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.

Glia
|September 10, 2013
PubMed

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.