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Updated: May 8, 2026

Isolation of Cortical Microglia with Preserved Immunophenotype and Functionality From Murine Neonates
Published on: January 30, 2014
Microglia in normal appearing white matter of multiple sclerosis are alerted but immunosuppressed
Jeroen Melief1, Karianne G Schuurman, Martijn D B van de Garde
1Neuroimmunology Group, Netherlands Institute for Neuroscience, An Institute of the Royal Netherlands Academy of Arts and Sciences, Amsterdam, The Netherlands.
Abstract:
Little is known about the functional phenotype of microglia in normal appearing white matter (NAWM) of multiple sclerosis (MS), although it may hold valuable clues about mechanisms for lesion development. Therefore, we studied microglia from NAWM obtained post-mortem from controls (n = 25) and MS patients (n = 21) for their phenotype ex vivo and their immune responsiveness in vitro, using a microglia isolation method that omits culture and adherence. By flow cytometry, microglia in MS NAWM displayed elevated CD45 levels and increased size and granularity but were distinct from autologous choroid plexus macrophages by absent or low expression of additional markers, in particular CD206. Flow cytometric analysis of microglia from NAWM of three controls and four MS patients showed alterations in levels of Fc-gamma receptors in MS. In primary microglia from a bigger sample of subjects, analysis of Fc-gamma receptors by quantitative PCR indicated a significant increase in mRNA levels of the inhibitory CD32b isoform in MS NAWM. Despite their changed activation status, microglia from MS NAWM were unresponsive to lipopolysaccharide in vitro. Notably, culture with dexamethasone led to an impaired induction of the inflammation-limiting cytokine CCL18 in microglia from MS NAWM compared with those from control NAWM. Together, these data demonstrate that microglia in MS NAWM are in an alerted state, but display features of immunosuppression. Thus, the activation status of microglia in NAWM of MS patients likely reflects a response to ongoing neuroinflammation, which coincides with upregulation of immunoregulatory molecules to prevent full activation and damage to the vulnerable milieu.
Insights
Microglia in normal-appearing white matter (NAWM) of multiple sclerosis (MS) patients show an alerted but immunosuppressed state. This suggests a regulatory response to ongoing neuroinflammation in MS.
Area of Science:
- Neuroimmunology
- Cellular immunology
- Neuroinflammation
Background:
- Microglia function in normal-appearing white matter (NAWM) in multiple sclerosis (MS) is poorly understood.
- Understanding microglia phenotype in NAWM may reveal mechanisms of lesion development in MS.
Purpose of the Study:
- To investigate the functional phenotype and immune responsiveness of microglia from NAWM in controls and MS patients.
- To characterize microglia alterations in MS NAWM ex vivo and in vitro.
Main Methods:
- Microglia were isolated from post-mortem NAWM of controls (n=25) and MS patients (n=21) using a method omitting culture and adherence.
- Flow cytometry and quantitative PCR were used to analyze microglia phenotype, including CD45, CD206, and Fc-gamma receptors.
- In vitro assays assessed immune responsiveness to lipopolysaccharide and dexamethasone.
Main Results:
- Microglia from MS NAWM exhibited elevated CD45 levels, increased size, and granularity compared to controls.
- Alterations in Fc-gamma receptors were observed, with a significant increase in inhibitory CD32b mRNA in MS NAWM microglia.
- Despite an alerted phenotype, MS NAWM microglia were unresponsive to lipopolysaccharide and showed impaired CCL18 induction after dexamethasone treatment.
Conclusions:
- Microglia in MS NAWM are in an alerted state but display features of immunosuppression.
- The observed phenotype likely represents a response to neuroinflammation, involving upregulation of immunoregulatory molecules to prevent damage.
- These findings highlight a complex regulatory role of microglia in the context of MS neuroinflammation.
