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Magnetic Resonance Imaging of Multiple Sclerosis at 7.0 Tesla
Published on: February 19, 2021
Pathogenic implications of distinct patterns of iron and zinc in chronic MS lesions
Bogdan F Popescu1,2, Josa M Frischer3, Samuel M Webb4
1Department of Anatomy and Cell Biology, College of Medicine, University of Saskatchewan, 701 Queen Street, Saskatoon, SK, S7N 5E5, Canada. bogdan.popescu@usask.ca.
Abstract:
Multiple sclerosis (MS) is a chronic inflammatory demyelinating disease of the central nervous system (CNS) in which oligodendrocytes, the CNS cells that stain most robustly for iron and myelin are the targets of injury. Metals are essential for normal CNS functioning, and metal imbalances have been linked to demyelination and neurodegeneration. Using a multidisciplinary approach involving synchrotron techniques, iron histochemistry and immunohistochemistry, we compared the distribution and quantification of iron and zinc in MS lesions to the surrounding normal appearing and periplaque white matter, and assessed the involvement of these metals in MS lesion pathogenesis. We found that the distribution of iron and zinc is heterogeneous in MS plaques, and with few remarkable exceptions they do not accumulate in chronic MS lesions. We show that brain iron tends to decrease with increasing age and disease duration of MS patients; reactive astrocytes organized in large astrogliotic areas in a subset of smoldering and inactive plaques accumulate iron and safely store it in ferritin; a subset of smoldering lesions do not contain a rim of iron-loaded macrophages/microglia; and the iron content of shadow plaques varies with the stage of remyelination. Zinc in MS lesions was generally decreased, paralleling myelin loss. Iron accumulates concentrically in a subset of chronic inactive lesions suggesting that not all iron rims around MS lesions equate with smoldering plaques. Upon degeneration of iron-loaded microglia/macrophages, astrocytes may form an additional protective barrier that may prevent iron-induced oxidative damage.
Insights
Iron and zinc levels in multiple sclerosis (MS) lesions are complex. While zinc decreases with myelin loss, iron accumulation in chronic MS lesions is not always indicative of active disease, with astrocytes playing a protective role.
Area of Science:
- Neuroscience
- Neuroimmunology
- Biochemistry
Background:
- Multiple sclerosis (MS) is a CNS inflammatory disease targeting oligodendrocytes.
- Metal imbalances, particularly iron and zinc, are implicated in demyelination and neurodegeneration.
- Understanding metal distribution in MS lesions is crucial for elucidating disease pathogenesis.
Purpose of the Study:
- To compare iron and zinc distribution and quantification in MS lesions versus normal-appearing white matter.
- To assess the role of iron and zinc in the pathogenesis of MS lesions.
- To investigate the relationship between metal accumulation and lesion activity/stage.
Main Methods:
- Multidisciplinary approach utilizing synchrotron techniques.
- Iron histochemistry and immunohistochemistry for metal distribution analysis.
- Comparison of metal content in MS plaques, periplaque white matter, and normal-appearing white matter.
Main Results:
- Iron and zinc distribution in MS plaques is heterogeneous and generally does not accumulate in chronic lesions.
- Brain iron decreases with age and disease duration; reactive astrocytes can store iron in ferritin.
- Zinc levels decrease in MS lesions, correlating with myelin loss; iron rims in chronic lesions do not always indicate active disease.
Conclusions:
- Iron and zinc dysregulation contributes to MS pathogenesis, but their accumulation patterns are complex.
- Astrocytes may form protective barriers against iron-induced oxidative damage in chronic MS lesions.
- The presence of iron rims around MS lesions requires careful interpretation regarding lesion activity and stage.
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