The Neuropathology of Huntington´s disease: classical findings, recent developments and correlation to functional

Udo Rüb1, Jean Paul V Vonsattel2, Helmut Heinsen3

  • 1Dr. Senckenbergisches Chronomedizinisches Institut, Goethe University Frankfurt, Frankfurt, Germany.

Insights

Huntington's disease (HD) is a genetic neurological disorder caused by CAG-repeat expansions. This review details over a century of neuropathological research, highlighting key brain changes and their clinical relevance.

Area of Science:

  • Neuroscience
  • Genetics
  • Neuropathology

Background:

  • Huntington's disease (HD) is an autosomal dominant neurodegenerative disorder.
  • It is caused by CAG-repeat expansions in the huntingtin (HTT) gene on chromosome 4p16.3.
  • The condition was first described in the 19th century.

Observation:

  • The neostriatum (caudate nucleus and putamen) shows progressive degeneration, with the Vonsattel grading system used to classify severity.
  • Neuronal loss occurs in specific areas and layers of the cerebral cortex (neocortex and allocortex).
  • Other affected brain regions include select thalamic nuclei, cerebellar cortex and deep nuclei, and distinct brainstem nuclei.

Findings:

  • Neuropathological hallmarks of HD involve widespread neurodegeneration across multiple brain regions.
  • These pathologies correlate with the clinical phenotype of Huntington's disease.
  • Axonal transport deficits are being investigated for their pathophysiological role.

Implications:

  • Understanding these neuropathological changes is crucial for diagnosing and managing HD.
  • This comprehensive review provides insights into the progression and mechanisms of HD.
  • Further research into axonal transport may reveal new therapeutic targets for Huntington's disease.

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