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Published on: October 3, 2012
Increased PK11195-PET binding in normal-appearing white matter in clinically isolated syndrome
Paolo Giannetti1, Marios Politis2, Paul Su3
11 Centre for Neuroinflammation and Neurodegeneration, Faculty of Medicine, Imperial College London, Hammersmith Campus, Du Cane Road, London, W12 0NN, UK p.giannetti@imperial.ac.uk.
Abstract:
The most accurate predictor of the subsequent development of multiple sclerosis in clinically isolated syndrome is the presence of lesions at magnetic resonance imaging. We used in vivo positron emission tomography with (11)C-(R)-PK11195, a biomarker of activated microglia, to investigate the normal-appearing white matter and grey matter of subjects with clinically isolated syndrome to explore its role in the development of multiple sclerosis. Eighteen clinically isolated syndrome and eight healthy control subjects were recruited. Baseline assessment included: history, neurological examination, expanded disability status scale, magnetic resonance imaging and PK11195-positron emission tomography scans. All assessments except the PK11195-positron emission tomography scan were repeated over 2 years. SUPERPK methodology was used to measure the binding potential relative to the non-specific volume, BPND. We show a global increase of normal-appearing white matter PK11195 BPND in clinically isolated syndrome subjects compared with healthy controls (P = 0.014). Clinically isolated syndrome subjects with T2 magnetic resonance imaging lesions had higher PK11195 BPND in normal-appearing white matter (P = 0.009) and their normal-appearing white matter PK11195 BPND correlated with the Expanded Disability Status Scale (P = 0.007; r = 0.672). At 2 years those who developed dissemination in space or multiple sclerosis, had higher PK11195 BPND in normal-appearing white matter at baseline (P = 0.007 and P = 0.048, respectively). Central grey matter PK11195 BPND was increased in subjects with clinically isolated syndrome compared to healthy controls but no difference was found in cortical grey matter PK11195 BPND. Microglial activation in clinically isolated syndrome normal-appearing white matter is diffusely increased compared with healthy control subjects and is further increased in those who have magnetic resonance imaging lesions. Furthermore microglial activation in clinically isolated syndrome normal-appearing white matter is also higher in those subjects who developed multiple sclerosis at 2 years. Our finding, if replicated in a larger study, could be of prognostic value and aid early treatment decisions in clinically isolated syndrome.
Insights
Activated microglia in normal-appearing white matter predict multiple sclerosis development in clinically isolated syndrome. Increased microglial activation in white matter is linked to disease progression and disability.
Area of Science:
- Neuroscience
- Radiology
- Immunology
Background:
- Clinically isolated syndrome (CIS) precedes multiple sclerosis (MS).
- Magnetic resonance imaging (MRI) lesions predict MS development in CIS.
- The role of microglial activation in early MS pathogenesis remains unclear.
Purpose of the Study:
- To investigate microglial activation in CIS using positron emission tomography (PET) with (11)C-(R)-PK11195.
- To explore the association between microglial activation and MS development in CIS patients.
Main Methods:
- In vivo PET scans with (11)C-(R)-PK11195 were performed on 18 CIS patients and 8 healthy controls.
- SUPERPK methodology measured binding potential relative to the non-specific volume (BPND).
- Assessments included MRI, neurological examination, and Expanded Disability Status Scale (EDSS) over 2 years.
Main Results:
- CIS patients showed increased normal-appearing white matter (NAWM) PK11195 BPND compared to controls (P = 0.014).
- Higher NAWM PK11195 BPND in CIS patients with MRI lesions (P = 0.009) and correlated with EDSS (P = 0.007; r = 0.672).
- CIS patients who developed MS had higher baseline NAWM PK11195 BPND (P = 0.007). Central grey matter showed increased PK11195 BPND, but cortical grey matter did not.
Conclusions:
- Microglial activation is diffusely increased in the NAWM of CIS patients.
- Increased microglial activation in NAWM is associated with MRI lesions and predicts future MS development.
- These findings suggest microglial activation as a potential prognostic biomarker for early MS detection and treatment decisions.

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