Related Experiment Video
Updated: May 30, 2026

Isolating Central Nervous System Tissues and Associated Meninges for the Downstream Analysis of Immune cells
Published on: May 19, 2020
Meningeal inflammation is widespread and linked to cortical pathology in multiple sclerosis
Owain W Howell1, Cheryl A Reeves, Richard Nicholas
1Centre for Neuroscience, Division of Experimental Medicine, Imperial College Faculty of Medicine, Hammersmith Hospital Campus, Burlington Danes Building, Du Cane Road, London W12 0NN, UK. o.howell@imperial.ac.uk
Abstract:
Meningeal inflammation in the form of ectopic lymphoid-like structures has been suggested to play a prominent role in the development of cerebral cortical grey matter pathology in multiple sclerosis. The aim of this study was to analyse the incidence and distribution of B cell follicle-like structures in an extensive collection of cases with secondary progressive multiple sclerosis with a wide age range and to determine their relationship to diffuse meningeal inflammation, white matter perivascular infiltrates and microglial activation. One hundred and twenty three cases with secondary progressive multiple sclerosis were examined for the presence of meningeal and perivascular immune cell infiltrates in tissue blocks and/or whole coronal macrosections encompassing a wide array of brain areas. Large, dense, B cell-rich lymphocytic aggregates were screened for the presence of follicular dendritic cells, proliferating B cells and plasma cells. Ectopic B cell follicle-like structures were found, with variable frequency, in 49 cases (40%) and were distributed throughout the forebrain, where they were most frequently located in the deep sulci of the temporal, cingulate, insula and frontal cortex. Subpial grey matter demyelinated lesions were located both adjacent to, and some distance from such structures. The presence of B cell follicle-like structures was associated with an accompanying quantitative increase in diffuse meningeal inflammation that correlated with the degree of microglial activation and grey matter cortical demyelination. The median age of disease onset, time to disease progression, time to wheelchair dependence and age at death all differed significantly in these cases when compared with those without B cell follicle-like structures. Our findings suggest that meningeal infiltrates may play a contributory role in the underlying subpial grey matter pathology and accelerated clinical course, which is exacerbated in a significant proportion of cases by the presence of B cell follicle-like structures.
Insights
Ectopic B cell follicle-like structures in the meninges are linked to grey matter pathology and a faster disease course in secondary progressive multiple sclerosis (SPMS). These findings suggest meningeal inflammation contributes to SPMS progression.
Area of Science:
- Neuroimmunology
- Pathology
Background:
- Meningeal inflammation, specifically ectopic lymphoid-like structures, is implicated in multiple sclerosis (MS) grey matter pathology.
- The role of these structures in secondary progressive MS (SPMS) requires further investigation.
Purpose of the Study:
- To analyze the incidence, distribution, and characteristics of B cell follicle-like structures in SPMS.
- To determine the relationship between these structures and meningeal inflammation, white matter infiltrates, and microglial activation.
- To assess the impact of these structures on clinical disease course in SPMS.
Main Methods:
- Examination of 123 SPMS cases for meningeal and perivascular immune cell infiltrates.
- Screening of B cell aggregates for follicular dendritic cells, proliferating B cells, and plasma cells.
- Correlation analysis between B cell follicle-like structures and clinical parameters.
Main Results:
- Ectopic B cell follicle-like structures were identified in 40% of SPMS cases, predominantly in the forebrain's deep sulci.
- Their presence correlated with increased diffuse meningeal inflammation, microglial activation, and grey matter demyelination.
- Cases with these structures showed significantly different clinical outcomes, including earlier disease onset and faster progression.
Conclusions:
- Meningeal B cell follicle-like structures are associated with subpial grey matter pathology in SPMS.
- These structures may contribute to an accelerated clinical course in a significant proportion of SPMS patients.
- Targeting meningeal inflammation could be a potential therapeutic strategy for SPMS.
Related Concept Videos
Bacterial Meningitis II: Pathophysiology
Bacterial Meningitis I: Introduction
Viral Meningitis
Multiple Sclerosis l: Introduction
Encephalitis ll: Pathophysiology
Bacterial Meningitis

