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Rat Model of Widespread Cerebral Cortical Demyelination Induced by an Intracerebral Injection of Pro-Inflammatory Cytokines
Published on: September 21, 2021
Cuprizone treatment induces demyelination and astrocytosis in the mouse hippocampus
Akvile Norkute1, Andrea Hieble, Alena Braun
1Institute of Neuroanatomy, Faculty of Medicine, RWTH Aachen University, Aachen, Germany.
Abstract:
Memory impairment is outstanding within the spectrum of cognitive deficits in multiple sclerosis (MS) patients. Demyelination has been reported in the hippocampus formation of MS patients. The degree of hippocampus lesions in MS strongly correlates with progression of cognitive dysfunction. Because no appropriate animal model for the study of hippocampus demyelination has been established, we used the cuprizone mouse model to investigated demyelination in young adult and aged mice. The myelin status was analyzed by classical histological staining, immunocytochemistry for proteolipoprotein, and electron microscopy. Oligodendrocyte, astroglial, and microglia markers were studied. Cuprizone intoxication induced an almost complete demyelination of distinct hippocampus subregions to a similar extent in young adult and aged male mice. Demyelination was pronounced in a subset of white and gray matter areas, i.e., the stratum lacunosum moleculare containing the perforant path, medial alveus, stratum pyramidale in the cornu ammonis 2/3 region, and hilus region. Besides demyelination, affected areas displayed hypertrophic and hyperplastic astrocytosis. No significant effect on microglia invasion was detected at any investigated time point (0, 3, 5, and 7 weeks). We conclude that cuprizone-induced demyelination provides an adequate animal model to investigate appropriate therapy strategies for the prevention of hippocampus demyelination.
Insights
The cuprizone mouse model effectively mimics hippocampus demyelination seen in multiple sclerosis (MS) patients. This model is suitable for testing therapies targeting MS-related memory loss.
Area of Science:
- Neuroscience
- Neuroimmunology
- Pathology
Background:
- Memory impairment is a significant cognitive deficit in multiple sclerosis (MS).
- Hippocampus demyelination in MS correlates with cognitive dysfunction progression.
- A suitable animal model for studying hippocampus demyelination is lacking.
Purpose of the Study:
- To investigate hippocampus demyelination using the cuprizone mouse model.
- To compare demyelination in young adult and aged mice.
- To establish an animal model for developing therapeutic strategies for MS-related cognitive deficits.
Main Methods:
- Cuprizone intoxication in young adult and aged mice.
- Histological staining and immunocytochemistry for myelin analysis.
- Electron microscopy and analysis of oligodendrocyte, astroglial, and microglia markers.
Main Results:
- Cuprizone induced significant demyelination in specific hippocampus subregions in both age groups.
- Affected areas showed astrocytosis but no significant microglia invasion.
- Demyelination patterns were consistent across young and aged mice.
Conclusions:
- The cuprizone mouse model adequately replicates hippocampus demyelination.
- This model is valuable for investigating therapeutic interventions for MS-induced memory impairment.
- Further research can utilize this model to explore prevention and treatment strategies.

