Evaluation of the Effect of Fingolimod Treatment on Microglial Activation Using Serial PET Imaging in Multiple

Marcus Sucksdorff1,2, Eero Rissanen3,2, Jouni Tuisku2

  • 1Division of Clinical Neurosciences, Turku University Hospital, Kiinamyllynkatu 4-8, Turku, Finland; and marcus.sucksdorff@tyks.fi.

Insights

Fingolimod treatment reduced microglial activation in focal lesions of multiple sclerosis (MS) patients, but not in normal-appearing white matter or gray matter. This study highlights the potential of imaging microglial activation as an outcome measure for future MS therapies.

Area of Science:

  • Neuroscience
  • Immunology
  • Radiology

Background:

  • Multiple sclerosis (MS) pathology extends beyond focal lesions to normal-appearing white matter (NAWM) and gray matter (GM), involving microglial activation.
  • Microglial activation, a key process in neuroinflammation, can be detected in vivo using positron emission tomography (PET) with 18-kDa translocator protein (TSPO)-binding radioligands.

Purpose of the Study:

  • To investigate the effect of fingolimod treatment on microglial activation in MS patients using serial PET imaging.
  • To determine if PET imaging of microglial activation can serve as an outcome measure for therapeutic studies in MS.

Main Methods:

  • Ten relapsing-remitting MS patients underwent PET imaging with the TSPO radioligand 11C-(R)-PK11195 at baseline and after 8 and 24 weeks of fingolimod treatment.
  • Eight healthy individuals were imaged for comparison.
  • Microglial activation was quantified as the distribution volume ratio of 11C-(R)-PK11195 in focal lesions, NAWM, and GM.

Main Results:

  • MS patients showed significantly higher baseline microglial activation in combined NAWM and GM areas compared to healthy controls.
  • Fingolimod treatment led to a significant reduction in 11C-(R)-PK11195 binding within focal T2 lesions after 6 months.
  • No significant reduction in microglial activation was observed in the NAWM or GM areas following fingolimod treatment.

Conclusions:

  • Fingolimod treatment effectively reduces microglial/macrophage activation at the site of focal inflammatory lesions in MS, likely by inhibiting peripheral leukocyte infiltration.
  • Widespread, diffuse microglial activation in NAWM and GM remains unaffected by fingolimod.
  • Serial PET imaging of microglial activation offers a promising imaging biomarker for evaluating therapeutic efficacy in future MS clinical trials.

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