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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
Subcortical plaques and inflammation reflect cortical and meningeal pathologies in progressive multiple sclerosis
Betül Okutan1, Jette L Frederiksen1,2, Gunnar Houen1,3
1Department of Neurology, Danish Multiple Sclerosis Center, Copenhagen University Hospital - Rigshospitalet, Glostrup, Denmark.
Abstract:
It remains elusive whether lesions and inflammation in the sub/juxtacortical white matter reflect cortical and/or meningeal pathologies. Elucidating this could have implications for MRI monitoring as sub/juxtacortical lesions are detectable by routine MRI, while cortical lesions and meningeal inflammation are not. By large-area microscopy, we quantified total and mixed active plaque loads along with densities and sizes of perivascular mononuclear infiltrates (infiltrates) in the sub/juxtacortical white matter ≤2 mm from the cortex, intra-cortically and in the meninges. Data were related to ante-mortem clinical parameters in a false discovery rate-corrected analysis. We compared 12 patients with primary progressive multiple sclerosis (PPMS) and 15 with secondary progressive MS to 22 controls. Fifteen patients and 11 controls contributed with hemispheric sections. Sections were stained with haematoxylin-eosin, for myelin and for microglia/macrophages. B cells and T cells were confirmed in a subset. Immunoglobulin G depositions in selected cortical plaques resembled depositions described before in "slowly expanding" plaques in the white matter. We quantified plaque activity by measuring microglia-dominated and macrophage-dominated areas. Sub/juxtacortical plaques (load and activity) reflected plaque activity in the cerebral cortex. Plaque activity and infiltrates were more pronounced in the sub/juxtacortical white matter than in the cerebral cortex while conversely, the total plaque load was highest in the cortex. Infiltrates correlated trans-cortically and sub/juxtacortical plaque activity reflected cortical and meningeal infiltrates. Sub/juxtacortical infiltrate sizes correlated with shorter survival after progression onset. Two patients with PPMS and putatively fatal brain stem lesions argue against incidental findings. Trans-cortical inflammatory flares and plaque activity may be pathogenic in progressive MS. We suggest emphasis on sub/juxtacortical MRI lesions as plausible surrogates for cortical and meningeal pathologies and, when present, as indicators for cognitive testing.
Insights
Sub/juxtacortical white matter lesions in multiple sclerosis (MS) may reflect cortical and meningeal inflammation. These lesions could serve as MRI surrogates for deeper pathologies, aiding in monitoring and cognitive assessment in progressive MS.
Area of Science:
- Neuroimmunology
- Neuropathology
- Radiology
Background:
- The relationship between sub/juxtacortical white matter lesions and cortical/meningeal pathologies in multiple sclerosis (MS) remains unclear.
- Understanding this link is crucial for improving MRI monitoring, as sub/juxtacortical lesions are visible, unlike cortical lesions and meningeal inflammation.
Purpose of the Study:
- To investigate whether sub/juxtacortical white matter lesions and inflammation in MS correlate with cortical and meningeal pathologies.
- To explore the potential of sub/juxtacortical lesions as MRI surrogates for monitoring disease activity and progression.
Main Methods:
- Large-area microscopy was used to quantify plaque loads and perivascular mononuclear cell infiltrates in sub/juxtacortical white matter, cortex, and meninges.
- Histological staining (H&E, myelin, microglia/macrophages, B/T cells) and IgG deposition analysis were performed.
- Data from 12 primary progressive MS (PPMS), 15 secondary progressive MS (SPMS) patients, and 22 controls were analyzed, correlating findings with clinical parameters.
Main Results:
- Sub/juxtacortical plaque activity mirrored activity within the cerebral cortex.
- Inflammatory infiltrates and plaque activity were more pronounced in sub/juxtacortical white matter compared to the cortex, though total plaque load was higher in the cortex.
- Infiltrates showed trans-cortical correlation, and sub/juxtacortical plaque activity reflected cortical and meningeal infiltrates. Infiltrate size correlated with reduced survival post-progression onset.
Conclusions:
- Sub/juxtacortical white matter lesions and associated inflammation may serve as reliable MRI surrogates for cortical and meningeal pathologies in progressive MS.
- These findings suggest emphasizing sub/juxtacortical MRI lesions for monitoring disease activity and potentially guiding cognitive testing in MS patients.
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