Microcystic macular oedema in multiple sclerosis is associated with disease severity

Jeffrey M Gelfand1, Rachel Nolan, Daniel M Schwartz

  • 1Multiple Sclerosis Centre, University of California, San Francisco, Department of Neurology, 400 Parnassus Ave, San Francisco, CA 94143-0114, USA.

Insights

Microcystic macular oedema was unexpectedly found in multiple sclerosis patients, indicating blood-retinal barrier disruption. This condition correlates with increased disability and disease severity in multiple sclerosis.

Area of Science:

  • Ophthalmology
  • Neurology
  • Immunology

Background:

  • Macular oedema typically arises from blood-retinal barrier disruption.
  • Multiple sclerosis (MS) is not typically associated with macular oedema unless uveitis is present.
  • The retina in MS is affected by inflammation, microglial activation, and neuronal loss, despite lacking myelin.

Purpose of the Study:

  • To investigate the occurrence of microcystic macular oedema in multiple sclerosis patients without other known causes.
  • To assess the correlation between microcystic macular oedema and clinical disability in multiple sclerosis.

Main Methods:

  • Spectral domain optical coherence tomography (SD-OCT) was used to evaluate macular oedema in consecutive multiple sclerosis patients.
  • Patients with comorbidities like uveitis or diabetes were excluded.
  • A cross-sectional analysis examined correlations with visual and ambulatory disability.

Main Results:

  • Microcystic macular oedema was detected in 4.7% of multiple sclerosis patients (15/318), but not in healthy controls.
  • This oedema predominantly affected the inner nuclear layer and was associated with significantly worse disability (EDSS) and higher MS Severity Scores.
  • Eyes with prior optic neuritis showed a higher incidence of microcystic macular oedema, which was linked to reduced visual acuity and thinner retinal nerve fibre layers.

Conclusions:

  • The presence of microcystic macular oedema in multiple sclerosis suggests blood-retinal barrier and tight junction integrity breakdown in the demyelinated central nervous system.
  • Microcystic macular oedema may contribute to visual dysfunction beyond axonal loss in MS.
  • These findings necessitate consideration of microcystic changes in clinical trials and monitoring of MS patients, particularly those on sphingosine 1-phosphate receptor modulators.