Can serial cerebral MRIs predict the neuronopathic phenotype of MPS II?

Audrey A M Vollebregt1,2, Berendine J Ebbink1, Dimitris Rizopoulos3

  • 1Center for Lysosomal and Metabolic Diseases (Department of Pediatrics), Erasmus MC, University Medical Center, Rotterdam, The Netherlands.

Abstract

Insights

Brain atrophy is an early indicator of neurocognitive decline in mucopolysaccharidosis (MPS) II patients, particularly in the neuronopathic form. This finding aids in predicting neurocognitive development using MRI and cognitive scores.

Area of Science:

  • Neuroscience
  • Radiology
  • Genetics

Background:

  • Mucopolysaccharidosis (MPS) II is a rare genetic disorder affecting neurocognitive development.
  • Predicting neurocognitive trajectories in MPS II is crucial for timely intervention.
  • Current prediction models require refinement using multimodal data.

Purpose of the Study:

  • To enhance the prediction of neurocognitive development in MPS II patients.
  • To analyze the correlation between neuroimaging markers and cognitive ability scores (CAS).
  • To investigate the role of brain atrophy and white-matter abnormalities (WMA) in neurocognitive decline.

Main Methods:

  • Collected cerebral MRI and CAS data from 19 male MPS II patients.
  • Quantified MRI using atrophy, WMA, and Virchow-Robin spaces (VRS) sumscores.
  • Utilized a random effects model to correlate MRI findings with CAS.

Main Results:

  • Brain atrophy sumscores were strongly inversely correlated with CAS (r = -0.90).
  • White-matter abnormalities (WMA) also showed an inverse correlation with CAS (r = -0.69).
  • Abnormal atrophy was observed in neuronopathic patients before significant cognitive decline.

Conclusions:

  • Brain atrophy is a significant early predictor of neurocognitive decline in MPS II, especially in the neuronopathic phenotype.
  • Atrophy scores were higher in young neuronopathic patients compared to non-neuronopathic ones.
  • Joint analysis of atrophy and WMA provides valuable insights into neurocognitive development in MPS II.

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