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Myelin Oligodendrocyte Glycoprotein MOG35-55 Induced Experimental Autoimmune Encephalomyelitis EAE in C57BL/6 Mice
Published on: April 15, 2014
Magnetization transfer ratio does not correlate to myelin content in the brain in the MOG-EAE mouse model
Sveinung Fjær1, Lars Bø1, Kjell-Morten Myhr1
1KG Jebsen Centre for MS-Research, Department of Clinical Medicine, University of Bergen, Bergen, Norway; The Norwegian Multiple Sclerosis Competence Centre, Department of Neurology, Haukeland University Hospital, Bergen, Norway.
Abstract:
Magnetization transfer ratio (MTR) is a magnetic resonance imaging (MRI) method which may detect demyelination not detected by conventional MRI in the central nervous system of patients with multiple sclerosis (MS). A decrease in MTR value has previously been shown to correlate to myelin loss in the mouse cuprizone model for demyelination. In this study, we investigated the sensitivity of MTR for demyelination in the myelin oligodendrocyte (MOG) 1-125 induced experimental autoimmune encephalomyelitis (EAE) mouse model. A total of 24 female c57Bl/6 mice were randomized to a control group (N = 6) or EAE (N = 18). MTR images were obtained at a preclinical 7 Tesla Bruker MR-scanner before EAE induction (baseline), 17-19 days (midpoint) and 31-32 days (endpoint) after EAE induction. Mean MTR values were calculated in five regions of the brain and compared to weight, EAE severity score and myelin content assessed by immunostaining for proteolipid protein and luxol fast blue, lymphocyte and monocyte infiltration and iron deposition. Contrary to what was expected, MTR values in the EAE mice were higher than in the control mice at the midpoint and endpoint. No significant difference in myelin content was found according to histo- or immunohistochemistry. Changes in MTR values did not correlate to myelin content, iron content, lymphocyte or monocyte infiltration, weight or EAE severity scores. This suggest that MTR measures of brain tissue can give significant differences between control mice and EAE mice not caused by demyelination, inflammation or iron deposition, and may not be useful surrogate markers for demyelination in the MOG1-125 mouse model.
Insights
Magnetization transfer ratio (MTR) did not correlate with demyelination in a mouse model of multiple sclerosis. MTR values increased in EAE mice, suggesting it may not be a reliable marker for myelin loss in this model.
Area of Science:
- Neuroscience
- Medical Imaging
- Immunology
Background:
- Magnetization transfer ratio (MTR) is an MRI technique potentially sensitive to demyelination in multiple sclerosis (MS).
- Previous studies in the cuprizone model showed decreased MTR correlating with myelin loss.
- The MOG 1-125 induced experimental autoimmune encephalomyelitis (EAE) model is used to study demyelinating diseases.
Purpose of the Study:
- To investigate the sensitivity of MTR for detecting demyelination in the MOG 1-125 induced EAE mouse model.
- To assess if MTR changes correlate with myelin content, inflammation, or disease severity.
Main Methods:
- 24 female C57BL/6 mice were divided into control (N=6) and EAE (N=18) groups.
- MTR imaging was performed at baseline, midpoint, and endpoint using a 7 Tesla MR scanner.
- MTR values were compared with myelin content (immunostaining), inflammatory cell infiltration, iron deposition, weight, and EAE severity scores.
Main Results:
- MTR values were unexpectedly higher in EAE mice compared to controls at midpoint and endpoint.
- No significant differences in myelin content were detected via histology or immunohistochemistry.
- MTR changes did not correlate with myelin content, inflammation, iron deposition, weight, or EAE severity.
Conclusions:
- MTR measures in the EAE mouse model showed differences not attributable to demyelination, inflammation, or iron deposition.
- MTR may not be a suitable surrogate marker for demyelination in the MOG 1-125 induced EAE model.
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