytogenes spreads intra-axonally within the brain along interneuronal connections. These results were supported by immunofluorescence and ultrastructural data localizing Listeria monocytogenes inside axons and dendrites associated with networks of fibrillary structures consistent with actin tails. In vitro infection assays confirmed that bacteria were moving within axon-like processes by employing their actin tail machinery. Remarkably, in vivo, neutrophils invaded the axonal space and the axon itself, apparently by moving between split myelin lamellae of intact myelin sheaths. This intra-axonal invasion of neutrophils was associated with various stages of axonal degeneration and bacterial phagocytosis. Paradoxically, the ensuing adaxonal microabscesses appeared to provide new bacterial replication sites, thus supporting further bacterial spread. In conclusion, intra-axonal bacterial migration and possibly also the innate immune response play an important role in the intracerebral spread of the agent and hence the progression of listeric rhombencephalitis.
Insights
Listeria monocytogenes causes severe rhombencephalitis by spreading within axons in the brain. Neutrophils invade axons, aiding bacterial spread and disease progression.
Area of Science:
- Neuroscience
- Infectious Diseases
- Bacteriology
Background:
- Listeria monocytogenes rhombencephalitis is a severe neurological disease.
- The mechanism of intracerebral spread remains poorly understood.
- A swift intrathecal immune response does not prevent disease progression.
Purpose of the Study:
- To investigate the hypothesis that Listeria monocytogenes spreads intra-axonally within the central nervous system.
- To elucidate the role of the innate immune response in disease progression.
Main Methods:
- Neuroanatomical mapping of lesions in ruminant brains.
- Immunofluorescence analysis and electron microscopy.
- In vitro infection assays using bovine brain cell cultures.
Main Results:
- Lesion mapping revealed preferential affection of specific nuclear areas and white matter tracts, suggesting intra-axonal spread along neuronal connections.
- Listeria monocytogenes was localized within axons and dendrites, utilizing actin tails for movement.
- Neutrophils invaded axonal spaces, contributing to axonal degeneration and bacterial spread via adaxonal microabscesses.
Conclusions:
- Intra-axonal bacterial migration is a key mechanism for intracerebral spread in listeric rhombencephalitis.
- The innate immune response, particularly neutrophil invasion, may paradoxically contribute to disease progression.
- Understanding these mechanisms is crucial for developing effective treatments for this severe neurological infection.
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