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Published on: February 28, 2021
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.
Abstract:
Traditionally, multiple sclerosis (MS) has been considered a white matter disease with focal inflammatory lesions. It is, however, becoming clear that significant pathology, such as microglial activation, also takes place outside the plaque areas, that is, in areas of normal-appearing white matter (NAWM) and gray matter (GM). Microglial activation can be detected in vivo using 18-kDa translocator protein (TSPO)-binding radioligands and PET. It is unknown whether fingolimod affects microglial activation in MS. The aim of this study was to investigate whether serial PET can be used to evaluate the effect of fingolimod treatment on microglial activation. Methods: Ten relapsing-remitting MS patients were studied using the TSPO radioligand 11C-(R)-PK11195. Imaging was performed at baseline and after 8 and 24 wk of fingolimod treatment. Eight healthy individuals were imaged for comparison. Microglial activation was evaluated as distribution volume ratio of 11C-(R)-PK11195. Results: The patients had MS for an average of 7.9 ± 4.3 y (mean ± SD), their total relapses averaged 4 ± 2.4, and their Expanded Disability Status Scale was 2.7 ± 0.5. The patients were switched to fingolimod because of safety reasons or therapy escalation. The mean washout period before the initiation of fingolimod was 2.3 ± 1.1 mo. The patients were clinically stable on fingolimod. At baseline, microglial activation was significantly higher in the combined NAWM and GM areas of MS patients than in healthy controls (P = 0.021). 11C-(R)-PK11195 binding was reduced (-12.31%) within the combined T2 lesion area after 6 mo of fingolimod treatment (P = 0.040) but not in the areas of NAWM or GM. Conclusion: Fingolimod treatment reduced microglial/macrophage activation at the site of focal inflammatory lesions, presumably by preventing leukocyte trafficking from the periphery. It did not affect the widespread, diffuse microglial activation in the NAWM and GM. The study opens new vistas for designing future therapeutic studies in MS that use the evaluation of microglial activation as an imaging outcome measure.
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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