Cortical involvement determines impairment 30 years after a clinically isolated syndrome

Lukas Haider1,2, Ferran Prados1,3,4, Karen Chung1

  • 1NMR Research Unit, Queen Square Multiple Sclerosis Centre, Queen Square Institute of Neurology, University College London, London, UK.

Insights

Cortical lesions and grey matter atrophy are key indicators of multiple sclerosis progression and disability, even decades after initial symptoms. Targeting cortical involvement may improve treatments for both relapsing-remitting MS and secondary progressive MS.

Area of Science:

  • Neuroscience
  • Radiology
  • Clinical Neurology

Background:

  • Distinguishing relapsing-remitting multiple sclerosis (RRMS) from secondary progressive multiple sclerosis (SPMS) can be challenging due to overlapping clinical and MRI findings.
  • Previous studies often included patients with variable disease durations, limiting clear phenotype differentiation.
  • Long-term follow-up is crucial for understanding the natural history and progression of multiple sclerosis (MS).

Purpose of the Study:

  • To investigate the distinct MRI characteristics differentiating RRMS and SPMS.
  • To explore the relationship between MRI measures and clinical outcomes 30 years after the initial presentation of clinically isolated syndrome suggestive of MS.
  • To identify MRI correlates of physical and cognitive disability in long-term MS patients.

Main Methods:

  • A cohort of 63 patients was studied 30 years post-initial clinically isolated syndrome.
  • Patients were categorized into RRMS, SPMS, or no further neurological events groups, with comparable age and disease duration.
  • Comprehensive 3T MRI assessed brain white/grey matter (lesions, volumes, MTR) and cervical cord; clinical assessments included EDSS, 9-Hole Peg Test, T25FW, and BIMS.

Main Results:

  • SPMS patients exhibited significantly more cortical lesions and lower grey matter volume compared to RRMS patients at 30-year follow-up.
  • Cortical lesions, grey matter volume, and cervical cord volume collectively explained 60% of Expanded Disability Status Scale (EDSS) variance; cortical lesions alone accounted for 43%.
  • Cortical lesions, grey matter volume, and gender explained 43% of Timed 25-Foot Walk (T25FW) variance. Reduced cortical magnetization transfer ratio was the sole predictor (52% variance) for the Symbol Digit Modality Test (SDMT).

Conclusions:

  • Cortical involvement, encompassing lesions and atrophy, is the primary driver of progressive disability in long-term MS.
  • MRI-detectable cortical changes are significant predictors of physical and cognitive decline in multiple sclerosis.
  • Therapeutic strategies targeting cortical pathology are essential for managing progressive MS and improving patient outcomes.