Associations Between Paramagnetic Rim Lesion Evolution and Clinical and Radiologic Disease Progression in Persons

Jack A Reeves1, Alexander Bartnik1, Dejan Jakimovski1

  • 1From the Buffalo Neuroimaging Analysis Center (J.A.R., A.B., D.J., M.M., N.B., F. Salman, F. Schweser, M.G.D., R.Z.), Department of Neurology, Jacobs School of Medicine and Biomedical Sciences, University at Buffalo; Department of Biostatistics (G.W.), School of Public Health and Health Professions, State University of New York at Buffalo; and Center for Biomedical Imaging at the Clinical Translational Science Institute (B.W.-G.), University at Buffalo, State University of New York.

Neurology
|October 24, 2024
PubMed
Abstract

Insights

Resolution of paramagnetic rim lesions (PRLs) in multiple sclerosis (MS) is linked to better clinical outcomes. Lack of new PRLs also indicates improved disease progression, highlighting targets for MS therapies.

Area of Science:

  • Neuroimaging
  • Neurology
  • Immunology

Background:

  • Technological advances allow in vivo visualization of chronic active brain lesions in multiple sclerosis (MS) using iron-sensitive MRI, termed paramagnetic rim lesions (PRLs).
  • PRLs are established predictors of future clinical disease progression in persons with MS (pwMS).
  • Understanding the impact of PRL evolution (disappearance or new appearance) on MS pathophysiology is crucial for developing targeted therapies and clinical trial endpoints.

Purpose of the Study:

  • To investigate the longitudinal associations between the evolution of paramagnetic rim lesions (PRLs) and clinical disability progression and brain atrophy in persons with multiple sclerosis (pwMS).
  • To determine if PRL disappearance or new PRL appearance correlates with changes in clinical disability and brain volume over time.
  • To inform the development of sensitive endpoints for clinical trials targeting chronic active inflammation in MS.

Main Methods:

  • A prospective, longitudinal cohort study included persons with MS (pwMS) and healthy controls (HCs) with available 3T MRI and clinical data.
  • PRLs were assessed at baseline and follow-up and categorized as disappearing, newly appearing, or persisting.
  • Linear models analyzed associations between PRL evolution rates (disappearance, new appearance) and annualized rates of confirmed disability progression (CDP), progression independent of relapse activity (PIRA), and brain atrophy, with FDR correction.

Main Results:

  • Greater rates of PRL disappearance were associated with reduced rates of confirmed disability progression (CDP) and progression independent of relapse activity (PIRA).
  • New PRL appearance was significantly associated with increased rates of PIRA.
  • No significant associations were found between new PRL appearance or PRL disappearance and brain volume changes after FDR correction.

Conclusions:

  • The resolution of existing PRLs and the absence of new PRLs are linked to improved clinical outcomes in pwMS.
  • These findings underscore the importance of targeting microglia-mediated brain inflammation.
  • Clinical strategies aimed at preventing the appearance of new PRLs are warranted for managing MS progression.