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Published on: February 19, 2021
Multiple sclerosis deep grey matter: the relation between demyelination, neurodegeneration, inflammation and iron
Lukas Haider1, Constantina Simeonidou2, Günther Steinberger1
1Department of Neuroimmunology, Centre for Brain Research, Medical University of Vienna, Vienna, Austria.
Abstract:
In multiple sclerosis (MS), diffuse degenerative processes in the deep grey matter have been associated with clinical disabilities. We performed a systematic study in MS deep grey matter with a focus on the incidence and topographical distribution of lesions in relation to white matter and cortex in a total sample of 75 MS autopsy patients and 12 controls. In addition, detailed analyses of inflammation, acute axonal injury, iron deposition and oxidative stress were performed. MS deep grey matter was affected by two different processes: the formation of focal demyelinating lesions and diffuse neurodegeneration. Deep grey matter demyelination was most prominent in the caudate nucleus and hypothalamus and could already be seen in early MS stages. Lesions developed on the background of inflammation. Deep grey matter inflammation was intermediate between low inflammatory cortical lesions and active white matter lesions. Demyelination and neurodegeneration were associated with oxidative injury. Iron was stored primarily within oligodendrocytes and myelin fibres and released upon demyelination. In addition to focal demyelinated plaques, the MS deep grey matter also showed diffuse and global neurodegeneration. This was reflected by a global reduction of neuronal density, the presence of acutely injured axons, and the accumulation of oxidised phospholipids and DNA in neurons, oligodendrocytes and axons. Neurodegeneration was associated with T cell infiltration, expression of inducible nitric oxide synthase in microglia and profound accumulation of iron. Thus, both focal lesions as well as diffuse neurodegeneration in the deep grey matter appeared to contribute to the neurological disabilities of MS patients.
Insights
Multiple sclerosis (MS) involves deep grey matter damage through focal demyelination and diffuse neurodegeneration, contributing to patient disability. This study investigated lesion distribution, inflammation, and oxidative injury in MS deep grey matter.
Area of Science:
- Neuropathology
- Neuroimmunology
- Multiple Sclerosis Research
Background:
- Deep grey matter (DGM) degeneration in multiple sclerosis (MS) correlates with clinical disability.
- Understanding DGM pathology is crucial for MS progression and treatment.
Purpose of the Study:
- To systematically investigate the incidence, topographical distribution, and pathological characteristics of DGM lesions in MS.
- To analyze inflammation, axonal injury, iron deposition, and oxidative stress in MS DGM.
Main Methods:
- Analysis of 75 MS autopsy cases and 12 controls.
- Examination of DGM lesions, white matter, and cortex.
- Detailed assessment of inflammation, axonal injury, iron, and oxidative stress markers.
Main Results:
- MS DGM exhibits both focal demyelinating lesions (prominent in caudate nucleus, hypothalamus) and diffuse neurodegeneration.
- Demyelination and neurodegeneration are linked to inflammation, oxidative injury, and iron accumulation.
- Global neurodegeneration includes reduced neuronal density, axonal injury, and oxidative damage in neurons and axons.
Conclusions:
- Both focal demyelination and diffuse neurodegeneration in the deep grey matter contribute significantly to neurological disability in MS patients.
- Pathological processes in MS DGM involve inflammation, oxidative stress, and iron dysregulation.
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