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Positron Emission Tomography Imaging for In Vivo Measuring of Myelin Content in the Lysolecithin Rat Model of Multiple Sclerosis
Published on: February 28, 2021
Brain TSPO-PET predicts later disease progression independent of relapses in multiple sclerosis
Marcus Sucksdorff1,2, Markus Matilainen1, Jouni Tuisku1
1Turku PET Centre, Turku University Hospital and University of Turku, Turku, Finland.
Abstract:
Overactivation of microglia is associated with most neurodegenerative diseases. In this study we examined whether PET-measurable innate immune cell activation predicts multiple sclerosis disease progression. Activation of microglia/macrophages was measured using the 18-kDa translocator protein (TSPO)-binding radioligand 11C-PK11195 and PET imaging in 69 patients with multiple sclerosis and 18 age- and sex-matched healthy controls. Radioligand binding was evaluated as the distribution volume ratio from dynamic PET images. Conventional MRI and disability measurements using the Expanded Disability Status Scale were performed for patients at baseline and 4.1 ± 1.9 (mean ± standard deviation) years later. Fifty-one (74%) of the patients were free of relapses during the follow-up period. Patients had increased activation of innate immune cells in the normal-appearing white matter and in the thalamus compared to the healthy control group (P = 0.033 and P = 0.003, respectively, Wilcoxon). Forward-type stepwise logistic regression was used to assess the best variables predicting disease progression. Baseline innate immune cell activation in the normal-appearing white matter was a significant predictor of later progression when the entire multiple sclerosis cohort was assessed [odds ratio (OR) = 4.26; P = 0.048]. In the patient subgroup free of relapses there was an association between macrophage/microglia activation in the perilesional normal-appearing white matter and disease progression (OR = 4.57; P = 0.013). None of the conventional MRI parameters measured at baseline associated with later progression. Our results strongly suggest that innate immune cell activation contributes to the diffuse neural damage leading to multiple sclerosis disease progression independent of relapses.
Insights
Innate immune cell activation in normal-appearing white matter predicts multiple sclerosis progression, even in patients without relapses. This immune activation is a key driver of neurodegeneration, independent of MRI findings.
Area of Science:
- Neuroimmunology
- Neurodegenerative Diseases
- Radiology
Background:
- Overactivation of microglia is implicated in neurodegenerative diseases.
- The role of innate immune cell activation in multiple sclerosis (MS) progression requires further investigation.
Purpose of the Study:
- To determine if PET-measurable innate immune cell activation predicts multiple sclerosis disease progression.
- To investigate the association between innate immune cell activation and clinical/radiological outcomes in MS.
Main Methods:
- Used 11C-PK11195 PET imaging to measure 18-kDa translocator protein (TSPO) binding, reflecting microglia/macrophage activation, in 69 MS patients and 18 controls.
- Assessed disease progression using conventional MRI and Expanded Disability Status Scale (EDSS) over a mean follow-up of 4.1 years.
- Employed logistic regression to identify predictors of disease progression.
Main Results:
- MS patients showed increased innate immune cell activation in normal-appearing white matter and thalamus compared to controls.
- Baseline innate immune cell activation in normal-appearing white matter significantly predicted later disease progression (OR=4.26, P=0.048).
- In relapse-free patients, immune cell activation in perilesional normal-appearing white matter correlated with progression (OR=4.57, P=0.013); conventional MRI parameters did not predict progression.
Conclusions:
- Innate immune cell activation, particularly in normal-appearing white matter, is a significant predictor of multiple sclerosis progression.
- This immune activation contributes to diffuse neural damage and disease worsening, independent of clinical relapses.
- PET imaging of innate immune activation offers a potential biomarker for MS progression, outperforming conventional MRI in this study.

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