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.

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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