Neuropathological Characterisation of McLeod Syndrome With a Proposed New Grading System

Anna Maria Reuss1, Klavs Renerts2, Tibor Hortobágyi1

  • 1Institute of Neuropathology, University Hospital Zurich, University of Zurich, Zurich, Switzerland.

Abstract

Insights

X-linked McLeod neuroacanthocytosis syndrome (MLS) causes brain degeneration, affecting movement, cognition, and behavior. This study details the largest neuropathology case series, revealing basal ganglia atrophy and neuronal loss, and proposes a grading system for this rare disease.

Area of Science:

  • Neuroscience
  • Neuropathology
  • Genetics

Background:

  • X-linked McLeod neuroacanthocytosis syndrome (MLS) is a rare neurodegenerative disorder.
  • It presents with red blood cell acanthocytosis and chorea syndrome.
  • MLS shares cognitive, behavioral, and movement disorder symptoms with Huntington's disease (HD).

Purpose of the Study:

  • To describe the neuropathology of MLS.
  • To analyze the largest case series of MLS patients to date.
  • To propose a neuropathological grading system for MLS.

Main Methods:

  • Collected clinical data from eight male MLS patients.
  • Performed neuropathological assessments on patient samples.
  • Included patients from Finland, New Zealand, Switzerland, Scotland, and the United States.

Main Results:

  • Macroscopic analysis showed basal ganglia atrophy in five of six patients, most pronounced in the caudate nucleus.
  • Histology revealed neuronal loss and gliosis in the basal ganglia of all patients.
  • A decreasing gradient of severity was observed from the caudate nucleus to the putamen and pallidum; intraneuronal vacuoles were found in the striatum of half the patients.

Conclusions:

  • MLS neuropathology is characterized by basal ganglia atrophy, neuronal loss, and gliosis.
  • A severity gradient exists from the caudate nucleus to the putamen and pallidum.
  • A standardized neuropathological grading system for MLS is proposed, analogous to HD, to aid assessment of this rare disease.

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