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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-induced demyelination in the rat cerebral cortex and thyroid hormone effects on cortical remyelination
Lucas Silvestroff1, Sandra Bartucci, Juana Pasquini
1Departamento de Química Biológica e Instituto de Química y Fisicoquímica Biológicas (IQUIFIB-CONICET) Facultad de Farmacia y Bioquímica, UBA. Junín 956, CABA (C1113AAD), Buenos Aires, Argentina. lsilver81@yahoo.com.ar
Abstract:
Multiple Sclerosis (MS) is an inflammatory demyelinating disease of the Central Nervous System which is characterized by multifocal demyelinated lesions dispersed throughout the brain. Although white matter lesions have been the most extensively studied, cortical demyelinaton lesions are also detected in MS brains. Cuprizone (CPZ)-induced demyelination in rodents has been widely used as a model for MS. Most of these studies focus on oligodendrocyte-rich structures, such as the corpus callosum (CC) and the cerebellar peduncles. However, it has been recently described that CPZ administration in mice also produces cortical demyelination, resembling some of the lesions found in MS patients. In this work we used CPZ-demyelinating model in Wistar rats to study demyelination in cortical forebrain areas. At the ultrastructural level, demyelination in the cortex was observed before detectable myelin loss in the subcortical white matter. During the course of CPZ intoxication Myelin Basic Protein immunodetection was decreased in cortical layers I-III due to a reduction in the number of cortical oligodendrocytes (OL). Oligodendroglial loss in CPZ-intoxicated rats correlated with an increase in the number of Glial Fibrillary Acidic Protein positive astrocytes and a shift in the location of Carbonic Anhydrase II from OL to astrocytes. After removal of CPZ from the diet, we evaluate intranasal Thyroid hormone (TH) effects on the progression of cortical lesions. As previously reported in the CC, TH treatment also accelerates remyelination rate in the cortex compared to rats undergoing spontaneous remyelination. Our results suggest that manipulation of TH levels could be considered as a strategy to promote remyelination process in the cortex and to prevent neuronal irreversible damage in patients suffering from MS.
Insights
Thyroid hormone (TH) treatment accelerates remyelination in the cortex of rats with cuprizone-induced demyelination, suggesting TH manipulation may aid Multiple Sclerosis (MS) recovery.
Area of Science:
- Neuroscience
- Neuroimmunology
- Demyelinating Diseases
Background:
- Multiple Sclerosis (MS) is a central nervous system inflammatory disease characterized by demyelination.
- Cortical demyelination occurs in MS, but research often focuses on white matter lesions.
- The cuprizone (CPZ) model in rodents mimics MS demyelination, including cortical lesions.
Purpose of the Study:
- To investigate cortical demyelination in a CPZ-induced rat model.
- To evaluate the effect of intranasal Thyroid hormone (TH) on cortical remyelination.
Main Methods:
- CPZ intoxication in Wistar rats to induce demyelination.
- Ultrastructural analysis and immunodetection of myelin and glial markers (Myelin Basic Protein, Glial Fibrillary Acidic Protein, Carbonic Anhydrase II).
- Assessment of intranasal TH treatment effects on cortical remyelination post-CPZ.
Main Results:
- Cortical demyelination preceded subcortical white matter demyelination.
- CPZ intoxication reduced oligodendrocytes (OL) and Myelin Basic Protein in cortical layers I-III.
- TH treatment accelerated cortical remyelination compared to spontaneous recovery.
Conclusions:
- Cortical demyelination is an early feature in the CPZ model.
- TH manipulation shows potential for promoting cortical remyelination in MS.
- Targeting TH may prevent irreversible neuronal damage in MS patients.

