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Isolating Central Nervous System Tissues and Associated Meninges for the Downstream Analysis of Immune cells
Published on: May 19, 2020
B cell rich meningeal inflammation associates with increased spinal cord pathology in multiple sclerosis
Camilla Reali1,2, Roberta Magliozzi1,3, Federico Roncaroli1,4,5
1Department of Brain Sciences, Faculty of Medicine, Imperial College, London, UK.
Abstract:
Increased inflammation in the cerebral meninges is associated with extensive subpial cortical grey matter pathology in the forebrain and a more severe disease course in a substantial proportion of secondary progressive multiple sclerosis (SPMS) cases. It is not known whether this relationship extends to spinal cord pathology. We assessed the contribution of meningeal and parenchymal immune infiltrates to spinal cord pathology in SPMS cases characterized in the presence (F+) or absence (F-) of lymphoid-like structures in the forebrain meninges. Transverse cryosections of cervical, thoracic and lumbar cord of 22 SPMS and five control cases were analyzed for CD20+ B cells, CD4+ and CD8+ T cells, microglia/macrophages (IBA-1+), demyelination (myelin oligodendrocyte glycoprotein+) and axon density (neurofilament-H+). Lymphoid-like structures containing follicular dendritic cell networks and dividing B cells were seen in the spinal meninges of 3 out of 11 F+ SPMS cases. CD4+ and CD20+ cell counts were increased in F+ SPMS compared to F- SPMS and controls, whilst axon loss was greatest in motor and sensory tracts of the F+ SPMS cases (P < 0.01). The density of CD20+ B cells of the spinal leptomeninges correlated with CD4+ T cells and total B and T cells of the meninges; with the density of white matter perivascular CD20+ and CD4+ lymphocytes (P < 0.05); with white matter lesion area (P < 0.05); and the extent of axon loss (P < 0.05) in F+ SPMS cases only. We show that the presence of lymphoid-like structures in the forebrain is associated with a profound spinal cord pathology and local B cell rich meningeal inflammation associates with the extent of cord pathology. Our work supports a principal role for B cells in sustaining inflammation and tissue injury throughout the CNS in the progressive disease stage.
Insights
Inflammation in the brain meninges is linked to severe spinal cord damage in some multiple sclerosis cases. B cell activity in the meninges correlates with this spinal cord pathology, highlighting their role in progressive disease.
Area of Science:
- Neuroimmunology
- Neuropathology
- Multiple Sclerosis Research
Background:
- Cerebral meningeal inflammation is associated with grey matter pathology and severe disease in secondary progressive multiple sclerosis (SPMS).
- The link between meningeal inflammation and spinal cord pathology in SPMS remains unclear.
Purpose of the Study:
- To investigate the contribution of meningeal and parenchymal immune cells to spinal cord pathology in SPMS.
- To compare spinal cord pathology in SPMS cases with and without lymphoid-like structures in the forebrain meninges (F+ vs. F-).
Main Methods:
- Analysis of cervical, thoracic, and lumbar spinal cord cryosections from 22 SPMS and 5 control cases.
- Immunohistochemical staining for B cells (CD20+), T cells (CD4+, CD8+), microglia/macrophages (IBA-1+), demyelination, and axon density.
- Assessment of lymphoid-like structures in the meninges.
Main Results:
- Lymphoid-like structures were found in the spinal meninges of 3/11 F+ SPMS cases.
- F+ SPMS cases showed increased CD4+ and CD20+ cell counts compared to F- SPMS and controls.
- Axon loss was most severe in motor and sensory tracts of F+ SPMS cases.
- Spinal meningeal B cell density correlated with T cell counts, white matter lesion area, and axon loss in F+ SPMS cases.
Conclusions:
- Forebrain lymphoid-like structures are associated with significant spinal cord pathology in SPMS.
- Meningeal B cell inflammation is a key factor in sustaining spinal cord injury during progressive multiple sclerosis.
- B cells play a crucial role in CNS inflammation and tissue damage in the progressive stage of multiple sclerosis.
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