Neuronal Infection

Neuronal infection is the invasion and colonization of neurons or neural tissue by pathogens, a process that can alter electrical signaling, cellular survival, and nervous-system function. Infectious agents typically attach to receptors on neuronal membranes, enter cells through processes such as endocytosis, and use host machinery to replicate or spread, while infected neurons and surrounding glial cells activate innate immune and inflammatory responses. Studying neuronal infection helps explain how neurotropic viruses and other pathogens move through neural circuits, cause neurological disease, and interact with the blood-brain barrier. These findings support improved diagnostics, antiviral therapies, and strategies to limit infection-associated neuronal damage.

Neuronal Infection - Related Videos

Research

JoVE EoE - Neuronal Culture Techniques

Infecting Primary Mouse Midbrain Neurons with Engineered Adeno-Associated Viruses

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2025

This video shows infecting primary mouse midbrain neurons with Adeno-Associated Viruses carrying a fluorescent calcium indicator. The indicator's fluorescence confirms successful infection and enables real-time monitoring of neuronal infection.

Establishing Mixed Neuronal and Glial Cell Cultures from Embryonic Mouse Brains to Study Infection and Innate Immunity

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Cited by 2 •

2023

This protocol presents a unique way of generating central nervous system cell cultures from embryonic day 17 mouse brains for neuro(immuno)logy research. This model can be analyzed using various experimental techniques, including RT-qPCR, microscopy, ELISA, and flow cytometry.

3-D Imaging and Analysis of Neurons Infected In Vivo with Toxoplasma gondii

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Cited by 21 •

2014

Using this protocol, we were able to image 160 µm thick brain sections from mice infected with the parasite Toxoplasma gondii, which enables visualization and analysis of the spatial relationship between the encysting parasite and the infected neuron.

Research

JoVE Journal - Immunology and Infection
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Use of Galleria mellonella as a Model Organism to Study Legionella pneumophila Infection

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Cited by 108 •

2013

The larva of the wax moth Galleria mellonella was recently established as an in vivo model to study Legionella pneumophila infection. Here, we demonstrate fundamental techniques to characterize the pathogenesis of Legionella in the larvae, including inoculation, measurement of bacterial virulence and replication as well as extraction and analysis of infected hemocytes.

Bioluminescence Imaging to Detect Late Stage Infection of African Trypanosomiasis

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Cited by 3 •

2016

This manuscript describes the use of a bioluminescent strain of African trypanosomes to enable the tracking of late stage infection and demonstrates how in vivo live imaging can be used to visualize infections within the central nervous system in real-time.

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