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Updated: May 28, 2026

Comprehensive Autopsy Program for Individuals with Multiple Sclerosis
Published on: July 19, 2019
Axonopathy is associated with complex axonal transport defects in a model of multiple sclerosis
Mihaela Kreutzer1, Frauke Seehusen, Robert Kreutzer
1Department of Pathology, University of Veterinary Medicine, Hannover, Germany.
Abstract:
Multiple sclerosis (MS) is an inflammatory and neurodegenerative disease characterized by myelin and axonal pathology. In a viral model of MS, we tested whether axonopathy initiation and development are based on an impaired transport of neurofilaments. Spinal cords of Theiler's murine encephalomyelitis virus (TMEV)-infected and mock-infected mice and TMEV infected neuroblastoma N1E-115 cells were analyzed by microarray analysis, light microscopy and electron and laser confocal microscopy. In vivo axonal accumulation of non-phosphorylated neurofilaments after TMEV infection revealed a temporal development caused by the impairments of the axonal traffic consisting of the downregulation of kinesin family member 5A, dynein cytoplasmic heavy chain 1, tau-1 and β-tubulin III expression. In addition, alterations of the protein metabolism were also noticed. In vitro, the TMEV-infected N1E-115 cells developed tandem-repeated swellings similar to in vivo alterations. Furthermore, the hypothesis of an underlying axonal self-destruction program involving nicotinamide adenine dinucleotide depletion was supported by molecular findings. The obtained data indicate that neurofilament accumulation in TME is mainly the result of dysregulation of their axonal transport machinery and impairment of neurofilament phosphorylation and protein metabolism. The present findings allow a more precise understanding of the complex interactions responsible for initiation and development of axonopathies in inflammatory degenerative diseases.
Insights
Multiple sclerosis (MS) involves impaired neurofilament transport, leading to axonal damage. This study reveals how viral infections disrupt axonal transport, causing neurofilament accumulation and contributing to MS pathology.
Area of Science:
- Neuroscience
- Immunology
- Cell Biology
Background:
- Multiple sclerosis (MS) is an inflammatory and neurodegenerative disease impacting myelin and axons.
- Axonopathy, or axonal damage, is a key feature of MS pathology.
Purpose of the Study:
- To investigate if impaired neurofilament transport contributes to axonopathy in a viral model of MS.
- To elucidate the molecular mechanisms underlying neurofilament accumulation in MS.
Main Methods:
- Analysis of spinal cords from Theiler's murine encephalomyelitis virus (TMEV)-infected and mock-infected mice.
- In vitro studies using TMEV-infected neuroblastoma N1E-115 cells.
- Microarray analysis, light microscopy, electron microscopy, and laser confocal microscopy.
Main Results:
- TMEV infection caused in vivo axonal accumulation of non-phosphorylated neurofilaments.
- Downregulation of kinesin, dynein, tau-1, and β-tubulin III expression impaired axonal transport.
- In vitro studies showed similar swellings, suggesting a conserved mechanism.
- Molecular findings supported a role for nicotinamide adenine dinucleotide depletion in axonal self-destruction.
Conclusions:
- Neurofilament accumulation in TME is primarily due to dysregulated axonal transport machinery.
- Impaired neurofilament phosphorylation and protein metabolism also contribute to axonopathy in MS.
- These findings enhance understanding of axonopathy development in inflammatory degenerative diseases like MS.
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